Processing system with water-containing fluid electro- magnetic reactor

The water-containing fluid electromagnetic reactor processing system addresses the inefficiencies and environmental impacts of current oil and water separation technologies by using electromagnetic fields to achieve efficient and chemical-free separation and purification, reducing energy consumption and carbon emissions.

WO2025122079A1PCT designated stage expired Publication Date: 2025-06-12UZELLI TUGAY
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Patent Information

Application Number
PCT/TR2023/051479
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-12-06
Publication Date
2025-06-12

AI Technical Summary

Technical Problem

Current technologies for oil and water separation and purification are inefficient, costly, and environmentally harmful, with high energy consumption, chemical usage, and carbon emissions, and are unable to effectively address the global water scarcity and pollution issues.

Method used

A water-containing fluid electromagnetic reactor processing system that uses electromagnetic fields to separate and purify oil and water without chemicals or filters, utilizing nanoparticles and electrons to achieve efficient separation and molecular cleaning.

Benefits of technology

The system significantly reduces energy consumption and carbon emissions, achieves high separation efficiency (>99%) of oil and water, and can be adapted to existing systems, providing a cost-effective and environmentally friendly solution for water and oil purification.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention is related to the water-containing fluid electromagnetic reactor processing system used for the separation and molecular cleaning of oil and water-containing fluids using Spin Chemistry, thanks to the electromagnetic reactor system which is comprising; an electromagnetic reactor (13), a salt water (seawater) tank (2), a balancing lagoon (3), analysis lagoon (4), triangular electromagnetic energy transfer arms (11), the electromagnetic reactor center core (8), a non-magnetic center core liner (6), archimedean screw wings (10) with different angles adapted on the the non-magnetic center core liner (6), electromagnetic energy transfer arms (11), an electromagnetic reactor outlet (9), an electromagnetic collector air suction tube (5), an electromagnetic collector gas collection pipe (7), a multi separator machine (17), a static barrier discharge channel (15), multiple fluid diverter wings (16), sand scraper diversion channels (20), sand scraper motors (18) and reverse direction water pressure compensator rotors (19).
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Description

[0001] PROCESSING SYSTEM WITH WATER-CONTAINING FLUID ELECTROMAGNETIC REACTOR

[0002] Technological Field:

[0003] This invention is related to the water-containing fluid electromagnetic reactor processing system used for the separation and molecular cleaning of oil and water-containing fluids using Spin Chemistry, thanks to the electromagnetic reactor system.

[0004] State of the Art in Technology:

[0005] With the development of technology and the rapid increase in population, human needs have grown, accelerating consumption, leading to an increased demand for energy production. The world largely meets its energy needs for production through hydrocarbons. However, after the use of petroleum and petroleum-derived hydrocarbons, the damage they cause to the global environment and underwater resources has now reached highly dangerous levels.

[0006] When we examine wastewater treatment technologies from the past to the present, all physical, chemical, and biological treatment systems have conventionally attempted to purify pollutants by focusing on the type of pollutant. However, with the increasing industrial and production capacity, current technologies are inadequate. Therefore, it would be beneficial to focus on water itself rather than pollutants in water in order to address the shortcomings.

[0007] The technologies used today are as follows;

[0008] Membrane Filters; This system, which was invented in the 1970s and began to be used intensively after the 1990s, is still used today. It is mostly encountered in sea water purification or in homes. It filters everything, including the beneficial minerals in the water we drink and provides only dead water (no mineral or content other than the water molecule can pass out of the membrane, which means that we cannot get the substances in the water that the human body needs for a healthy life from water today), the operating cost is high.

[0009] Chemical Treatments; In chemical treatments, the pH of the water is raised to remove substances and particles from the water. After a specific mixing period, lime is added, and the pH is lowered by stirring until it reaches between 6 and 7, leading to the formation of sludge. By removing most substances in the water, it leaves behind a significant amount of non-natural sludge that needs to be properly disposed of. After the process, a separate sludge press and hazardous waste disposal facility are required for sludge disposal. However, despite the chemical cleaning of the water, the molecular bonds and traces of chemicals added to the water remain a topic of discussion. In addition to the removal of chemicals, a substantial amount of chemically polluted sludge is created to eliminate a small amount of contamination in its content, and it needs to be sent to a waste disposal facility for disposal. They cannot be used in a fluid manner and require significant process time and procedures.

[0010] Biological Treatments; Biological treatment systems are coarse filters by ensuring the normal cycle of water used for centuries, the precipitation of particles (such as soil and sand) resulting from their own density differences. Although they are a little more developed today, the same systems are used due to their water content and are still widely used today with chemical additions. They cannot in any way clean the chemical structures that have developed today and the heavy metals used in heavy amounts.

[0011] Chlorine and Chlorine Gas; Following the discovery and invention of chlorine in the late 1800s and early 1900s, chlorine and chlorine gas are used in many purification systems today. It is known that this chemical prevents the reproduction of living things, and the use of chlorine is still preferred in some countries. It is one of the oldest known methods against pathogens in water. It should be stated that it is a poisonous material. Considering the fact that chlorine gas was used as a chemical weapon in World War I, its long-term effects on human metabolism have not been addressed and it has recently been removed from use in most countries. Ultraviolet ray; The effects of ultraviolet rays, which are necessary for ultraviolet water cleaning, on bacteria are known. However, for this, it first needs to be pre-treated and it must be cleaned very delicately and the light transmittance must be very clear. However, it is calculated that it can only break down weak bacteria and, as a result of long processing times, its outer shell can interfere with strong bacteria. It is a method generally used for pathogens. The water must be previously cleaned, purified and clear, but if there is a bacterial particle hidden behind a particle, it starts producing again very quickly. Therefore, Ultraviolet Water Purification is not a widely used and preferred purification method in the world. It is not widely used because it is both too slow and too sensitive, and because of the acceptable costs and risks.

