Combi cleaning machine for green energy
The combined green power cleaning machine addresses carbon deposits and inefficient hydrogen production by separating water and gas, enhancing engine efficiency and fuel economy through water reuse.
Patent Information
- Application Number
- DE102018100007
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2018-01-02
- Publication Date
- 2025-07-24
- Estimated Expiration
- 2038-01-02
AI Technical Summary
Existing internal combustion engines face issues with carbon deposits due to incomplete combustion, leading to high fuel consumption and poor efficiency, while conventional gas-water separators for hydrogen production are inefficient and lack effective water recycling.
A combined green power cleaning machine with a housing, filter modules, and an electrolysis unit effectively separates water and gas, reusing non-evaporated water to enhance power efficiency.
The machine achieves efficient separation of water and gas, enabling water reuse and reducing power consumption by recycling non-evaporated water, thereby improving engine performance and fuel efficiency.
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Abstract
Description
Technical field of the invention
[0001] The present invention relates to a green energy combined cleaning machine, and more particularly to a combined cleaning machine capable of effectively separating water and gas and reusing water not evaporated into gas to achieve an energy saving effect. State of the art
[0002] Today, most motor vehicles use internal combustion engines. The internal combustion engine burns and atomizes oil and gas to generate energy. After prolonged use, the phenomenon of carbon deposition occurs during the combustion process. Since most of today's motor vehicles are primarily used for short trips in urban areas and often travel at low speeds due to traffic jams, their engines run at low speeds for long periods of time. This naturally leads to incomplete combustion of oil and gas, which in turn causes high carbon deposition. Such carbon deposits can easily accumulate in the engine and thus cause problems such as high fuel consumption, poor operating efficiency, and difficult starting.
[0003] Existing automotive carbon removal devices are used to remove carbon deposits generated during vehicle operation. The method used for automotive carbon removal devices primarily involves introducing hydrogen into a vehicle's engine through a pipeline. This hydrogen combines with the carbon deposits present in the engine. The carbon deposits are then combusted, forming fine carbon molecules that are then discharged through the exhaust pipe to expel the carbon deposits present in the engine, thereby solving the problems of poor operating efficiency and high fuel consumption.
[0004] For the aforementioned hydrogen production, a gas-water separator is used, in which hydrogen is produced through water electrolysis. The disadvantages of conventional gas-water separators are that the efficiency of hydrogen production is low and effective water recycling is not possible.
[0005] US 2016 / 0 108 528 A1 describes a gas generator with a water tank and an electrolysis device. The water tank contains a first hollow portion for holding electrolyzed water. The electrolysis device, located in the hollow portion, generates a hydrogen-oxygen gas mixture through an electrolysis process. The gas generator can prevent explosions and has the function of controlling the temperature of the electrolyzed water and cooling the electrolyzed water after the hydrogen-oxygen mixture has been generated. Object of the invention
[0006] The main object of the present invention is to provide a green energy combined purification machine that effectively separates water and gas and reuses water not evaporated into gas to achieve an energy saving effect.
[0007] To achieve the above object, a green energy combo cleaning machine is provided by independent claim 1. Further advantageous embodiments of the invention are specified in the dependent claims.
[0008] The present invention relates to a green energy combination purification machine comprising: a casing having a water inlet and a gas outlet, a lid being disposed at the opening of the water inlet; a filter module provided in the casing, the filter module having a first filter assembly and a second filter assembly; an electrolysis unit provided in the casing; and a separation seat provided in the casing between the filter module and the electrolysis unit, the separation seat having a tubular body and being provided with at least one hole, the hole being provided at a bottom of the separation seat.When water is filled into the water inlet, the water flows through the hole of the separation seat and into the electrolysis unit, the water is heated to steam by the electrolysis unit, the water vapor is passed sequentially through the tube body, the first filter assembly and the second filter assembly, whereby the water is separated from the gas and the gas is expelled from the housing via the gas outlet.
[0009] In the above-described combined green energy cleaning machine, the first filter assembly comprises a bottom plate and a plurality of filter elements, wherein a plurality of filter elements are successively stacked laterally on the bottom plate, wherein a plurality of first blocking plates are successively arranged at a distance on one side of the respective filter element, wherein the respective first blocking plates each have an opening, wherein the bottom plate and all filter elements are each provided with a through hole, wherein the through holes are arranged staggered.
[0010] In the green energy combo cleaning machine described above, the second filter assembly is arranged vertically within the housing, with the second filter assembly being arranged on one side of the first filter assembly.
