tag:blogger.com,1999:blog-17732755026369043452024-03-12T19:29:58.280-07:00Hydrogen Gas TechnologyAnonymoushttp://www.blogger.com/profile/12612706028372760008noreply@blogger.comBlogger1125tag:blogger.com,1999:blog-1773275502636904345.post-10110197301164734992012-02-24T06:10:00.001-08:002012-04-22T11:09:47.927-07:00Free Hydrogen Gas Technology: a New to Science Technology<div class="separator" style="clear: both; text-align: center;">
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEiM0fh7FnF9-JkJ133N5iDuMlpjJ6fcx6V12-i-IXGD3DY4JavW0SQXbtCuyYXrnvK7iNhVTjfm5-xXQUAeB6r_HK62sMxak1lAAdqA7BwK6y-mdw8rstuLLO84hPG0l-U3V5EaWesRlEM/s1600/hydrogen.gas.technology.stanley.meyer.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="358" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEiM0fh7FnF9-JkJ133N5iDuMlpjJ6fcx6V12-i-IXGD3DY4JavW0SQXbtCuyYXrnvK7iNhVTjfm5-xXQUAeB6r_HK62sMxak1lAAdqA7BwK6y-mdw8rstuLLO84hPG0l-U3V5EaWesRlEM/s640/hydrogen.gas.technology.stanley.meyer.png" width="640" /></a></div>
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Free Hydrogen Gas Technology: a New to Science Technology<br />
A quick Google Search for <a href="https://www.google.com/search?num=100&hl=en&newwindow=1&safe=off&site=&q=%22Elcectrostatic+Dissociation+Technology%22&btnK=Google+Search&oq=&aq=&aqi=&aql=&gs_sm=&gs_upl="></a><a href="https://www.google.com/search?num=100&hl=en&newwindow=1&safe=off&q=%22Electrostatic+Dissociation+Technology%22&oq=%22Electrostatic+Dissociation+Technology%22&aq=f&aqi=&aql=&gs_sm=12&gs_upl=118827l121061l0l123768l3l3l0l0l0l0l132l349l0.3l3l0">"Electrostatic Dissociation Technology"</a> will indicate how <span style="color: red;">New to Science</span> this<br />
[Voltage does Work] approach to chemistry really is!<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgcv7hF2IWYbemOiXPiMoFyXjBAO4Q-htk48hL2wzwO5Jj-Nwx9UqTVyewll65XkdLuwcEX5cG0oYnfkqC5LNM0xPbXCfuglwviTiQ6zv4OP5NeNDGA4DRYv4OsOldTYS0Yv3M6iU_cPRA/s1600/hydrogen.technology.hydrogen.gas.technology.meyer.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgcv7hF2IWYbemOiXPiMoFyXjBAO4Q-htk48hL2wzwO5Jj-Nwx9UqTVyewll65XkdLuwcEX5cG0oYnfkqC5LNM0xPbXCfuglwviTiQ6zv4OP5NeNDGA4DRYv4OsOldTYS0Yv3M6iU_cPRA/s1600/hydrogen.technology.hydrogen.gas.technology.meyer.png" /></a></div>
We can best honor what this man gave the world by acting upon this information, email someone, talk in public and bring this into the consciousness. Thank You!<br />
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Stanley Meyer. below, during one of his video interviews...<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEj2OFD0LMwBbPCJa3pq3_MRFc9IxXNRKqKxt_1DAyMsxA4GuU34QBtbQSPu9KES34rHmA-O-930htsySTWVt9G5MNQCzGLbLYMPpdxqJTAPtSO9GgeLhSTPULiXILuSYtGsoH4jWMi-Gj0/s1600/stanley.meyer.with.water.injector.spark.plug.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="236" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEj2OFD0LMwBbPCJa3pq3_MRFc9IxXNRKqKxt_1DAyMsxA4GuU34QBtbQSPu9KES34rHmA-O-930htsySTWVt9G5MNQCzGLbLYMPpdxqJTAPtSO9GgeLhSTPULiXILuSYtGsoH4jWMi-Gj0/s320/stanley.meyer.with.water.injector.spark.plug.jpg" width="320" /></a></div>
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"currently the cheapest source of hydrogen gas" produced 0 results in a Google Search on Feb 28th, 2012!</div>
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"methane reforming" "the cheapest source of hydrogen"</div>
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"methane reforming" "the cheapest source of hydrogen"
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Only because the Stanley Meyer (Genius) has been "buried"</div>