[0012] Electrocoagulation; It is defined as an electrochemical process and is a method used to purify water or wastewater. In this process, an electric current applied between electrodes causes metal ions to be released into the water and these ions react with solid particles and other contaminants in the water. Along with its very high energy cost, it is not a method that can be used for continuous anode-cathode replacement and high flow rates.

[0013] Ozonation method; Using the ozonation method in water cleaning, ozone, whose chemical name is 03, which can be obtained from the air, breaks down pathogens when combined with water and is used in some sectors. However, ozone production has a production process that is expensive and has high carbon emissions. Ozone generators incur very high energy costs during their manufacturing phase. It is used in different sectors for this purpose. However, it is known that it harms health and equipment due to operating costs and gas, and that the gases formed in the pipes and systems through which ozone passes or in the environment if it is slightly more than normal accelerates corrosion. The fact that it loses its properties very quickly indicates that it is not a very useful method.

[0014] Distillation; It is the process of separating the components of a liquid by evaporating it and then recondensing it. It is generally used to obtain pure components from mixtures or to concentrate components. With heating, the liquid evaporates; The vapor is then cooled and condensed to obtain separate components. The energy cost to operate is very high. Today, this process is used to recover water that reaches its boiling point at lower temperatures or the chemicals in it by evaporating.

[0015] Super Critical Water; Supercritical water oxidation is a very effective wastewater treatment method based on the oxidation of aqueous mixtures of all kinds of organic compounds at temperature and pressure conditions above the critical point of pure water (Tk=374°C, Pk=221 bar). Although the process is very expensive and can be applied in small diameters, it poses a danger due to the combination of high pressure and heat. It is not possible to operate at high flow rates. Although it has to work at very high pressures and temperatures and it is very good at separating the substances, it is a dangerous and very costly method due to its small-scale energy consumption machine and high pressure.

[0016] Ultrasound; If you apply high voltage to a special material called Piazzo crystal in ultrasound systems, you will get plenty of vibration. This vibration becomes 10 times stronger in water and can prevent some parts from adhering in water, and consists of systems that can clean algae on ships or clean rusty or surface inside boxes. It is known that it can break some attachments and bonds by sending intense vibration to the water or the area to which it is connected. It does not have any electromagnetic interaction with water. It can be adjusted to be applied at different frequencies and powers. The change is due to the number of sounds and vibrations. It's like shaking a bunch of grapes and letting them fall. Although it is called electromagnetic work due to high voltage, it is a mechanical method used to transfer sound and vibration waves. If you try to use ultra sound waves in oil, you will get a very dense emulsion mixture and you will seriously prevent the recycling of your oil.

[0017] Separator systems; Its working principle is that it can separate substances of one or more different densities using centrifugal force, using the density difference. Methods called separator or decanter are used in many areas today in oil and water purification. Even when used to separate oil and water, efficiencies are around 90%. Among conventional systems, it is one of the most useful old technologies found on ships and in oil fields. Although available, operating costs and maintenance costs of separator systems are very high. 1, 2, 3, 7 and 9 stage / phase separator systems are still in use today, and we can say that they are the best technology used today. If the sharpness of the separator wheels deteriorates or becomes dull, high operating and maintenance costs arise, while the use of chemicals also brings about high costs and impacts on environmental emissions. In addition, the produced oil, gas, water and sand need to be reprocessed.

[0018] The technologies used to obtain the oil in the sand are given with an example from Kuwait, here are the figures of the damage caused to the region by the oil wells set on fire during the 1991 war, and 17 million cubic meters of dirty sand has still not been cleaned.

[0019] In the process of cleaning oil and sand, they use fresh water, high-flow steam boilers, high-caliber electrical energy regulators and generators, and the results they produce are not very efficient. Today, traditional systems require between 14 and 22 KW of energy to recycle one liter of sand, which means significant carbon emissions. Conventional systems use fresh water to produce heat sources for use in the separation process. Freshwater usage is very high and affects operating costs very high, it is generally a very energy-intensive process that produces significant CO2 emissions and uses a lot of freshwater where freshwater is at critical low levels.

[0020] Many separators, steam generators, energy generators, chemical pesticides (chemical separator) or simple systems operate in the onshore oil processing industry. Finding clean water at the sites to operate this equipment and perform the processes required to recover hydrocarbons is a major challenge. If you live in a desert or arid region, you first need to solve the fresh water problem.

[0021] A challenge faced in countries such as Canada is that wells have spongy soil structure and must be injected into well reservoirs with very hot water under high pressure, or water mixed with steam and hazardous chemicals, to extract oil. This process and the operating cost of doing so are very high and cause a large amount of carbon emissions and make the recovery of our drinking water, which is only 2% or 3% in the world, either impossible or must be recycled with very expensive methods, similar problems exist in many countries, especially in the USA, where there are many oil fields.

[0022] Distillation is a separation method used to separate liquids or gases with different boiling points. The mixture is heated and vaporized, then the vapor is condensed to obtain different components. Although it has a high heating cost, it is used in challenging situations. It leads to high carbon emissions and is costly.

[0023] Extraction; Extraction is the process of separating a substance from other substances using one or more solvent chemicals. This method is often used in applications such as the production of vegetable oils, aromatic compounds or pharmaceuticals. It is used with many chemicals and recycling chemicals are needed to complete the process, these processes are expensive and require more carbon emissions.

[0024] Adsorption is the process of adsorption of another substance to the surface of a substance. For example, adsorbents such as activated carbon are used to remove pollutants from gases or liquids. Since many different chemicals are used, it is not possible to keep the oil or petrochemical product in the same form again and it is a costly process.