[0011] In the above-described combined green energy purification machine, the second filter assembly further comprises a second filter element, a gas outlet valve, a water inlet valve, a plurality of inclined plates, a partition plate, and a plurality of second blocking plates. The gas outlet valve is arranged at a corner of the upper side of the second filter assembly, the water inlet valve is arranged at a corner of the lower side of the second filter assembly. The inclined plates and the partition plate are arranged on one side of the second filter element. The inclined plates are arranged sequentially from top to bottom at a distance from each other. The second blocking plates are respectively provided on the corresponding inclined plates. The second blocking plates are arranged sequentially from left to right at a distance from each other. The partition plate is arranged adjacent to the inclined plates.wherein a plurality of oblique discs are provided on one side of the partition plate, wherein the oblique discs are arranged one after the other from top to bottom at a distance from each other, wherein the second blocking plates are each provided between the oblique discs., Short description of the drawing Fig. 1 shows a schematic perspective view according to the present invention; Fig. Fig. 2 shows a schematic exploded view of the internal structure of the housing according to the present invention; Fig. 3 shows a schematic perspective view of the structure of the separating seat according to the present invention; Fig. 4 shows a schematic exploded view of the detailed structure of the first filter assembly according to the present invention; Fig. 5 is a partially enlarged schematic view showing the detailed structure of the second filter assembly according to the present invention; Fig. 6 is a partially enlarged schematic view of the structure of the filter element of the first filter assembly according to the present invention; Fig. 7 shows a first schematic cross-sectional view according to the present invention; Fig. Figure 8 shows a second schematic cross-sectional view according to the present invention. Detailed description of the preferred embodiments
[0012] See also the Fig. 1 to 8. The combined green energy purification machine according to the invention comprises: a housing 10 having a water inlet 12 and a gas outlet 11, wherein a lid 13 is arranged at the opening of the water inlet 12; a filter module 20 provided in the housing 10, the filter module 20 having a first filter assembly 21 and a second filter assembly 22; an electrolysis unit 40 provided in the housing 10; and a separation seat 30 provided in the housing 10 between the filter module 20 and the electrolysis unit 40, the separation seat 30 having a tubular body 31 and being provided with at least one hole 32, the hole 32 being provided at the bottom of the separation seat 30.When water is filled into the water inlet 12, the water flows through the hole 32 of the separation seat 30 and into the electrolysis unit 40, the water is heated to steam by the electrolysis unit 40, the water vapor is passed sequentially through the tube body 31, the first filter assembly 21 and the second filter assembly 22, whereby the water is separated from the gas and the gas is expelled from the housing 10 via the gas outlet 11.
[0013] Fig. 4 shows a schematic exploded view of the detailed structure of the first filter assembly according to the present invention. Fig. 5 shows a partially enlarged schematic view of the detailed structure of the second filter assembly according to the present invention. Fig. 6 shows a partially enlarged schematic view of the structure of the filter element of the first filter assembly according to the present invention. The first filter assembly 21 comprises a bottom plate 211 and a plurality of filter elements 212, wherein a plurality of filter elements 212 are successively stacked laterally on the bottom plate 211, wherein a plurality of first blocking plates 213 are successively arranged at a distance from one another on one side of the respective filter element 212, wherein the respective first blocking plates 213 each have an opening 214, wherein the bottom plate 211 and all filter elements 212 are each provided with a through-hole 215, wherein the through-holes 215 are arranged in a staggered manner; wherein the second filter assembly 22 is arranged vertically within the housing 10, wherein the second filter assembly 22 is arranged on one side of the first filter assembly 21.
