Figure (1)
Figure (1)
How it is written
- (1) 11×
Drawings 1
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that shown in Figure 1. · Hydrogen Aeration Injection System
On this figure 6
- 19 Hydrogen Source
- 42 Gas Mixture System
- 60 Alternative Combustion Chamber
- 63 Hydrogen Gas
- 74 Outlet
- 102 Container
Where it is named · 11
Hydrogen Aeration Injection System 11×
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Figure 2 is a block schematic illustration of the preferred embodiment of Figure 1.
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that shown in Figure 1.
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Referring particularly to Figure 1 the complete overall combustion system is illustrated together with a mechanically driven piston, Similarly, Figure 2 illustrates the complete system in its preferred embodiment.
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With particular reference to Figure 1, the hydrogen source 19 is the hydrogen generator disclosed and described in my copending application,supra. The container 102 is an enclosure for a natural water bath 2. Immersed in the water 2? is an array of plates 3 of similar non-oxidizing material. Applied to plates 3 is a source of pulsed direct current potential via electrical inlet 27.
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More specifically with reference to Figure 5, to be taken in conjunction with the generator 10, of Figure 1, there is illustrated schematically in cross-section the invention in its most simplified embodiment.
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The apparatus of Figure 2 comprises much the same systen as Figure 1. In this embodiment the components are depicted more explicitly in their structural relationship in an altermate arrangement. Basically, the system is operable as that in Figure 1, i.e. @ mixture of volatile (hydrogen) gas and noncompustible gasses (exhaust). _
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The apparatus of Figure 2 comprises much the same systen as Figure 1. In this embodiment the components are depicted more explicitly in their structural relationship in an altermate arrangement. Basically, the system is operable as that in Figure 1, i.e. @ mixture of volatile (hydrogen) gas and noncompustible gasses (exhaust). _
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The output of mixing chamber 40, as described relative to Figure 1 and 2 is fed via line 9 to a gas mixture system 42.
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rember 60 the cone 63 captures a portion of the non-conbustible +2+.ses 64, The captured exhaust gas is returned via pipe line “% and outlet 74 to the combustion process as set in Figure 1
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The process utilizes a mechanical drive System as described relative to Figures 1 and 2; and which mechanical drive may be that of a piston such as utilized in a gasoline engine. In operation, the process mixture is ignited much in the same mMenner as in Figure 1. The drive mechanism in tum activates