[0025] Filtration in hydrocarbon materials; filtration is the process of separating a solid from a liquid or gas. Using a filter, particles are retained and clean liquid or gas is passed through. Here are some examples of other separation systems used in the oil and gas industry. The filters used here need to be treated with chemicals or heating to prevent clogging with oil.

[0026] Sedimentation tanks; sedimentation tanks are used to separate solid particles such as sand and sludge from the liquid stream. While the particles settle to the bottom of the tank using gravity, the clean liquid can be taken from the top. Here, due to the structure of the oil, waste is generated as it is precipitated by chemical manipulation with its chemical components. And it becomes very difficult to recover oil again. Cryogenic distillation is a special form of distillation used to separate gases with a very low boiling point, for example liquid oxygen or liquid nitrogen, from a gas mixture.

[0027] Electrocoagulation uses an electrical charge to separate water from oil. The device applies a high voltage to the liquid flow, causing water particles to coalesce and form larger droplets that can be separated. The electrical energy used is very high and carbon emissions are accordingly high. It is defined as an electrochemical process and is a method used to precipitate some substances in water as precipitates. In this process, electric current applied between the electrodes causes metal ions to be released into the water, and these ions react with solid particles and other pollutants in the water. This reaction causes contaminants to precipitate or coagulate, making water easier to purify. It should be known that each molecule / matter structure reacts to different forces and tensions, in short, has a different reaction frequency or power.

[0028] Some of the applications related to ultrasound technology are as follows.

[0029] -EP1738875, -US2019300393, -US2013277317, -US2017036923, -US2022169543 US2011 water-containing fluid electro magnetic reactor processing 392,- W017204255, -US20193595507, -US2022017387, -US2014263089, -RU2487838, -W013043045,, -US2005006313

[0030] The working principles of the above applications are clearly seen in the process of converting sound waves into kinetic energy, and it is a fact that they emit heavy emissions, whether natural cooking oil or petroleum is used. Depending on the frequency of ultrasound application, you will be left with heavily mixed material that cannot be reused. Some patent applications are made specifically for measuring devices.

[0031] Some of the applications related to electrolysis technology are as follows. -US2015299014, -US202137012, -US2016031730, -WO16103165, -US2013134080, -US2019092652, -US2019185349, -CN1016594488, -CN202808452

[0032] In addition to the electrolysis energy cost of the above patent applications, the magnetic band gap defined as microwave filters (refers to the SHF band, which is dangerous in size and cannot work) has been applied by experts in the field. A way that, at the explanation stage, it becomes clear that this is not technically possible. In addition, since electrolysis methods are processes that need to be carried out in small volumes, the use of the term electro-magnetic is a confusing explanation. For example, see in this patent application RU167650, ultraviolet light is disclosed and the filter system for the operation of the disclosure is disclosed. As I explained the ultraviolet ray and its working principle before, you need to apply it in clean, light-permeable, filtered clean water, here it says application in wastewater, you will see in your scientific investigations that even 1% will not work.

[0033] Some patent applications related to permanent magnet technology are:

[0034] US2008128283:

[0035] Considering the molecular structure of water, if boiling or the effect of permanent magnets are not taken into account in terms of pathogens, even if electromagnetic force is applied, only heating is performed and this cannot be considered a magnetic reaction.

[0036] US2017165680:

[0037] While discussing the particle capture technique with a permanent magnet during flow, it is clear that anode and cathode do not make sense during flow unless there is a very low amount and slow flow.

[0038] US2017166461:

[0039] The structure of water and the structure of salt crystals will not be sufficient to desalinate water. Test results show that it is not possible to achieve this despite hundreds of times the electromagnetic power due to the molecular structure of salt ions.

[0040] Some of the applications related to electro magnetic systems technology are as follows. -US2014262788 It has been mentioned that it is possible to condition fresh and salty waters by giving an electro magnetic wide frequency range, but it is understood from the existing technologies that it cannot go beyond the claim. It is clear that when the ion bonds of structures such as crystalline mineral salt borax are changed, the success rate does not exceed 1% or 2%.

[0041] -WO13155283, -W00864002, -CN116161802, -US2020385294,

[0042] US2004262235,-US2011196188

[0043] A l t h o u g h t h e r e i s a very long waiting period in the above-mentioned patent applications, it is not a method used.

[0044] In the explanations used in the patent description of our application numbered TR2015 / 00277, which belongs to the applicant, the reduction of water to 4 degrees, that is, the densest state of water, the ultrasonic method activated in the lagoons and the use of liquid carbon dioxide delivered to the serpentine for the cooling system, the operating cost and the use of liquid carbon dioxide delivered to the serpentine for the cooling system, the operating principles of the system for boron mine have completely changed although it can work efficiently, and many risks (pressurised carbon dioxide tanks and explosion hazard due to continuous delivery process) and costs have been reduced with the latest technology I have developed. However, it has been determined that this system needs improvement and this application has been made.

[0045] There are problems such as the operating costs of existing treatment technologies, the need for large areas, and the inability to achieve solutions with many costly processes. Many environmental problems have not been solved or still cannot be solved. In the field of hydrocarbons, Deep Water Horizons contaminated by post-war Force oil in 1991 and desert areas in the MENA region (Middle East and North Africa), South America (Venezuela) and Canada were and still are just a few. continues. There is a drinking water problem in California, India and Africa, and it is clearly known and clear in the realistic reports of UNICEF and similar organizations that if precautions are not taken, the whole world will unfortunately experience this problem in the near future.

[0046] The technologies used today are based on outdated technologies with very high operating costs and high chemical and carbon emissions. As a result, what is needed today is a new technology that can eliminate the mentioned disadvantages, is cheaper, more efficient, can provide near-zero carbon emissions, and can perform chemical-free purification. This technology must be able to separate using nano-sized particles and electrons. .

