Given the electrode setup stays constant:

Electrochemical products begin to form around 1.5 to 2 volts
Increasing the voltage without changing the electrodes increases the current..and thus..the current density, which will concentrate more Electrochemical products made more by more current flow in that area.

Volts, once over a threshold that starts making Electrochemical products, controls ion velocity which is nearly irrelevant after entering a moving body of liquid. Current, controls how much Electrochemical product is produced over a period of time.

You could increase electrode area, keep both current and voltage constant and do the same thing over a wider area, preventing high concentrations in areas where flow doesn't distribute them very fast.

These people obviously don't know or aren't saying how this stuff works..but "patents" are often written to protect ideas, not convey specific methods, so that's no big surprise.
 They are legal, not scientific documents.

Interesting that they say that either adding or removing electrons from DNA will break it up, disregarding that BS about "Free electrons" when in fact electrons are donated or removed by ionic electron exchanges..ionizing that substance in turn.. and are never "free" and floating around on their own.

Ode


On Wed, May 19, 2010 at 10:58 AM, Norton, Steve <[email protected]> wrote: > Thanks Bob. It is very interesting. Here is an excerpt from the link you provided:
>
> "Most Beneficial Voltage Range
>
> Free radicals are known to be formed in a biological medium when it is subjected to any voltage in excess of 1.2 volts. Electrochemical products begin to form around 1.5 to 2 volts (8) but these products may not be significant in concentration until the voltage is raised to, say, 3 or 4 V. If the anti-tumor effect of electrotherapy is due to the disabling of the pivotal enzyme RR through free radical interactions, voltage between 1.2 to about 3 V should be most beneficial. Higher voltage, for this mechanism, would be undesirable for two reasons: (i) more and more electrons would engage in electro-chemical processes, leaving less and less electrons free or as free-radicals, and (ii) concentration of toxic electrochemical species would increase steadily.


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