Urban renewable resource hydrogen production intravenous industrial park system

By constructing an urban renewable resource hydrogen production industrial park system, the efficient integrated processing of urban renewable resources has been achieved, solving the problems of high energy consumption and low efficiency caused by independent resource processing in existing technologies, and realizing the resource utilization and zero emission of waste.

CN117181794BActive Publication Date: 2025-12-09CCCC SECOND HARBOR ENGINEERING CO LTD
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Patent Information

Application Number
CN202311081068.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-25
Publication Date
2025-12-09
Estimated Expiration
2043-08-25

AI Technical Summary

Technical Problem

The current urban renewable resources are processed independently, resulting in high energy consumption, low processing efficiency, and poor carbon emission reduction.

Method used

The project constructs an urban renewable resource hydrogen production industrial park system, including a sewage treatment system, an industrial solid waste gasification system, and a kitchen waste treatment system. Through the integration and coordinated processing of multiple systems, it achieves the internal circulation of materials, energy, and water, and uses a solar photovoltaic system to supplement energy, forming a closed-loop system.

Benefits of technology

It achieves efficient waste treatment and resource recycling, generates a large amount of hydrogen and electricity, and achieves zero emissions, reducing treatment costs and pollution emissions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a kind of urban renewable resource hydrogen production vein industrial park system, it is characterized by: including sewage treatment system and industrial solid waste gasification system, sewage treatment system is used to process sewage from kitchen waste treatment system and domestic waste incineration system and electrolytic hydrogen production, garden waste treatment system and excrement treatment system are connected with kitchen waste treatment system respectively, industrial solid waste gasification system is used to collect and process waste gas from kitchen waste treatment system and domestic waste incineration system, domestic waste incineration system and industrial solid waste gasification system are used to provide energy for sewage treatment system, and solar photovoltaic system for energy supplement is also provided.The application is ingeniously designed, links are established between different wastes, and then through the setting of mutually coordinated treatment systems, the wastes can be better treated and the energy supply can be maintained, forming a better closed loop.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of urban renewable resource utilization, and in particular to a system for hydrogen production from urban renewable resources in a static vein industrial park. BACKGROUND

[0002] Urban minerals are secondary resources with high economic value and recyclable utilization in cities, that is, urban renewable resources. Urban minerals have huge ecological, economic and environmental benefits. Developing urban minerals and turning waste into treasure can become the key to unlocking the shortage of primary resources and environmental pollution.

[0003] Hydrogen energy is a secondary energy source that is abundant, green, low-carbon and widely used. It is an important part of the future national energy system and is gradually becoming one of the important carriers of global energy transformation development.

[0004] Kitchen waste, urban excrement, industrial solid waste, livestock and poultry manure, garden waste, and sewage sludge in urban renewable resources contain a large amount of carbon-hydrogen mixture. After treatment, they can be used as hydrogen production raw materials. The tail water of the sewage treatment plant can also be used as a source of water for electrolytic hydrogen production. How to integrate various urban renewable resources to produce hydrogen, take advantage of the agglomeration of industrial parks, and find the best technical route is a matter worth thinking about.

[0005] Chinese patent document CN 107755402 A describes a new energy technology for catalytic hydrogen production from urban household waste. However, it can only utilize the secondary use of household waste, and the utilization range is limited. Chinese patent document CN 113522933 A describes a method for strong coupling and co-processing of waste in a static vein industrial park. The solid waste treatment system is considered as an organic whole, and in particular, waste tires are processed. However, the coverage is still small, and there are defects in use, which need to be improved. SUMMARY

[0006] The present application provides a system for hydrogen production from urban renewable resources in a static vein industrial park, which solves the problem that the renewable resources in the existing urban environment are independent of each other, cannot be comprehensively treated, have high energy consumption in separate treatment, have low treatment efficiency, cannot form a closed loop, and have poor carbon emission effect.