<table align="center" cellpadding="0" cellspacing="0" class="tr-caption-container" style="margin-left: auto; margin-right: auto; text-align: center;"><tbody>
<tr><td style="text-align: center;"><a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEh-cEHoS-Y9RHesSpAbcvOy-KMCy4Yc4pBR_I1Ans4GDQR4X3MPHEP0dVzbbbfFw9G1sbpY0noV7YfA2hQteDAWtRdo5IVaWy7XWUOCurhKiPQ0OM1Glu2_-0U82PTZUoFXFZrhMFdYIr8/s1600/cone.stacking.for.efficient.space.utilization.png" imageanchor="1" style="margin-left: auto; margin-right: auto;"><img border="0" height="252" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEh-cEHoS-Y9RHesSpAbcvOy-KMCy4Yc4pBR_I1Ans4GDQR4X3MPHEP0dVzbbbfFw9G1sbpY0noV7YfA2hQteDAWtRdo5IVaWy7XWUOCurhKiPQ0OM1Glu2_-0U82PTZUoFXFZrhMFdYIr8/s640/cone.stacking.for.efficient.space.utilization.png" width="640" /></a></td></tr>
<tr><td class="tr-caption" style="text-align: center;">Hydrogen Gas Technology: Evolve the Possibility, create the efficiency we deserve!<br />
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<div style="background-color: white; font-family: sans-serif; line-height: 19px; margin-bottom: 0.5em; margin-top: 0.4em; text-align: -webkit-auto;">
The <a href="http://en.wikipedia.org/wiki/Reaction_rate" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none;" title="Reaction rate">rate of reaction</a> for the dissociation without Outside Influence</div>
<dl style="background-color: white; font-family: sans-serif; line-height: 19px; margin-bottom: 0.5em; margin-top: 0.2em; text-align: -webkit-auto;"><dd style="line-height: 1.5em; margin-bottom: 0.1em; margin-left: 1.6em; margin-right: 0px;">H<sub style="line-height: 1em;">2</sub>O → H<sup style="line-height: 1em;">+</sup> + OH<sup style="line-height: 1em;">-</sup></dd></dl>
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depends on the <a href="http://en.wikipedia.org/wiki/Activation_energy" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none;" title="Activation energy">activation energy</a>, ΔE<sup style="line-height: 1em;">‡</sup>. According to the <a href="http://en.wikipedia.org/wiki/Boltzmann_distribution" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none;" title="Boltzmann distribution">Boltzmann distribution</a> the proportion of water molecules that have sufficient energy, due to thermal population, is given by</div>
<dl style="background-color: white; font-family: sans-serif; line-height: 19px; margin-bottom: 0.5em; margin-top: 0.2em; text-align: -webkit-auto;"><dd style="line-height: 1.5em; margin-bottom: 0.1em; margin-left: 1.6em; margin-right: 0px;"><img alt="\frac{N}{N_0} = e^{-\frac{\Delta E^\ddagger}{kT}}" class="tex" src="http://upload.wikimedia.org/wikipedia/en/math/0/1/3/0138ede82df9c7522a07a9d411c5cf72.png" style="border-bottom-style: none; border-color: initial; border-image: initial; border-left-style: none; border-right-style: none; border-top-style: none; border-width: initial; vertical-align: middle;" /></dd></dl>
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where <i>k</i> is the Boltzmann constant. Thus some dissociation can occur because sufficient thermal energy is available. The following sequence of events has been proposed on the basis of electric field fluctuations in liquid water.