[0047] Description of the nvention:

[0048] This invention is a new technology with low cost and high efficiency, which can perform a separation using nanoparticles and electrons that can overcome the above- mentioned disadvantages, which enables it to be used in the world's most valuable source of life, water and water-related sectors and in all areas where hydrocarbon activities are or have been carried out.

[0049] The aim of the invention is to reduce carbon emissions and operating costs by using fluid flows containing water and water itself. It also aims to achieve much lower energy consumption by significantly reducing the use of many hazardous chemicals, thus minimizing carbon emissions in the areas where the invention is applied. The invention also aims to improve the production of oil and petrochemical products on a large scale, as well as the recovery of water and aquatic resources. It aims to minimize environmental impact by reducing the consumption of electricity and chemicals used by all technologies, and offers the opportunity to use the invention in conjunction with traditional systems to increase the additional problems or low success rates associated with them.

[0050] The results provide an opportunity to protect our planet's drinking water resources. In all research conducted to date, pathogens have been tried to be killed or neutralized by chemical intervention methods, membrane technology, and the absorption of oxygen or carbon dioxide. Our technology, an ElectroMagnetic bacterial or single-cell electromagnetic reactor system, can eliminate (destroy) bacteria, including the most resistant pathogens, without time constraints and without distinguishing components inside cells, such as viruses, during the passage of water through our electromagnetic field, reactor system. It also allows bacteria to multiply quickly and efficiently, which is an important innovation (operations can be carried out with a simple operation such as adjusting the settings by turning a single knob, without changing the collector). The invention intervenes in the molecular structure of water quickly and effectively. Tests regarding the invention have been carried out and the determined results have been achieved. The invention makes a highly professional contribution to protecting the global environment and getting rid of human-caused environmental damage in the short term. The invention, developed to benefit from the power of nature in solving water-related problems and problems, is a system far beyond today's technology.

[0051] Today, drinking water, which is our source of life, is estimated to be around 2% on the earth's surface.

[0052] As a general information, it requires a minimum of 15,415 liters of water for 1 kg of meat (beef) to reach the table. The amount of water spent to make 1 barrel of oil usable is a minimum of 7.5 barrels of water. If you consider that the cost of drinking a cup of coffee for 7 grams of coffee is 132 liters of water, unfortunately, we are witnessing the consequences of global warming with horror.

[0053] The invention is a major technological breakthrough in the use of the collector structure in the recovery of water and water-containing hydrocarbons, etc. between 1 and 10,000 litres / minute, and the fact that this requires only electrical energy is a major technological breakthrough and the biggest innovation is that it can be adapted to conventional systems. The electromagnetic energy and wavelengths it needs are between LF and VLF, and the low energy consumption of the collector structure minimises the carbon emissions and reduces the cost and environmental damages, while it is far away from radiation emission harmful to human health during operation. In order to keep the radio waves completely under control despite all kinds of possibilities, the reactor operates in a specially made box made of lead aluminium alloy as seen on the outer body of the reactor.

[0054] The invention, when compared to existing technologies, demonstrates a tremendous reduction in energy consumption, as seen in the ongoing cleaning of oil from sand in places like Kuwait. It is estimated that conventional systems use between 8 kW and 14 kW of energy per liter of cleaned sand, whereas the invention cleans 1 liter of sand with only 0.050 kW, accomplishing this in a fluid manner without the need for downtime, using only circulating seawater without any chemicals. When processing a mixture of oil and sand simultaneously, with the addition of seawater, the electricity consumption per liter or kilogram is calculated as 50 Watts per unit Kg-Lt. Considering the advantage we provide to the world's drinking water resources, which constitute only about 2% globally, and our low demand, we can use green energy sources. Additionally, we can redirect the recovered oil to the existing production without the need for any additional processing or chemical requirements, all while emitting little to no carbon during the process.

[0055] The recovered oil can be directed to existing production without any additional processing or chemicals. Current technologies, in addition to high energy consumption, use large amounts of fuel and fresh water to produce steam as a heat source. None of the current technologies can utilize seawater. Supporting infrastructure, including steam generators, electrical generators and more, results in significant carbon emissions. Our ability to use renewable energy sources also contributes to preventing high water consumption and pollution.

[0056] In line with current technologies, in some regions of the world where water purification systems have high operating costs or where technology cannot reach (for example, in some regions in Africa or India), biologically (pathogens / heavy metals) contaminated waters can be cleaned. This provides the opportunity to establish living spaces where people can access clean water, facilitated by the use of solar panels or wind generators. Furthermore, numerous different chemicals are used in the current technology processes to aid in the separation process in water or oil. The production of these chemicals also generates a significant amount of emissions and increases water consumption. Therefore, reducing the use of chemicals is beneficial both for climate and the environment. In many applications, our invention can be incorporated into existing production facilities to enhance the recovery of oil or water and reduce reliance on traditional supply methods.

[0057] It is known that there will be very serious challenges in terms of water in just two years (forecasts for the year 2025), and the invention can be beneficial to the world in this regard. (While the world is focusing on COP 28, UNICEF reports have gained clarity through serious research.) See here:

[0058] If we need to give some examples, let's take one example each related to oil and water.

[0059] The cleaning of oil from sand in Kuwait has been ongoing for almost 30 years, and with the current technology, it is estimated to take another 30-60 years to complete. Analyzing the carbon emissions and water consumption alone reveals the magnitude of the challenge. in certain areas of California, animal populations exceed human populations, and contamination of groundwater with fecal content creates challenges in water purification and supply. The costs involved are quite high, causing people to be displaced due to water scarcity issues.