[0007] To solve the above technical problems, the technical scheme adopted by the present application is: a kind of urban renewable resource hydrogen production vein industrial park system, including sewage treatment system and industrial solid waste gasification system, sewage treatment system is used to process sewage from kitchen waste treatment system and domestic waste incineration system and electrolytic hydrogen production, garden waste treatment system and excrement treatment system are connected with kitchen waste treatment system respectively, industrial solid waste gasification system is used to collect and process waste gas from kitchen waste treatment system and domestic waste incineration system, domestic waste incineration system and industrial solid waste gasification system are used to provide energy for sewage treatment system, and solar photovoltaic system for energy supplement is also provided.

[0008] In the preferred scheme, the kitchen waste treatment system includes sequentially connected receiving device, bag breaking and sorting system, crushing and impurity removing system and solid-liquid separation system, and oil-water separation system and anaerobic fermentation system are respectively arranged on the two sides of the solid-liquid separation system, and the anaerobic fermentation system is connected with the industrial solid waste gasification system, the sewage treatment system and the domestic waste incineration system.

[0009] In the preferred scheme, the receiving device and the bag breaking and sorting system are respectively connected with the oil-water separation system, and a sand removing and slurry system is arranged between the solid-liquid separation system and the anaerobic fermentation system, and the oil-water separation system is connected with the anaerobic fermentation system through pipelines.

[0010] In the preferred scheme, a dewatering system is connected to the anaerobic fermentation system, and the dewatering system is connected with the sewage treatment system and the domestic waste incineration treatment system through pipelines respectively.

[0011] In the preferred scheme, a purification system is arranged on one side of the oil-water separation system, and the purification system, the bag breaking and sorting system and the crushing and impurity removing system are connected with the domestic waste incineration treatment system through pipelines respectively.

[0012] In the preferred scheme, the sewage treatment system includes a pretreatment system, a secondary biochemical treatment system and a sewage advanced treatment system, the sewage advanced treatment system is connected with an electrolytic cell and the domestic waste incineration system respectively, the electrolytic cell is connected with the industrial solid waste gasification system, the secondary biochemical treatment system is connected with the kitchen waste treatment system, and the domestic waste incineration system and the industrial solid waste gasification system provide electrolysis energy for the electrolytic cell.

[0013] In the preferred scheme, the electrolytic cell is connected with an electrolytic water buffer chamber, and the electrolytic water buffer chamber is connected with the domestic waste incineration system through pipelines.

[0014] In the preferred scheme, the industrial solid waste gasification system includes a compression system, a gasification furnace, a synthetic gas purification system and a hydrogen extraction system, an anaerobic pyrolysis channel is arranged between the compression system and the gasification furnace, the sewage treatment system is connected with the gasification furnace through pipelines, the synthetic gas purification system is connected with the kitchen waste treatment system, and the hydrogen extraction system is connected with an internal combustion power generation system and a tail gas purification system through pipelines.

[0015] In the preferred scheme, the household garbage treatment system comprises a incinerator and a boiler, the incinerator is connected with a mixed atomization chamber, the mixed atomization chamber is used for receiving oil from the kitchen garbage treatment system and heated water from the sewage treatment system, the incinerator is connected with the liquid-solid waste gasification system, the boiler is connected with a steam turbine and a tail gas purification system through pipelines, and the tail gas purification system is connected with the industrial solid waste gasification system;

[0016] The boiler is also connected with a steam chamber, the steam chamber is connected with a transducer through pipelines, and the transducer is connected with an electrolytic water buffer chamber.

[0017] In the preferred scheme, the excrement treatment system comprises a crushing and deslagging system, the crushing and deslagging system is connected with the household garbage incineration system, the crushing and deslagging system is connected with a hydrolysis desanding pool, the hydrolysis desanding pool is connected with the industrial solid waste gasification system and the kitchen garbage treatment system respectively, and the garden garbage treatment system comprises a crushing system, and the crushing system is connected with the kitchen garbage treatment system.

[0018] The industrial park has the advantages that after the completion of the industrial park, a large amount of hydrogen, electricity and building materials can be generated while treating urban waste, and zero emission is realized.

