Monday, 4 May 2015

Oil is energy poor

4 May 2015
                When you burn oil, two reactions happen
1              Cm(H2O)n+pO2 ->mCO2+nH2O-E this takes in power
2              Cm(H2O)n+rO2 ->mCO2+(n-s)H2O+s(He2++O2-+Es2)             this realises massive power
                I told Sheffeild University, UK about this in 2001, and tcoulnd my PhD quickly enough.  As we now know how to do nuclear fusion on Earth.  Nature uses heavy rain to do this
3              H2O+T->He2++O2-+E2+Xray           massive free heat. With no CO2
                When we get a potential build up of 5000 V, a partial steam plasma links up the cloud tops (Where the positive charge accumulates) and the ground (Which receives the negative).
                Every 3 minutes around the world, there is a lightning strike.   That takes ½ MW to set up!  As the steam plasma touches the ground, we get the up rush of 100 amps of charge electrons.  Through a steam plasma
4              2H++O2-+e-+T ->He++Et2+O2-
                Each lightning strike makes 5 tonnes of He gas: An energy release of 2.5x1030 W.  Calculated via E=mc2.
                This is the densesest release of energy on the planet.  Suns coronas only release heat, as they do nuclear fusion.  Equation 4 without the oxygen.
                We can set this system up in a glass tube, where we get an energy relase of 2.4 MW, from a 1 m x1 cm glass tube at 4 atmospheres.  We may prefer a 0.5 cm glass tube, as 1.2 MW is still a lot of heat to handle.
                The steam plasma tube needs to be in  a water bath, otherwise it will melt.  In a contained tube, we do more complicated physics.
5              H++e- ->n0
6              1H++m n0 ->Em3+Xray+L there is no chemical source of X-rays or light.
7              16O2-+p n0 ->161H++24e- then 6
                So we have a massive energy system that turns regular water into energy, X-rays and light.  We are onle concerned about the energy.
                A 25x1cm glass steam plasm a tube will generate 54 KW of continuous power.  If we reduce the plasma pressure, the tube will sink into an energy passive steam plasma! Jumping back into massive energy production as we raise the plasma pressure.
                And this system is so efficient, we are only goingto consume 3 ccs of regular water, in the life time of a super car.  It will happily drive even a personal helicopter. Utilizing no fossil fuels.
                Which transpire to be so energy poor.

Jonathan Thomason

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