[0060] According to known figures in India, approximately 300,000 people die every year due to water and water-related reasons. Excessive arsenic or the presence of many pathogens in water is one of the leading causes of death, especially in children

[0061] The invention is a technology that can extract both oil and water from the seabed while separating the oil and water, a task that existing systems and technologies cannot achieve. It also deals with the discharge of untreated water into nature due to the inability to purify drinking water or water in treatment facilities or the high cost of purification. As a result, we think that the invention will prevent the discharge of dirty and hazardous waste into underground water resources due to the scarcity of water resources and the lack of simple and effective treatment methods. It prevents human deaths in continents that face water scarcity, such as Africa, which has existing problems. The introduction of this innovative solution will prevent these problems.

[0062] The invention can be used in every field in the oil and water field. Although it is a new technology and can perform operations on its own, it is very easily possible to adapt it to the front or back of old conventional systems and to complete the deficiencies of conventional systems. The efficiency of the invention was tested and accredited laboratory analyzes were performed.

[0063] The invention resulted in low electrical energy consumption, eliminating the need for various methods with a single process, and eliminating the need for additional processing (processes) and consumables (chemicals, filter materials, etc.). The invention not only reduced carbon emissions by using green energy sources through an electromagnetic process, but also provided significant benefits to nature. As a result, the need for chemical treatment of heavy metals such as arsenic from underground sources that might otherwise be present in sludge from chemical processes has decreased. The invention represents a new step in water and water technology, involving molecular bonding and electron centrifugation method, and demonstrates a very high separation efficiency of natural contaminants such as oil. To illustrate the impact on biological pollutants, environmental problems resulting from high freshwater costs and carbon emissions during the production and use of hydrocarbons are common. In addition, in regions where production is hindered due to water scarcity, such as the state of Texas in the United States, it enables oil wells that have been stopped due to water scarcity to be reused and become operational again.

[0064] The invention can be used to separate water from oil at the outlet of any oil or gas well during hydrocarbon recovery in various sectors of the oil and gas industry, such as offshore, coastal, onshore, Arctic or tropical conditions, chemicals or filters (>99% separation efficiency). In regions with abandoned oil in groundwater resources, it can also be used to recover drinking water by separating oil (>99%) and gas during water recovery, without using chemicals or filters. In emergency oil spill response activities from any floating vessel, whether on land (where waterways intersect with land) or at sea, in lakes and rivers, the invention can be used to remove oil (>99%) from water without any intervention. There is no need for phase separation chemicals or filters. It has the ability to extract heavy oil from the seabed, separate oil from water (>99%) without using any chemicals or filters, collect oil without the use of chemicals or filters, and release water into the sea. This can be done not only in tropical conditions, but also in Arctic conditions where there is ice. In addition, it can recover and recycle high amounts of paraffin- containing oil released or found in lakes, rivers, seas and polar conditions without using any chemicals or filters.

[0065] The invention can be operated to clear beaches, river banks, swamps or swamps from clogged oil or any dirty situation. Water will be released to nature and oil (>99%) will be collected. Rare chemicals or filters can be used in soil or similar materials. It recovers oil in usable form without using any chemicals to clean and purify ballast water in ships carrying hydrocarbons in tanks. It can be used in ships used in different areas without making any changes depending on the sample it carries, which is a great development in this field. The quality of the oil produced can be changed, the heaviest molecular bands are converted into lighter molecular bands and thus the quality of the oil is improved without the need for any processing chemicals. This improves oil refinery volumes and reduces waste products such as Bitumen and Asphaltenes. It is capable of eliminating hydrogen sulfide in any hydrocarbon system. The invention can change the ion bonds of anions dissolved in oil and prevent problems such as limescale. It can separate solids from petroleum-based drilling fluid systems. Separators can increase efficiency in traditional hydrocarbon processing systems such as heat exchangers, gas-liquid scrubber (or knockout vessel), and degassed produced water. It can regenerate all kinds of refined hydrocarbon products through cleaning and solids removal. It can clean groundwater from biological contaminants without using any chemicals and / or filters and / or reuse it as recycling.

[0066] The invention can transform water contaminated with heavy metals such as arsenic, which may come from underground water sources, into clean drinking water for humans and animals by changing their chemical ions, without changing any of the other healthy minerals. By purifying drinking water without using chemicals or filters, it can ensure that all the healthy minerals in high-quality water remain beneficial for humans or animals.

[0067] The invention can be used to smoothly destroy jellyfish, which is a major problem in all facilities that use seawater as a cooling fluid. The invention can be used for bacterial production when necessary in the pharmaceutical and chemical industries. It can be used in the cleaning of wastewater as well as in the processing of recycled materials extracted with water.

[0068] The invention can be used in the agricultural sector, significantly increasing the rapid growth of all types of plants and increasing harvest production.

[0069] The invention provides great success in the treatment and cleaning of heavily polluted wastewater resulting from the textile industry and similar industries, with the addition of very low doses of substitute substances in rare cases. The invention, when used with fresh water obtained from the seas, will assist membrane technology, extending filter life and helping to reduce maintenance costs. It can be operated with Green Energy by using natural energy resources in places where there is no technology and civilization. Wind or solar energy panels will be sufficient for this.

[0070] The invention shows that since wastewater from fish farms has organic content, it can be easily cleaned without filters and chemicals and returned to the nature (receiving environment) without using conventional treatment technologies. The formation of algae and bacteria (mucilage) that may occur in the sea or in natural environments consumes oxygen. It has been tested many times that the amount of dissolved oxygen in wastewater at 40 C° passed through a magnetic system increases from 1 ,8mg / L to 6 mg / L. It prevents all viruses that may occur in wastewater and hospital wastewater during pandemics or similar social events, and prevents them from being carried if they pass through the system. With the invention, the water accumulated in animal manure storage areas on farms is passed through an electromagnetic system and can be used for irrigation of fields and gardens, free of bacteria and with a high amount of oxygen.