[0014] Fig. Figure 7 shows a first schematic cross-sectional view according to the present invention. Here, the second filter assembly 22 further comprises a second filter element 221, a gas outlet valve 222, a water inlet valve 223, a plurality of inclined plates 224, a partition plate 225, and a plurality of second blocking plates 226. The gas outlet valve 222 is arranged at a corner of the upper side of the second filter assembly 22, the water inlet valve 223 is arranged at a corner of the lower side of the second filter assembly 22, the inclined plates 224 and the partition plate 225 are arranged on one side of the second filter element 221, the inclined plates 224 being arranged one after the other from top to bottom, spaced from each other, the second blocking plates 226 being provided on the corresponding inclined plates 224, the second blocking plates 226 being arranged one after the other from left to right,wherein the partition plate 225 is arranged adjacent to the inclined plates 224, wherein a plurality of inclined discs 227 are provided on one side of the partition plate 225, wherein the inclined discs 227 are arranged one after the other from top to bottom at a distance from each other, wherein the second blocking plates 226 are each provided between the inclined discs 227.,
[0015] Fig. Figure 8 shows a second schematic cross-sectional view according to the present invention. See also Fig.1 to 7. When using the green energy combined cleaning machine according to the invention, the user can open the lid 13 and supply water via the water inlet 12, the water flows through the holes 32 of the separation seat 30 into the electrolysis unit 40, the water is heated to steam by the electrolysis unit 40, the water vapor is passed sequentially through the tube body 31, the first filter assembly 21 and the second filter assembly 22, whereby the water is separated from the gas and the gas is expelled from the housing 10 via the gas outlet 11.Due to the structure of the first blocking plates 213 of the filter elements 212 and the second blocking plates 226 of the second filter element 221, water can be separated from gas, whereby the gas is expelled from the housing 10 through the gas outlet valve 222 and then through the gas outlet 11, and the water flows back to the electrolysis unit via the water inlet valve 223, so that the combined green energy purification machine according to the invention can effectively separate water and gas, and reuse water that has not evaporated into gas to achieve an energy saving effect.
Claims
[1] A green energy combo cleaning machine comprising: a housing (10) having a water inlet (12) and a gas outlet (11), wherein a cover (13) is arranged at the opening of the water inlet (12); a filter module (20) provided in the housing (10), the filter module (20) comprising a first filter assembly (21) and a second filter assembly (22); an electrolysis unit (40) provided in the housing (10); and a separating seat (30) provided in the housing (10) between the filter module (20) and the electrolysis unit (40), the separating seat (30) having a tubular body (31) and being provided with at least one hole (32), the hole (32) being provided at the bottom of the separating seat (30); wherein, when water is filled into the water inlet (12), the water flows through the hole (32) of the separation seat (30) and into the electrolysis unit (40), wherein the water is heated to steam by the electrolysis unit (40), wherein the water vapor is passed sequentially through the tube body (31), the first filter assembly (21) and the second filter assembly (22), whereby the water is separated from the gas and the gas is expelled from the housing (10) via the gas outlet (11), wherein the second filter assembly (22) has a first part and a second part which are separated from each other by a partition plate (225),wherein the first part includes inclined plates (224) having at least a first and a second slope directed upwards in opposite directions to form a first passage between the first and second slopes extending in a serpentine upward and downward direction, wherein the second part has a second passage extending in a serpentine upward and downward direction, wherein the first passage has a larger serpentine pattern than the second passage and the first passage and the second passage are separated from each other by a separating plate, and, wherein the first filter assembly (21) comprises a base plate (211) and a plurality of filter elements (212), wherein the plurality of filter elements (212) are stacked one after the other laterally on the base plate (211), wherein a plurality of first blocking plates (213) are arranged one after the other at a distance on one side of the respective filter element, wherein the respective first blocking plates (213) each have an opening (214), wherein the base plate (211) and all filter elements (212) are each provided with a through-hole (215), and wherein the through-holes (215) are arranged offset. [2] A green energy combination cleaning machine according to claim 1, wherein the second filter assembly (22) is arranged vertically within the housing (10), the second filter assembly (22) being arranged on one side of the first filter assembly (21). [3] A green energy combination cleaning machine according to claim 2, wherein the second filter assembly (22) further comprises a second filter element (221), a gas outlet valve (222), a water inlet valve (223), a plurality of inclined plates (224), a partition plate (225), and a plurality of second blocking plates (226), wherein the gas outlet valve (222) is arranged at a corner of the upper side of the second filter assembly (22), wherein the water inlet valve (223) is arranged at a corner of the lower side of the second filter assembly (22), wherein the inclined plates (224) and the partition plate (225) are arranged on a surface of the second filter element (221) such that the inclined plates (224) are arranged spaced from each other one after the other from top to bottom, wherein each of the inclined plates (224) is provided with a plurality of second blocking plates (226), wherein the second Blocking plates (226) are arranged one after the other from left to right, spaced from each other,wherein the partition plate (225) is arranged adjacent to the inclined plates (224), wherein a plurality of inclined discs (227) are provided on one side of the partition plate (225) such that the inclined discs (227) are arranged one after the other from top to bottom at a distance from each other, and the inclined plates (224) are provided alternately with the second blocking plates (226).
Citation Information
Patent Citations
Gas generator
US20160108528A1