<sup class="reference" id="cite_ref-4" style="line-height: 1em;"><a href="http://en.wikipedia.org/wiki/Self-ionization_of_water#cite_note-4" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none; white-space: nowrap;">[5]</a></sup> Random fluctuations in molecular motions occasionally (about once every 10 hours per water molecule<sup class="reference" id="cite_ref-5" style="line-height: 1em;"><a href="http://en.wikipedia.org/wiki/Self-ionization_of_water#cite_note-5" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none; white-space: nowrap;">[6]</a></sup>) produce an electric field strong enough to break an oxygen-hydrogen bond, resulting in a hydroxide (OH<sup style="line-height: 1em;">−</sup>) and hydronium ion (H<sub style="line-height: 1em;">3</sub>O<sup style="line-height: 1em;">+</sup>); the proton of the hydronium ion travels along water molecules by the <a href="http://en.wikipedia.org/wiki/Grotthuss_mechanism" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none;" title="Grotthuss mechanism">Grotthuss mechanism</a> and a change in the hydrogen bond network in the solvent isolates the two ions, which are stabilized by solvation. Within 1 <a href="http://en.wikipedia.org/wiki/Picosecond" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none;" title="Picosecond">picosecond</a>, however, a second reorganization of the hydrogen bond network allows rapid proton transfer down the electric potential difference and subsequent recombination of the ions. This timescale is consistent with the time it takes for hydrogen bonds to reorientate themselves in water.<sup class="reference" id="cite_ref-6" style="line-height: 1em;"><a href="http://en.wikipedia.org/wiki/Self-ionization_of_water#cite_note-6" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none; white-space: nowrap;">[7]</a></sup><sup class="reference" id="cite_ref-7" style="line-height: 1em;"><a href="http://en.wikipedia.org/wiki/Self-ionization_of_water#cite_note-7" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none; white-space: nowrap;">[8]</a></sup><sup class="reference" id="cite_ref-8" style="line-height: 1em;"><a href="http://en.wikipedia.org/wiki/Self-ionization_of_water#cite_note-8" style="background-attachment: initial; background-clip: initial; background-color: initial; background-image: none; background-origin: initial; background-position: initial initial; background-repeat: initial initial; color: #0b0080; text-decoration: none; white-space: nowrap;">[9]</a></sup></div>
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<span style="color: red; font-size: large;">Stanley Meyer found a way using a very small amount of energy to increase this natural instability!</span></div>
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Quote material from Stanley Meyer...<br />
"[32:44] No. The valves have been designed very recently to operate off
of non-leaded gasoline. <span style="color: lime;">And since we use the exhaust gases to cycle back
in and to modulate the burn rate of hydrogen gas</span>, as we now control the
burn rate to co-equal gasoline engine temperature and operations are
duplicating the same thing on gasoline or diesel fuels. So
you don’t change the engine in anyway. This allows us now to retrofit
the water fuel cell technology to any existing engine. And thats very
important because it now gives us the ability that we
can stabilize transportation as we talked about before if the energy is
cut off."<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgiKym3coF7HKCUlBZ63A7FEJ_B36yZUCWgBivGbcYq8NbZu6_1pNQYqyFpRwIVR86Bn3u7upD1ECY6s2yBRXFOSSlki3-QgJbaI484bGl8SWnKJXtAs9HHbd6pYpBLc6Bbgpc1Q_TIlpg/s1600/stanley.meyer.dune.buggy.hho.wfc.burning.water.fuel.cell.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="168" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgiKym3coF7HKCUlBZ63A7FEJ_B36yZUCWgBivGbcYq8NbZu6_1pNQYqyFpRwIVR86Bn3u7upD1ECY6s2yBRXFOSSlki3-QgJbaI484bGl8SWnKJXtAs9HHbd6pYpBLc6Bbgpc1Q_TIlpg/s640/stanley.meyer.dune.buggy.hho.wfc.burning.water.fuel.cell.png" width="640" /></a></div>
Voltage Does Work. a concept explored tenaciously by the Late Inventor Stanley Allen Meyer<br />