[0071] Whey is a technology that can be easily used to purify and recycle wastewater from facilities such as breweries and wineries, especially wastewater generated in the food industry. The discovery shows that the importance of water in space travel is vital, and that the cost of taking water to space is that sending a gallon of water into space will cost approximately $5.64 million per gallon. The product of the invention, which will be a very useful and cost-reducing auxiliary equipment in space travel, can also be used in possible colony structures in space, since it uses only electrical energy and green energy is sufficient.

[0072] Thanks to the easy fixing of the parts that make up the invention, it is easy to install and costs are low thanks to the short assembly time. Additionally, the invention has a solid structure.

[0073] Explanation of Figures:

[0074] The invention will be described with reference to the accompanying figures so that the features of the invention may be more clearly understood and appreciated, but it is not intended to limit the invention to these particular embodiments. On the contrary, it is intended to cover all alternatives, modifications and equivalents of the invention which may be included within the field defined by the appended claims. It is to be understood that the details shown are illustrated solely for the purpose of describing preferred embodiments of the present invention and are presented for the purpose of providing the most useful and easily understood description of both the embodiment of the methods and the rules and conceptual features of the invention. In these drawings

[0075] Figure 1 Interior view of the multi separator.

[0076] Figure 2 External view of the multi separator.

[0077] The figures which will aid in the understanding of the present invention are numbered as indicated in the accompanying drawing and are given below together with their names.

[0078] Disclosure of References

[0079] 1. Sand and Soil Source

[0080]

[0081] Disclosure of Invention:

[0082] The invention is comprising; an electromagnetic reactor (13), which has an effect on electron chemistry, molecular bonds, arms in the molecular structure and can perform molecular separation in water and water-containing fluids, a salt water (seawater) tank (2) required to separate the oil in a usable way and wash the sands in the electromagnetic reactor (13) system, a balancing lagoon (3) that transports the current mixture to the electromagnetic reactor (13) after a homogeneous mixture is made in the correct proportions, analysis lagoon (4), which transports water contaminated with pathogens or nano-sized heavy metals directly to the electromagnetic reactor (13), triangular electromagnetic energy transfer arms (11), from which energy is transferred from the electromagnetic power generator (11.1) after the liquid enters the electromagnetic reactor input (12) from the balancing lagoon (3) or analysis lagoon (4), the electromagnetic reactor center core (8), located at the center of the electromagnetic reactor (13), where the electromagnetic energy sent inside is directed, a non-magnetic center core liner (6) covering the outside of the electromagnetic reactor central core (8), archimedean screw wings (10) with different angles adapted on the the non-magnetic center core liner (6) electromagnetic energy transfer arms (11), which have a triangular structure and through which liquid or, in some cases, only air can be transferred, an electromagnetic reactor outlet (9), which directs the electromagnetic power coming to the electromagnetic energy transfer arms (11) through the archimedes screw wings (10) and moving with the speed of light to all the molecular structure and electron bonds passing through the electromagnetic reactor (13) at nanosecond intervals from different angles, allowing them to contact from different angles and transporting the material in the electromagnetic reactor (13), an electromagnetic collector air suction tube (5), which can add air from the environment at a maximum pressure of 0.15 bar at a rate of 1000 / 3 of the water passing through the electromagnetic reactor (13) per minute, an electromagnetic collector gas collection pipe (7), which collects the released gases contained in the oil when oil and hydrocarbons are processed in the electromagnetic reactor (13), a multi separator machine (17) to which an outlet containing water, oil, sand or soil is directed, a static barrier discharge channel (15), positioned opposite the first entry point of the liquid entering from the electromagnetic reactor (13) into the multi separator machine (17), multiple fluid diverter wings (16) that flow water in the right direction and at the right timing, sand scraper diversion channels (20), which separate the oil particles that may remain on the sand by turning it in water before conveying it to the sand delivery pipes (21), sand scraper motors (18) that move the sand scraper diversion channels (20) and reverse direction water pressure compensator rotors (19) that brake the molecular speed of water due to its structure and leave the particles that may remain in its content during the flow in the inlet part of the multi separator machine (17).

[0083] Detailed Description of the Invention:

[0084] The parts that make up the invention are as follows; sand and soil source (1), brine (seawater) tank (2), balancing lagoon (3), analysis lagoon (4), electromagnetic collector air suction pipe (5), non-electromagnetic center core jacket (6), electromagnetic collector gas collection pipe (7), electromagnetic reactor center core (8), electromagnetic reactor outlet (9),archimedes screw wings (10), electromagnetic energy transfer arms (11), electromagnetic power generator (11.1) electromagnetic reactor inlet (12) , electromagnetic reactor (13), effluent collection lagoon (14), static preventing discharge channel (15), fluid directing wings (16), multi separator machine (17), sand scraper engine (18), reverse direction water pressure balancer rotor (19), sand scraper guidance channel (20), sand delivery pipes (21), soil and sand discharge port (22), oil delivery pipe outlet (23), water outlet pipe (24), oil stripping cylinders (25) and processed or cleaned oil delivery pipe (26).

[0085] The collector system operates in the first band magnetic wave range as electromagnetic radiation. Thus, it cannot harm the environment and human health. While the maximum energy it emits is 35-40 Microtesla in the center of the electromagnetic reactor (13), it drops to only around 15 Microtesla at a distance of 20 cm outside the reactor. These values are equivalent to 20% when compared to measurements made outside a microwave oven. The frequency and power transfer fluids used may vary depending on the purpose we are trying to achieve.

[0086] Balancing lagoon (3); It is the mixing and proportioning lagoon required to provide oil or sand-soil mixture and to control the correct proportions. After making the homogeneous mixture in the correct proportions required here, the existing mixture is sent to the magnetic reactor. Water lagoon (4); It directs water contaminated with pathogens or nano-sized heavy metals directly to the electromagnetic reactor.

