Plante Cell
Hello,
John Bedini has said before that the gain in his system is in the battery and that the front end to his machine is conventional electronics with the back end being unconventional.
I made a little voltameter (not a volt meter) a couple of years ago and started observing the differences between straight DC and HV impulses from a pulse generator coil. The two were very different. Using lead electrodes and sulphuric acid, exactly as Gaston Plante, the inventor of the solid plate lead acid battery had done himself, I noticed that the dendrite growths on the plate surfaces were very different when pulsed with HV impulses.
Gaston Plante noted that if the current wasn't enough then the lead dioxide growth was a different darker colour. What was found with the impulses was bright red oxidation, but of the opposite electrode. Although I managed to replicate this result with the small cells, I have yet to see anyone else show the same and I haven't got anything big enough to do it to a large battery.
Gassing for pasted batteries is bad. BUT for solid plate batteries, it means that NEW active plate material is being grown, adding to the capacity of the battery, so not taking a battery past the gassing voltage means that no new plate material is made and will probably become lost to hardened sulphation. Under charging is worse than supposidly over charging. If the water is replaced then gassing is good, but obviously too much is not good either.
John Bedini's impulse technology not only breaks down the hardened sulphation, but also re-forms the plates (in solid plate batteries at least) better than they were formed in the first place. And gassing with this is called cold boiling, the main danger of gassing being heat build up buckling the plates, but with cold boiling there's very little heat.
Regards
Dave
Hello,
John Bedini has said before that the gain in his system is in the battery and that the front end to his machine is conventional electronics with the back end being unconventional.
I made a little voltameter (not a volt meter) a couple of years ago and started observing the differences between straight DC and HV impulses from a pulse generator coil. The two were very different. Using lead electrodes and sulphuric acid, exactly as Gaston Plante, the inventor of the solid plate lead acid battery had done himself, I noticed that the dendrite growths on the plate surfaces were very different when pulsed with HV impulses.
Gaston Plante noted that if the current wasn't enough then the lead dioxide growth was a different darker colour. What was found with the impulses was bright red oxidation, but of the opposite electrode. Although I managed to replicate this result with the small cells, I have yet to see anyone else show the same and I haven't got anything big enough to do it to a large battery.
Gassing for pasted batteries is bad. BUT for solid plate batteries, it means that NEW active plate material is being grown, adding to the capacity of the battery, so not taking a battery past the gassing voltage means that no new plate material is made and will probably become lost to hardened sulphation. Under charging is worse than supposidly over charging. If the water is replaced then gassing is good, but obviously too much is not good either.
John Bedini's impulse technology not only breaks down the hardened sulphation, but also re-forms the plates (in solid plate batteries at least) better than they were formed in the first place. And gassing with this is called cold boiling, the main danger of gassing being heat build up buckling the plates, but with cold boiling there's very little heat.
Regards
Dave