[0019] The advantages are that:

[0020] (1) The urban renewable resource hydrogen energy industrial park of the application reuses renewable resources (except construction waste) generated in the city to generate a large amount of hydrogen, which is a clean energy and realizes the transformation of waste into treasure.

[0021] (2) The application realizes complete material internal circulation, energy internal circulation and water internal circulation, for example, heat energy generated by industrial solid waste gasification and household garbage incineration is used as a heat source of an anaerobic fermentation system; wastewater generated after treatment of various types of solid waste enters a sewage treatment system for treatment and is used as electrolysis tank inflow water; oxygen generated synchronously by the electrolysis tank is used as oxygen required by the industrial solid waste gasification system and the sewage biochemical treatment system.

[0022] (3) The degree of resource utilization is high. All substances generated by the system, such as molten slag, waste oil and hydrogen, are renewable resources, and pollution emission is reduced.

[0023] (4) The system is more intensive, and solid waste such as household garbage, industrial solid waste, kitchen garbage and excrement and sewage are treated centrally, so that the construction and operation cost of self-treatment of filtrate generated by the solid waste treatment system is reduced, and the cost is lower.

[0024] (5) The system has two sets of heat treatment processes (household garbage incineration and industrial solid waste gasification), and solid waste (such as solid residues in kitchen garbage and biogas residues after excrement treatment) generated in each system can be sent to a suitable place according to its physical and chemical form, so that damage to the heat treatment system is avoided.

[0025] (6) The system can collect and process part of semi-finished raw materials alone, such as sludge from other municipal sewage treatment plants, to increase income and reduce costs.

[0026] (7) The electrolysis by-product of the tail water of the sewage treatment plant is used as oxygen required by the industrial solid waste gasification system, which saves the oxygen production cost of the industrial solid waste gasification system and is more energy-saving and efficient.

[0027] (8) The tail water treated by the sewage treatment plant can be used as cooling water for the household garbage incineration system and the industrial solid waste gasification system in addition to being used for electrolysis of water to produce hydrogen, thereby reducing the consumption of tap water in the system and reducing costs.

[0028] (9) The synthetic gas produced by the excrement treatment system and the industrial solid waste gasification system can be combined and hydrogen can be extracted together, and the desorption gas after hydrogen extraction can be used for self-generation, which can save a set of hydrogen extraction and power generation system and save investment.

[0029] (10) If other materials such as vegetables, livestock and poultry manure are added to the kitchen waste, the risk of anaerobic fermentation acidification can be reduced, and various urban biomass waste can be treated at the same time, and the nutrient balance of the materials can be promoted.

[0030] (11) The biogas residue of the kitchen waste treatment system, the grid residue produced by the domestic sewage treatment system, and the sundries produced by the garbage and excrement treatment system are first incinerated in the household garbage incineration system to fully utilize the calorific value, and the fly ash and slag produced after incineration are melted into slag in the industrial solid waste gasification system to be used as building materials, which not only generates economic benefits but also reduces the disposal cost of sludge, fly ash and other waste, and the economic benefits are objective. BRIEF DESCRIPTION OF DRAWINGS

[0031] The present application will be further described below in conjunction with the drawings and examples:

[0032] Figure 1 is the overall process schematic diagram of the present application;

[0033] Figure 2 is the kitchen waste treatment system process schematic diagram of the present application;

[0034] Figure 3 is the sewage treatment system process schematic diagram of the present application;

[0035] Figure 4 is the industrial solid waste gasification system process schematic diagram of the present application;

[0036] Figure 5 is the household garbage incineration system process schematic diagram of the present application;

[0037] Figure 6 is the excrement treatment system process schematic diagram of the present application;

[0038] Figure 7 is a process schematic diagram of the garden waste treatment system of the present application. DETAILED DESCRIPTION

