The technology for the production of ball oxide was developed on the instructions of the GLONAS State Corporation, created on the basis of the Academy of Sciences of the Russian Federation.
From this oxide, it is possible to produce electric batteries for civilian applications of high quality and electric capacity, there are no analogues of this development in the world. Technology and production do not have a secrecy stamp, we can supply this oxide in unlimited quantities.
Possibility of individual order.
Analysis Methods: Inductively coupled plasma emission spectral analysis Device: Optical emission spectrometer "Optima 4300 DV" company "Perkin Elmer" USA.
Device: Optical emission spectrometer "Optima 4300 DV" company "Perkin Elmer" USA.
Device: Laser "Hariba" Japan.
Name | % content | |
GOST | actually | |
Main component | ||
Zn-64 | 48.89 | 48.89 |
Zn-66 | 27.81 | 27.81 |
Zn-67 | 4.07 | 4.07 |
Zn-68 | 18.61 | 18.61 |
Zn-70 | 0.62 | 0.62 |
Controlled Chemical Impurities | ||
А1 | < 0,0002 | |
As | < 0,0001 | |
Си | 0,00008 | |
Sn | 0,0005 | |
Со | < 0,00007 | |
Fe | 0,00004 | |
Si | < 0,0002 | |
Са | < 0,00007 | |
Mn | < 0,000003 | |
Cd | 0,0004 | |
Pb | < 0,0003 | |
Mg | < 0,0001 | |
К | < 0,0001 | |
Na | < 0,0003 |
Conclusion: The total content of impurities is not more than 0.001% of the mass. The degree of purity, calculated as the difference between 100% and the total content of impurities, 99,9998% of the mass.
Nanodispersity: 100 nm (nanometers)