[0087] After the liquid enters the electromagnetic reactor inlet (12) from the balancing lagoon (3) or analysis lagoon (4), energy is transferred from the electromagnetic power generator (11.1) to the triangular electromagnetic energy transfer arms (11). It transfers electromagnetic waves in hydrocarbons and water at different currents and angles to the central core (8) of the electromagnetic reactor. It has a triangular structure and has electromagnetic energy transfer arms (11) through which liquid or, in some cases, only air can be transferred.

[0088] The critical point here is to ensure the uninterrupted flow of magnetic energy transferred from the pointed part of the isosceles triangle into the collector like an invisible knife blade, without the triangular conductor touching the collector, and they serve this purpose. In continuous use, cooling fluid is transferred within this structure to warm up the arms and thus prevent electrical energy variability during operation. If the current content contains hydrocarbons or particulate sand soil samples, the Archimedean screw wings (10) should start rotating with the help of the hydraulic motor. The feature of these Archimedean screw wings (10) is that they direct the electromagnetic power coming to the electromagnetic energy transfer arms (11) and moving at the speed of light, to all the molecular structure and electron bonds passing through the electromagnetic reactor (13) at nano-second intervals and contact them from different angles. It is also to ensure that the material inside the electromagnetic reactor (13) is directed towards the electromagnetic reactor outlet (9).

[0089] The electromagnetic energy sent inside is directed to the electromagnetic reactor central core (8) located at the center of the electromagnetic reactor (13). Meanwhile, since unwanted thermal energy will occur during electromagnetic power transfer, there is a non-magnetic center core jacket (6) covering the outside of the electromagnetic reactor central core (8) and Archimedean screw wings (10) with different angles adapted to it. Archimedean screw wings (10) must be used appropriately in different fluids in operations. They can be used movable or fixed. Archimedes screw is a system developed to ensure that every micro particle is affected by magnetic pulses, while using its name during magnetic circulation, especially in the separation process of heavy metals and wet or wet sand and oil contaminated. Since the sand is completely non-magnetic, infectious water and oil atoms must be affected. In this way, oil and water work as a natural centrifuge thanks to the excessive mobility of their electrons, and even by adding them to conventional systems, they decompose very quickly and the recovered oil results in clean sand with a maximum water content of 1% and oil in water below 5 ppm.

[0090] The biggest advantage of the system is to replace only the Archimedean screw wings (10) with metals with different magnetic reaction strength in order to change the ion structure of arsenic in highly hazardous substances such as arsenic so that it can easily separate from water. Thus, while it allows liquids to return to their natural structure within 1 minute to 12 hours, it provides great opportunities, for example, to break the outer armor of the pathogens they contain, break down and disappear from the environment they pollute. This is true even for hydrogen sulfide in hydrocarbon components. During these processes, the adjustable electromagnetic reactor (13) must be calibrated.

[0091] There is an electromagnetic reactor center core (8), which is assembled from materials with different magnetic attraction strengths, mounted within the Archimedean screw wings (10 non-magnetic center core shirt (6), and called an antenna that acts as the attraction force in the content of the non-magnetic jacket. Electromagnetic reactor The central core (8) structure consists of three materials with different magnetic attraction strengths. These extend in the inner center in the form of rings at certain intervals. The metals used consist of tungsten, standard industrial steel and 304 stainless steel, respectively. The connection type (nohow) thus moves the molecular structure in the liquid. While in its state, it passes through invisible chambers with different gravitational forces within microseconds. In this way, the reaction of the magnetic force change to the electrons enables it to work like a micro separator on a molecular basis. Electromagnetic collector air suction pipe (5); If only water contaminated with pathogens or heavy metals will enter the electromagnetic reactor (13) system, air can be added from the environment at a maximum pressure of 0.15 bar at the rate of 1000 / 3 of the water passing through the electromagnetic reactor (13) per minute. If we are talking about liquids contaminated with hydrocarbons or if the application is to be made only to improve the oil quality, then insert gas can be added to the same electromagnetic collector air suction pipe (5). (Insert gas is used to prevent the rapid flash reaction in light oils.) In pathogens, while the magnetic reactor affects the molecular bonds of water, it also binds trace amounts of air to water molecules, accelerating the rapid reuse of water in a healthy way.

[0092] Electromagnetic collector gas collection pipe (7); We can say that it is the second ventilation pipe coming out of the electromagnetic reactor (13). The main purpose of this outlet is to collect the released gases contained in the oil when oil and hydrocarbons are processed in the reactor. There is no fluid pressure inside the electromagnetic reactor (13), and while the resulting gases are collected from the collector outlet and recycled, there is no need for the gas and liquid separator process for the ready-to-process oil coming out of the collector.

[0093] Electromagnetic reactor output (9); If only pathogenic and heavy metal water comes out of this outlet, this process is sent to the outlet water collection lagoon (14) and the process is finished. In the other case, if we have an outlet containing water, oil, sand or soil, the direction at the outlet is sent to the multi separator machine (17). The mixture of water, oil and sand, whose molecular bonds have been subjected to high energy loading, is entered into the multi separator machine (17) at the same time and from the same point.

[0094] In such cases, the electromagnetic reactor (13) must be adapted to the immediate entrance of the multi separator machine (17) and they must work together. In this way, the processed samples are separated from each other very quickly while all electron velocities and energies are at their highest level. There must be water in the multi separator machine (17) at all times. After the first entry, sand and oil separate very quickly from each other and from the water inside the system machine. There is a static preventing discharge channel (15) opposite the first entry point of the liquid entering from the electromagnetic reactor (13) into the multi separator machine (17). This channel, which is hollow on both sides of the machine, prevents the formation of static electricity in oil and its derivatives, and thanks to the fluid directing wings (16) at the machine entrance, all fluid and solid particles entering the Multi separator machine (17) are discharged by hitting the inner wall of the static energy absorbing discharge channel. They are also physically separated from each other. During this decomposition, while sand and soil sink to the bottom due to their physical properties, oil tends to rise due to its natural structure. (When the magnetic reactor was turned off and the same process was performed, it was observed that this particle separation did not occur and the heavy elements in the oil content settled to the bottom as sediment.)