[0039] As Figures 1-7 In the present application, a city renewable resource hydrogen production vein industrial park system comprises a sewage treatment system and an industrial solid waste gasification system. The sewage treatment system is used for treating sewage from a kitchen waste treatment system and a household waste incineration system and electrolyzing to produce hydrogen. A garden waste treatment system and a manure treatment system are connected with the kitchen waste treatment system respectively. The industrial solid waste gasification system is used for collecting and treating waste gas from the kitchen waste treatment system and the household waste incineration system. The household waste incineration system and the industrial solid waste gasification system are used for providing energy for the sewage treatment system. A solar photovoltaic system for energy supplement is also provided. The kitchen waste treatment system treats kitchen waste and kitchen garbage. The manure treatment system treats city manure and livestock breeding manure. The sewage treatment system can treat city domestic sewage, industrial sewage and sewage generated in the vein industrial park.

[0040] Meanwhile, considering that the vein industrial park occupies a large area, the solar photovoltaic system is provided to supplement the power consumption of the industrial park. A rural straw and other biomass treatment system can also be added according to actual needs to utilize the energy of natural resources and further ensure energy self-sufficiency. The hydrogen produced by electrolysis of water can be stored and externally supplied as energy. Hydrogen energy has the advantages of zero pollution, high efficiency, abundant source and wide application and is called future energy and receives attention from all aspects.

[0041] Specifically, each part is coordinated and cooperated with each other to ensure efficient utilization of renewable resources.

[0042] 1) The sludge of the sewage treatment system, the broken organic matter of the garden waste treatment system and the slurry of the manure treatment system all enter the anaerobic fermentation tank of the kitchen waste treatment system to produce biogas. The produced biogas is subjected to subsequent purification and hydrogen extraction processes together with the industrial solid waste gasification system.

[0043] 2) The wastewater generated in the whole industrial park is all subjected to centralized treatment in the sewage treatment system.

[0044] 3) The garbage, grid residue and biogas residue generated in each system all first enter the household waste incineration system to be incinerated to produce slag. The biogas residue then enters the industrial solid waste gasification system to be melted into molten slag. The molten slag can be sold as building materials.

[0045] 4) The power required by each system is generated by the household waste incineration system and the industrial solid waste gasification system. The insufficient power can be obtained by setting a solar photovoltaic panel to generate electricity.

[0046] 5) The heat source required by the anaerobic fermentation system is supplied by the domestic waste incineration system and the industrial solid waste gasification system.

[0047] 6) The tail water of the sewage treatment plant is preferentially used as reclaimed water for other systems, such as the cooling water of the domestic waste incineration system, and the remaining tail water is used to produce hydrogen by electrolysis.

[0048] 7) The oxygen produced by electrolysis of water is preferentially used as the oxygen required by the industrial solid waste gasification system.

[0049] By establishing the mutual relationship between renewable resources, the different systems are complementary and coordinated with each other, forming a peak clipping and valley filling effect, maintaining sufficient energy supply, and better handling the secondary use of renewable resources. The waste is in the form of purified gas into nature, for resource recycling and utilization.

[0050] In the preferred scheme, the kitchen waste treatment system includes a material receiving device, a bag breaking and sorting system, a crushing and impurity removing system, and a solid-liquid separation system connected in sequence. The solid-liquid separation system is provided with an oil-water separation system and an anaerobic fermentation system on both sides, and the anaerobic fermentation system is connected with the industrial solid waste gasification system, the sewage treatment system, and the domestic waste incineration system.

[0051] The impurities sorted out by the bag breaking and sorting system and the crushing and impurity removing system are incinerated in the domestic waste incineration system. The filtrate generated by the material receiving device and the sorting system and the liquid separated by the solid-liquid separation system enter the oil-water separation system for separation, and the separated crude oil is recovered and treated again.

[0052] In the preferred scheme, the material receiving device and the bag breaking and sorting system are connected with the oil-water separation system, and a sand removal and slurry system is provided between the solid-liquid separation system and the anaerobic fermentation system. The oil-water separation system is connected with the anaerobic fermentation system through a pipeline.