is graphically exposed below in a picture generated by Jean Louis Naudin, a French Scientist who has replicated and CONFIRMED Mr.Meyer's Genius Energy Amplification Technology Idea.<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjnrz6eq3C32lEtCasMQNuDIDuB-xCwmQlrOgtv6Q4bm9plAIjwbGKEBj4gvLOL8HSx-DNeKp8hZWI8IB2B65aTn6sY-nOboNHDE4KBdtAu9MZC2NIb0g-Va7Xj4tOk6FWrFa-o-t_tqFc/s1600/meyer-naudin-oscilloscope.42.8khz.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="554" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjnrz6eq3C32lEtCasMQNuDIDuB-xCwmQlrOgtv6Q4bm9plAIjwbGKEBj4gvLOL8HSx-DNeKp8hZWI8IB2B65aTn6sY-nOboNHDE4KBdtAu9MZC2NIb0g-Va7Xj4tOk6FWrFa-o-t_tqFc/s640/meyer-naudin-oscilloscope.42.8khz.png" width="640" /></a></div>
Hydrogen Gas Technology:<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhig0gaaPTvIeU6fBnjtswzgHFZzoTFvHQtB87U2T56IEBLDE3ctRO1dJ8qzuOH1LGUEkky09TSIhQLxICYrntfQJXNCW85XPKMPuZKaoXGEt6IB3NxnXTXuqbGfGsZuuZSZRtahsFJCe0/s1600/hydrogen.gas.technology.1.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhig0gaaPTvIeU6fBnjtswzgHFZzoTFvHQtB87U2T56IEBLDE3ctRO1dJ8qzuOH1LGUEkky09TSIhQLxICYrntfQJXNCW85XPKMPuZKaoXGEt6IB3NxnXTXuqbGfGsZuuZSZRtahsFJCe0/s1600/hydrogen.gas.technology.1.png" /></a></div>
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This oscilloscope photo made by <a href="http://jnaudin.free.fr/wfc/index.htm" target="_blank">Jean Louis Naudin</a> in France, shows the gated [50/50 duty cycle] pulses causing an increasing charge on a distilled water capacitor made of slightly different diameter stainless steel tubes which have been submeged in non-conducting (<span style="color: blue;">$Free</span>) distilled water to lyse DISSASSOCIATE the covalent bonds in distilled water using very low energy.<br />
This is a Voltage-Centric electrolysis approach that uses <span style="color: red; font-size: large;">NO CURRENT FLOW</span> through the dielectric medium of pure water h2o!<br />
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Electrostatic Dissociation Details Pictorial Diagram \\||// below,
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhRqqA_j01VifzV5nEh_fpxviiPxaObsZ-o3U_P_EaNvVAevZIPzJblcGgG5ZMlkBkacngdQ8KBir1I1LPM_1vOBRqenAMUvQty8nRgrYYMaXW2karGv5nxluehTkTlmYid9KnLKVW9ZwU/s1600/stanley.meyer.electrostatic.dissociation.details.pictorial.diagram.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="111" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhRqqA_j01VifzV5nEh_fpxviiPxaObsZ-o3U_P_EaNvVAevZIPzJblcGgG5ZMlkBkacngdQ8KBir1I1LPM_1vOBRqenAMUvQty8nRgrYYMaXW2karGv5nxluehTkTlmYid9KnLKVW9ZwU/s320/stanley.meyer.electrostatic.dissociation.details.pictorial.diagram.png" width="320" /></a></div>
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Diagram showing forces acting to break the water molecule apart \\// below<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEi3wuXLzoz46RrFyoyZrsN2HTsAUPN-y2xFDqeq_2UdUnwTs796Fe8UuaOGgPvoekMeoR5C5a-qv8ISd4BT9MD9rJ_9oHL-v1fRYVnlz-oUrFozl7C5UCv7cT4xn4PPKsLdUXHERmP1f_4/s1600/lyse.h2o.electrostatic.dissociation.of.water.molecule.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEi3wuXLzoz46RrFyoyZrsN2HTsAUPN-y2xFDqeq_2UdUnwTs796Fe8UuaOGgPvoekMeoR5C5a-qv8ISd4BT9MD9rJ_9oHL-v1fRYVnlz-oUrFozl7C5UCv7cT4xn4PPKsLdUXHERmP1f_4/s1600/lyse.h2o.electrostatic.dissociation.of.water.molecule.png" /></a></div>
Meyer Technology for free Hydrogen Gas\\// below<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgsAWdAg7HwM8WdB9c8y6dRA9hnabMw-67I6smMoeIkRTZ3LeoSmZovbgYvtvw5MNqdykqgr3YK54d4Y6Wh6DatqQw1jA5_QuqfwgEQ67c2x6lLV9zl_N_TkAr5vSof_EWQbZG7lTyWLZU/s1600/stanley.meyer.electrostatic.dissociation.of.water.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="356" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgsAWdAg7HwM8WdB9c8y6dRA9hnabMw-67I6smMoeIkRTZ3LeoSmZovbgYvtvw5MNqdykqgr3YK54d4Y6Wh6DatqQw1jA5_QuqfwgEQ67c2x6lLV9zl_N_TkAr5vSof_EWQbZG7lTyWLZU/s640/stanley.meyer.electrostatic.dissociation.of.water.png" width="640" /></a></div>
