The smallest nanoparticles come from the largest electrodes, with the largest area, such as our 2” x 6” sheets, with area = 12 sq inches or 6″ x 8″ sheets area = 48 sq inches. This is why we never use wires or rods. A rod of length H= 6” of #12 gauge has a diameter of D= 0.081” (2 mm) which has a surface area of only? DH = 3×0.08×6 = 1.44 sq inches. Nanoparticle size is directly dependent on Current Density = milliamperes per square inch of area. This means that if current is too large or area too small, then the electrodes will be overdriven producing large ineffective particles and ions.
The more effective nano-particles range in size from less than 1 nanometer to 10 nanometers, which is 30-60 times smaller than the wavelength of light (300-600 nm). Consequently they cannot be seen with any light microscope and will not give a Tyndall Effect using a laser beam. If there is a colour or Tyndall, then those particles are too large to be fully effective against the small more dangerous viruses which cause neurological damage. The small size gives colloidal minerals enormous surface area, and special properties of absorption for the human or animal body, as opposed to rock and shell based minerals, which are always combined with some other radical, such as in oxides, and have no Zeta Potential charge.
Thanks for visiting.