[0053] The solid phase components of the solid-liquid separation system enter the anaerobic fermentation system after sand removal and slurry, together with the filtrate after oil-water separation, to generate biogas. The generated biogas is transported to the industrial solid waste gasification system, and the synthesis gas generated by the gasification system is purified and then subjected to a steam reforming reaction to produce hydrogen.

[0054] In the preferred scheme, a dewatering system is connected to the anaerobic fermentation system, and the dewatering system is connected with the sewage treatment system and the domestic waste incineration treatment system through pipelines.

[0055] The waste liquid generated after the solid-liquid mixture after the anaerobic fermentation system is dewatered by the dewatering system enters the sewage treatment plant for treatment, and the biogas residue enters the domestic waste incineration system for incineration treatment. The steam required by the anaerobic fermentation system is preferentially supplied by the domestic waste incineration system and the industrial solid waste gasification system.

[0056] In the preferred scheme, the oil-water separation system is provided with a purification system on one side, and the purification system, the bag breaking and sorting system and the crushing and impurity removing system are connected with the household garbage incineration treatment system through pipelines. The crude oil can be used to produce biodiesel after high purification, and the oil with low purity can be used as combustion material of the household garbage incineration system, thereby improving the efficiency of household garbage combustion, and the solid large materials and impurities are relatively concentrated and occupy small space by the combustion method. Since the kitchen garbage has a large volume, the combustion method can ensure the treatment rate of the garbage and avoid new pollution caused by the accumulation of the garbage.

[0057] In the preferred scheme, the sewage treatment system comprises a pretreatment system, a secondary biochemical treatment system and a sewage advanced treatment system, the sewage advanced treatment system is connected with the electrolytic cell and the household garbage incineration system, the electrolytic cell is connected with the industrial solid waste gasification system, the secondary biochemical treatment system is connected with the kitchen garbage treatment system, and the household garbage incineration system and the industrial solid waste gasification system provide electrolysis energy for the electrolytic cell. The sewage is sequentially subjected to pretreatment, secondary biochemical treatment and tertiary advanced treatment, and hydrogen is produced by electrolysis after the water quality meets the requirements of electrolytic water production. The power required by the electrolytic cell is supplied by the power generated by the industrial solid waste gasification system and the household garbage incineration system. The garbage generated by the sewage treatment plant and the grid residue in the pretreatment stage are transported to the household garbage incineration system for incineration; the sludge generated by the secondary biochemical treatment and the tertiary advanced treatment is transported to the anaerobic fermentation system in the kitchen garbage treatment system after dehydration for subsequent hydrogen production treatment; the oxygen produced by the electrolytic water hydrogen production is used as the oxygen required for the reaction of the industrial solid waste gasification system. The treated water of the sewage system enters the cooling tower of the household garbage incineration system and the industrial solid waste gasification system to cool, purify and recycle the high-temperature gas generated by combustion.

[0058] In the preferred scheme, the electrolytic cell is connected with an electrolytic water buffer room, and the electrolytic water buffer room is connected with the household garbage incineration system through pipelines. The electrolytic water buffer room is insulated with insulation materials. Since a large amount of water is consumed in the electrolysis process, it needs to be supplemented in time, and the electrolysis process needs to maintain a suitable temperature to ensure the electrolysis efficiency and avoid large energy loss and low energy efficiency. Therefore, the electrolytic water buffer room can better preheat the electrolytic water to avoid a large temperature difference between the new electrolytic water added into the electrolytic cell and the original electrolytic water. The electrolytic water buffer room is also pumped into the household garbage incineration system as needed to assist oil combustion.

[0059] In the preferred scheme, the industrial solid waste gasification system comprises a compression system, a gasification furnace, a synthesis gas purification system and a hydrogen extraction system, an anaerobic pyrolysis channel is arranged between the compression system and the gasification furnace, the sewage treatment system is connected with the gasification furnace through pipelines, the synthesis gas purification system is connected with the kitchen garbage treatment system, and the hydrogen extraction system is connected with an internal combustion power generation system and a tail gas purification system through pipelines.