<a href="https://www.google.com/search?q=Meyers+Inventor+Fuel+cell+Resonance+42.8khz+hedges&num=100&hl=en&newwindow=1&safe=off&pws=1&prmd=imvns&filter=0&biw=1337&bih=654" target="_blank">Hydrogen Gas Technology: Stanley Allen Meyer</a><br />
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<a href="https://sites.google.com/site/stanleyallenmeyer/_/rsrc/1323627399770/home/how.water.becomes.fuel.without.using.current.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="234" src="https://sites.google.com/site/stanleyallenmeyer/_/rsrc/1323627399770/home/how.water.becomes.fuel.without.using.current.png" width="640" /></a></div>
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Header, for Meyer Hydrogen Gas Technology Page, below<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEirrCZqY3m0531ZY2ukaopRRwRXagQXXVA5McIkUrUx9wVFX1ZaBkk6S0WWyebK8SgrsKcwnmaOGeC2YbMeZjENIVedcqlZypPPKAkDeGREJcZRTf2-Xcglh3E8t8CoI6rMwevPLuCG8C4/s1600/hydrogen.technology.header.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEirrCZqY3m0531ZY2ukaopRRwRXagQXXVA5McIkUrUx9wVFX1ZaBkk6S0WWyebK8SgrsKcwnmaOGeC2YbMeZjENIVedcqlZypPPKAkDeGREJcZRTf2-Xcglh3E8t8CoI6rMwevPLuCG8C4/s1600/hydrogen.technology.header.png" /></a></div>
Meyer Fuel Gas Patent Picture\\||// below,<br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhFD2NReCG7tQ-xNYMizd-y02vwzWz3_qequapcxnFEdf-VfcDo5ExDvR82MPSfbd3leQKrBl6qbzunK-6uTrZ9d5HWoe-vUyWYJJQ_7KHUijQTFU-bcR1ZDtXcnxGjCXkEjxzvl325Lc4/s1600/4936961.method.for.the.production.of.a.fuel.gas.stanley.meyer.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhFD2NReCG7tQ-xNYMizd-y02vwzWz3_qequapcxnFEdf-VfcDo5ExDvR82MPSfbd3leQKrBl6qbzunK-6uTrZ9d5HWoe-vUyWYJJQ_7KHUijQTFU-bcR1ZDtXcnxGjCXkEjxzvl325Lc4/s1600/4936961.method.for.the.production.of.a.fuel.gas.stanley.meyer.png" /></a></div>
Meyer Save Money Free Gasoline replacement....<br />
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Related Hydrogen Gas Technology Material,<br />
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Internet Reference source....<br />
http://pureenergysystems.com/academy/papers/Common_Duct_Electrolytic_OxyHydrogen/#FLAME%20PROPAGATION%20RATE%20DETERMINATION<br />
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{{{{"FLAME TEMPERATURE of perfect 2 to 1 Hydrogen to Oxygen mixture.<br />
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Flame tests in an argon atmosphere directed on several layers of carbon fiber fabric with its micron size filaments (Used on the stealth fighter & bomber.) melted carbon filaments into brilliant globules. This means carbon's melting temperature 3550C/6422F is exceeded, but its boiling point 4827C/8720F is not attained. Past that point no reference exists."}}}}<br />
Plus++++<br />
"FLAME SPEED of perfect 2 to 1 Hydrogen to Oxygen mixture....<br />
Recorded timing for 10 feet of tubing was consistently 1.225
milliseconds = 10,000 ft in 1.226 seconds, or 8160 ft/sec div 1088 ft/sec (speed
of sound not compensated for our 1150 ft above sea level) was mach 7.5."<br />
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RELATED: HYDROGEN GAS TECHNOLOGY ( STORAGE )<br />
from WIKIPEDIA...<br />
