> You may be highly disappointed running at 1.4
> volts/cell.
Well aware of all the limitations involved here, the use of a variac to try the
schemes from the power grid ect. I have done all of these things before. A
simple comparison here is apt however. A typical industrial size browns gas
torch MUST use at least a 220 VAC grid power source. I have a 5 hp 220 VAC
input AC motor that can rotate at 3450 rpm or so. There is no such thing as a
120 VAC single phase 5 hp motor, or electrical engine, but it can be done at
twice the input voltage. The residential electrical consumer is also limited
from the higher efficiency available with three phase motors. So it should be
simple to see that with a 10 hp gasoline input to the power device, a single
phase power grid can barely compete. even at 220 VAC input. We are not
concerned with efficiency here, only the volume of power necessary to create
the pressure of hydroxy flame necessary to power a torch. This is different
from the automotive combustion engine enhancement
brought upon by use of electrolysis gases introduced into the combustion
chambers; here I am speaking of an easy more practical way of creating a
situation where the sole output is the browns gas torch itself compared to how
it can be procured by wall grid electrical means vs independent gas engine
driven permanent magnet generator means.
Sincerely HDN