[0060] The compressed industrial solid waste enters the anaerobic pyrolysis channel, and pyrolysis is carried out in the channel by using the waste heat of the system. The pyrolyzed industrial solid waste enters the gasifier for high-temperature melting, and H2, CH4 and CO are generated as the main synthesis gas. The synthesis gas is combined with the biogas generated by the anaerobic fermentation system in the kitchen waste treatment system, and then enters the synthesis gas purification system. The purified synthesis gas is subjected to steam reforming in the hydrogen extraction system and hydrogen is extracted. The extracted hydrogen is sold externally, and the desorption gas after extraction of hydrogen enters the power generation system for power generation. The oxygen required by the gasifier is generated in the electrolytic hydrogen production system in the sewage treatment system.

[0061] In the preferred scheme, the household garbage treatment system includes a incinerator and a boiler, the incinerator is connected with a mixed atomization chamber, the mixed atomization chamber is used for receiving oil from the kitchen waste treatment system and heated water from the sewage treatment system, the incinerator is connected with the liquid-solid waste gasification system, the boiler is connected with a steam turbine and a tail gas purification system through pipelines, and the tail gas purification system is connected with the industrial solid waste gasification system.

[0062] The boiler is also connected with a steam chamber, the steam chamber is connected with a transducer through pipelines, and the transducer is connected with an electrolytic water buffer chamber.

[0063] The heat energy generated after the garbage is incinerated by the incinerator is used for power generation by the boiler, steam turbine and generator, and the generated electricity is used for power supply of the entire industrial park together with the electricity generated by the industrial solid waste gasification system. The slag and fly ash generated by the flue gas purification system are disposed in the industrial solid waste gasification system. The transducer absorbs and transmits the high-temperature and high-pressure steam heat to the electrolyte buffer chamber, provides temperature rise energy for new electrolyte, and converts the high-temperature and high-pressure steam into liquid water for subsequent use. The oil liquid with lower purity from the kitchen waste treatment system is mixed with the heated water to exchange energy, and the atomized oil liquid molecules are burned efficiently in the incinerator, ensuring that the calorific value is sufficient, providing stable energy for the incinerator, and ensuring that the overall combustion effect is better.

[0064] In the preferred scheme, the feces treatment system includes a crushing and deslagging system, the crushing and deslagging system is connected with the household garbage incineration system, and the crushing and deslagging system is connected with a hydrolysis desanding pool, which is connected with the industrial solid waste gasification system and the kitchen waste treatment system. The garden waste treatment system includes a crushing system, and the crushing system is connected with the kitchen waste treatment system.

[0065] The feces is first crushed and dreg-removed to remove sundries therein, and then enters a hydrolysis sand-removing tank to remove inorganic precipitates in the feces, and the feces after removal of sundries and sand is transported to an anaerobic fermentation system in the kitchen garbage treatment system for subsequent hydrogen production treatment. The sundries in the feces enter a household garbage incineration system for incineration treatment, and the sand in the hydrolysis sand-removing tank enters an industrial solid waste gasification system for gasification treatment to form glassy slag for sale as building materials. The garden garbage is crushed in the plant and then transported to the anaerobic fermentation system in the kitchen garbage treatment system for subsequent hydrogen production treatment.

[0066] The above-described embodiments are merely preferred technical solutions of the present application and should not be regarded as limitations of the present application, and the protection scope of the present application should be the technical solutions recited in the claims, including equivalent replacement solutions of the technical features recited in the claims. That is, equivalent replacement improvements within this range are also within the protection scope of the present application.