[0095] The sand moving downwards reaches the sand scraper motors (18) located in the sand scraper directing channels (20) at the bottom of the Multi separator machine (17). While the sand scraper guidance channels (20) pull the sand to one side in their cycle movements, they also wash the oil particles remaining on the sand. During operation, sand scrapers direct the sand towards the sand delivery pipes (21) under pressure. Upon the pressure and direction applied by the sand scrapers inside the sand channels, the soil and sand are thrown out cleanly from the discharge port (22). While the oil and petroleum chemical particles (crude oil, diesel oil, industrial oils) that rise to the top collect on the surface, they are removed from the surface with the help of oil scraping cylinders (25) and the processed or cleaned oil delivery pipe (26) is deposited into the oil delivery pipe with the help of the scrapers on the cylinder. During this process, the oil molecular bonds have not lost the magnetically charged energy. The oil collected by the machine and the oil transmitted through the delivery pipe are ready to be shipped to the refineries in a reprocessable form at the oil delivery pipe exit (23).

[0096] The water in the liquid coming from the electromagnetic reactor (13) lost its rootstock structure at the entrance of the multi separator machine (17) and left the components in its content. Since this process takes place in split seconds, it makes its own way in the water, discharges its load (contrary to popular belief, excluding everything it contains) in the Multi separator machine (17), and moves towards the water outlet pipe (24) by following the fluid-containing water direction wings (16). During this journey, thanks to the reverse direction water pressure balancing rotors (19) and counter-rotating rotors, the molecular speed of the water is braked due to its structure, and the particles that may remain during the flow are forced to leave them at the inlet of the multi separator machine (17). In this way, the system does not use filters and chemicals.

Claims

CLAIMS1- A system is related to a water-containing fluid electromagnetic reactor processing system for a sand and soil source (1) contaminated with hydrocarbons, and comprising;- an electromagnetic reactor (13), which has an effect on electron chemistry, molecular bonds, arms in the molecular structure and can perform molecular separation in water and water-containing fluids.- a salt water (seawater) tank (2) required to separate the oil in a usable way and wash the sands in the electromagnetic reactor (13) system,- a balancing lagoon (3) that transports the current mixture to the electromagnetic reactor (13) after a homogeneous mixture is made in the correct proportions,- analysis lagoon (4), which transports water contaminated with pathogens or nanosized heavy metals directly to the electromagnetic reactor (13),- triangular electromagnetic energy transfer arms (11), from which energy is transferred from the electromagnetic power generator (11.1) after the liquid enters the electromagnetic reactor input (12) from the balancing lagoon (3) or analysis lagoon (4),- an electromagnetic reactor center core (8), located at the center of the electromagnetic reactor (13), where the electromagnetic energy sent inside is directed,- a non-magnetic center core liner (6) covering the outside of the electromagnetic reactor central core (8),- archimedean screw wings (10) with different angles adapted on the the nonmagnetic center core liner (6)- electromagnetic energy transfer arms (11), which have a triangular structure and through which liquid or, in some cases, only air can be transferred,- an electromagnetic reactor outlet (9), which directs the electromagnetic power coming to the electromagnetic energy transfer arms (11) through the archimedes screw wings (10) and moving with the speed of light to all the molecular structure and electron bonds passing through the electromagnetic reactor (13) atnanosecond intervals from different angles, allowing them to contact from different angles and transporting the material in the electromagnetic reactor (13),- an electromagnetic collector air suction tube (5), which can add air from the environment at a maximum pressure of 0.15 bar at a rate of 1000 / 3 of the water passing through the electromagnetic reactor (13) per minute,- an electromagnetic collector gas collection pipe (7), which collects the released gases contained in the oil when oil and hydrocarbons are processed in the electromagnetic reactor (13),- a multi separator machine (17) to which an outlet containing water, oil, sand or soil is directed,- a static barrier discharge channel (15), positioned opposite the first entry point of the liquid entering from the electromagnetic reactor (13) into the multi separator machine (17),- multiple fluid diverter wings (16) that flow water in the right direction and at the right timing,- sand scraper diversion channels (20), which separate the oil particles that may remain on the sand by turning it in water before conveying it to the sand delivery pipes (21),- sand scraper motors (18) that move the sand scraper diversion channels (20),- reverse direction water pressure compensator rotors (19) that brake the molecular speed of water due to its structure and leave the particles that may remain in its content during the flow in the inlet part of the multi separator machine (17).2- The water-containing fluid processing system with an electromagnetic reactor as claimed in claim 1, characterized in that having the electromagnetic reactor center core (8) that transfers electromagnetic waves in hydrocarbons and water at different currents and angles.3- The water-containing fluid processing system with an electromagnetic reactor as claimed in claim 1, characterized in that having the archimedes screw wings (10) rotating with the help of a hydraulic motor when the content is hydrocarbon or particulate sand soil samples.4- The water-containing fluid processing system with an electromagnetic reactor as claimed in claim 1, characterized in that having the electromagnetic reactor center core (8) consisting of materials with three different magnetic attraction strengths, with the metals used in the content being tungsten, standard industrial steel and 304 stainless steel, respectively.5- The water-containing fluid processing system with an electromagnetic reactor as claimed in claim 1, characterized in that having the electromagnetic reactor (13) mounted at the inlet of the multi separator machine (17).

Citation Information

Patent Citations

  • Electromagnetic interference wastewater treatment device

    CN218232105U