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<a class="mw-redirect" href="http://en.wikipedia.org/wiki/Metal_hydrides" title="Metal hydrides">Metal hydrides</a>, such as <a href="http://en.wikipedia.org/wiki/Magnesium_hydride" title="Magnesium hydride">MgH<sub>2</sub></a>, <a href="http://en.wikipedia.org/wiki/Sodium_aluminium_hydride" title="Sodium aluminium hydride">NaAlH<sub>4</sub></a>, <a class="mw-redirect" href="http://en.wikipedia.org/wiki/Lithium_aluminum_hydride" title="Lithium aluminum hydride">LiAlH<sub>4</sub></a>, <a href="http://en.wikipedia.org/wiki/Lithium_hydride" title="Lithium hydride">LiH</a>, <a class="new" href="http://en.wikipedia.org/w/index.php?title=LaNi5H6&action=edit&redlink=1" title="LaNi5H6 (page does not exist)">LaNi<sub>5</sub>H<sub>6</sub></a>, <a class="new" href="http://en.wikipedia.org/w/index.php?title=TiFeH2&action=edit&redlink=1" title="TiFeH2 (page does not exist)">TiFeH<sub>2</sub></a> and <a href="http://en.wikipedia.org/wiki/Palladium_hydride" title="Palladium hydride">palladium hydride</a>, with varying degrees of efficiency, can be used as a storage medium for hydrogen, often reversibly.<sup class="reference" id="cite_ref-8"><a href="http://en.wikipedia.org/wiki/Hydrogen_storage#cite_note-8">[9]</a></sup>
Some are easy-to-fuel liquids at ambient temperature and pressure,
others are solids which could be turned into pellets. These materials
have good energy density by volume, although their energy density by
weight is often worse than the leading <a href="http://en.wikipedia.org/wiki/Hydrocarbon" title="Hydrocarbon">hydrocarbon</a> fuels.<br />
Most metal hydrides bind with hydrogen very strongly. As a result
high temperatures around 120 °C (248 °F) – 200 °C (392 °F) are required
to release their hydrogen content. This energy cost can be reduced by
using alloys which consists of a strong hydride former and a weak one
such as in <a href="http://en.wikipedia.org/wiki/Lithium_amide" title="Lithium amide">LiNH<sub>2</sub></a>, <a href="http://en.wikipedia.org/wiki/Sodium_borohydride" title="Sodium borohydride">NaBH<sub>4</sub></a> and <a href="http://en.wikipedia.org/wiki/Lithium_borohydride" title="Lithium borohydride">LiBH<sub>4</sub></a>.
These are able to form weaker bonds, thereby requiring less input to
release stored hydrogen. However if the interaction is too weak, the
pressure needed for rehydriding is high, thereby eliminating any energy
savings. The target for onboard hydrogen fuel systems is roughly <100
°C for release and <700 bar for recharge (20-60 kJ/mol H<sub>2</sub>).<sup class="reference" id="cite_ref-9"><a href="http://en.wikipedia.org/wiki/Hydrogen_storage#cite_note-9">[10]</a></sup><br />
Currently the only hydrides which are capable of achieving the 9
wt. % gravimetric goal for 2015 (see chart above) are limited to
lithium, boron and aluminum based compounds; at least one of the
first-row elements or Al must be added. Research is being done to
determine new compounds which can be used to meet these requirements.<br />
Proposed hydrides for use in a hydrogen economy include simple hydrides of <a href="http://en.wikipedia.org/wiki/Magnesium_hydride" title="Magnesium hydride">magnesium</a><sup class="reference" id="cite_ref-10"><a href="http://en.wikipedia.org/wiki/Hydrogen_storage#cite_note-10">[11]</a></sup> or <a href="http://en.wikipedia.org/wiki/Transition_metal" title="Transition metal">transition metals</a> and <a href="http://en.wikipedia.org/wiki/Complex_metal_hydride" title="Complex metal hydride">complex metal hydrides</a>, typically containing <a href="http://en.wikipedia.org/wiki/Sodium" title="Sodium">sodium</a>, <a href="http://en.wikipedia.org/wiki/Lithium" title="Lithium">lithium</a>, or <a href="http://en.wikipedia.org/wiki/Calcium" title="Calcium">calcium</a> and <a href="http://en.wikipedia.org/wiki/Aluminium" title="Aluminium">aluminium</a> or <a href="http://en.wikipedia.org/wiki/Boron" title="Boron">boron</a>.