Claims

1. A municipal renewable resource hydrogen production intravenous industrial park system, characterized in that: The system comprises a sewage treatment system and an industrial solid waste gasification system, the sewage treatment system is used for treating sewage from a kitchen waste treatment system and a household garbage incineration system and electrolyzing to produce hydrogen, a garden waste treatment system and a manure treatment system are connected with the kitchen waste treatment system respectively, the industrial solid waste gasification system is used for collecting and treating waste gas from the kitchen waste treatment system and the household garbage incineration system, the household garbage incineration system and the industrial solid waste gasification system are used for providing energy for the sewage treatment system, and a solar photovoltaic system for energy supplement is further arranged; The household garbage treatment system comprises an incinerator and a boiler, the incinerator is connected with a mixed atomization chamber, the mixed atomization chamber is used for receiving oil from the kitchen waste treatment system and heated water from the sewage treatment system, the incinerator is connected with the liquid-solid waste gasification system, the boiler is connected with a steam turbine and a tail gas purification system through pipelines, and the tail gas purification system is connected with the industrial solid waste gasification system; A steam chamber is further connected with the boiler, the steam chamber is connected with a transducer through pipelines, and the transducer is connected with an electrolytic water buffer chamber; The sewage treatment system comprises a pretreatment system, a secondary biochemical treatment system and a sewage advanced treatment system, the sewage advanced treatment system is connected with an electrolytic cell and the household garbage incineration system respectively, the electrolytic cell is connected with the industrial solid waste gasification system, the secondary biochemical treatment system is connected with the kitchen waste treatment system, and the household garbage incineration system and the industrial solid waste gasification system provide electrolysis energy for the electrolytic cell; The industrial solid waste gasification system comprises a compression system, a gasification furnace, a synthetic gas purification system and a hydrogen extraction system, an oxygen-free pyrolysis channel is arranged between the compression system and the gasification furnace, the sewage treatment system is connected with the gasification furnace through pipelines, the synthetic gas purification system is connected with the kitchen waste treatment system, and the hydrogen extraction system is connected with an internal combustion power generation system and a tail gas purification system through pipelines.

2. The urban renewable resource hydrogen production and distribution system of claim 1, wherein: The kitchen waste treatment system comprises sequentially connected material receiving devices, bag breaking and sorting systems, crushing and impurity removing systems and solid-liquid separation systems, oil-water separation systems and anaerobic fermentation systems are arranged on the two sides of the solid-liquid separation systems respectively, and the anaerobic fermentation systems are connected with the industrial solid waste gasification system, the sewage treatment system and the household garbage incineration system respectively.

3. The urban renewable resource hydrogen production and distribution system of claim 2, wherein: The material receiving devices and the bag breaking and sorting systems are connected with the oil-water separation systems respectively, a sand removing and uniform slurry system is arranged between the solid-liquid separation systems and the anaerobic fermentation systems, and the oil-water separation systems are connected with the anaerobic fermentation systems through pipelines.

4. The urban renewable resource hydrogen production and distribution system of claim 2, wherein: The anaerobic fermentation systems are connected with dehydration systems, and the dehydration systems are connected with the sewage treatment system and the household garbage incineration treatment system through pipelines respectively.

5. The urban renewable resource hydrogen production and distribution system of claim 4, wherein: A purification system is arranged on one side of the oil-water separation system, and the purification system, the bag breaking and sorting system and the crushing and impurity removing system are connected with the household garbage incineration treatment system through pipelines respectively.

6. The urban renewable resource hydrogen production and distribution system of claim 1, wherein: The electrolytic cell is connected with an electrolytic water buffer chamber, and the electrolytic water buffer chamber is connected with the household garbage incineration system through pipelines.

7. The urban renewable resource hydrogen production vein industry park system of claim 1, characterized in that: The manure treatment system comprises a crushing and residue removing system, the crushing and residue removing system is connected with the household garbage incineration system, the crushing and residue removing system is connected with a hydrolysis and sand removing pool, the hydrolysis and sand removing pool is connected with the industrial solid waste gasification system and the kitchen waste treatment system respectively, and the garden waste treatment system comprises a crushing system, and the crushing system is connected with the kitchen waste treatment system.

Citation Information

Patent Citations

  • New energy technology for municipal domestic waste catalytic hydrogen production

    CN107755402A

  • Organic matter combined anaerobic pretreatment device and method

    CN112517615A

  • Strong coupling cooperative treatment method for urban venous industrial park wastes

    CN113522933A

  • Landfill treatment and cyclic utilization method and system suitable for hydrogen energy development and utilization

    CN113546951A