Hydrides chosen for storage applications provide low reactivity (high
safety) and high hydrogen storage densities. Leading candidates are <a href="http://en.wikipedia.org/wiki/Lithium_hydride" title="Lithium hydride">lithium hydride</a>, <a href="http://en.wikipedia.org/wiki/Sodium_borohydride" title="Sodium borohydride">sodium borohydride</a>, <a href="http://en.wikipedia.org/wiki/Lithium_aluminium_hydride" title="Lithium aluminium hydride">lithium aluminium hydride</a> and <a href="http://en.wikipedia.org/wiki/Ammonia_borane" title="Ammonia borane">ammonia borane</a>.
A French company McPhy Energy is developing the first industrial
product, based on magnesium hydrate, already sold to some major clients
such as Iwatani and ENEL.<br />
<i><a href="http://en.wikipedia.org/wiki/New_Scientist" title="New Scientist">New Scientist</a></i> <sup class="reference" id="cite_ref-11"><a href="http://en.wikipedia.org/wiki/Hydrogen_storage#cite_note-11">[12]</a></sup> stated that <a href="http://en.wikipedia.org/wiki/Arizona_State_University" title="Arizona State University">Arizona State University</a> is investigating using a <a href="http://en.wikipedia.org/wiki/Borohydride" title="Borohydride">borohydride</a> solution to store hydrogen, which is released when the solution flows over a catalyst made of ruthenium.<br />
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New to Science:<br />
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<a href="http://www.alexpetty.com/2011/06/17/stan-meyer-tour-of-water-powered-dune-buggy-from-may-1992/" target="_blank">Alex Petty/Meyer Information Website</a><br />
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Aluminum Info\\||//<br />
<span class="yshortcuts cs4-visible" id="lw_1330270032_0" style="background-color: white; border-bottom-color: rgb(54, 99, 136); border-bottom-style: dotted; border-bottom-width: 2px; color: #366388; cursor: pointer; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">Aluminum oxide</span><span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">, like many solid substances, exists as a network of atoms, in the case Al and O. There are no "molecules" of Al2O3, Take a look: </span><br />
<a href="http://upload.wikimedia.org/wikipedia/commons/c/cc/Corundum-3D-balls.png" id="yui_3_3_0_1_1330273631575324" rel="nofollow" style="background-color: white; color: #006699; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px; text-decoration: none;">http://upload.wikimedia.org/wikipedia/co…</a><br />
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<span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">======= Follow up =========</span><br />
<br />
<span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">I noticed that there are a couple of responses that say that Al2O3 is "ionic" and that the ions are held together by "strong electrostatic forces".</span><br />
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<span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">We need to point out that that isn't quite the case. The Al-O bonds have a percent ionic character of 57%. They are, of course, 43% covalent.</span><br />
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<span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">You see, all bonds lie along a continuum between "ionic" and "covalent", and while it is possible to have a 100% </span><span class="yshortcuts cs4-visible" id="lw_1330270032_1" style="background-color: white; border-bottom-color: rgb(54, 99, 136); border-bottom-style: dotted; border-bottom-width: 2px; color: #366388; cursor: pointer; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">covalent bond</span><span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">, it is impossible to have a 100% ionic bond. All bonds result in the sharing of electrons, and all bonds are covalent. But some covalent bonds are very, very polar and it is these really polar bonds that we call "ionic", simply because they have a high ionic character, not because there are actual "ions" in the solid state.</span><br />
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<span style="background-color: white; color: #333333; font-family: arial, helvetica, clean, sans-serif; font-size: 13px; line-height: 16px;">Apparently, lots of well-meaning teachers have taught that bonds are either "ionic" or they are "covalent", as if they are either black or white. What they should be teaching is that bonds are shades of gray.</span><br />
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