摘要:
Burn noble metal in high-pressure water using hydrogen and oxygen to produce noble metal micro-dispersion water in which super-fine noble metal particles are dispersed, and use the obtained noble metal micro-dispersion water to treat fiber products in order to provide high-function fiber products, typically clothes, which offer excellent health-promoting function and cleanliness-improving function.
摘要:
By using an apparatus composed of a high-voltage discharge generator having a high-voltage large-current discharge power supply, a noble metal electrode, and a counter electrode, a water tank, and a container having a water supply port for supplying water to the water tank and an outlet port for discharging ultrafine dispersion water of noble metal ultrafine particles, plasma discharge is caused between the noble metal electrode and the counter electrode in the water to bring the noble metal ion vapor into contact with water and to cause ultrafine dispersion. Thus, an ultrafine dispersion water of ultrafine particles containing a noble metal the concentration of which can be adjusted can be efficiently produced by means of a small producing apparatus with high safety. The produced water is useful as health water.
摘要:
Provide a method and apparatus for producing, in an economical manner, metal powder offering high purity and comprising uniform particle shape and size. Produce metal powder of titanium metal, etc., using an apparatus that comprises a power supply for high-voltage/current discharge, a feeder of metal electrode made of titanium metal, etc., a high-voltage discharge generator equipped with a metal electrode made of titanium, etc., and its counter electrode, a water tank, a water inlet, an outlet for produced metal dispersion solution containing titanium metal, etc., a discharge pump, and an adjunct device for separating/recovering metal powder of titanium metal, etc., from the metal dispersion solution containing titanium metal, etc.
摘要:
Efficiently produce micro-dispersion water of super-fine noble metal particles having a desired concentration by using a very safe, compact production apparatus comprising a power supply for high-voltage/current discharge, a high-voltage discharge generator equipped with a noble metal electrode and its counter electrode, a water tank, a water inlet to the water tank, and an outlet for micro-dispersion water of super-fine noble metal particles, by causing plasma discharge in water between the noble metal electrode and its counter electrode and then causing the generated noble metal ion vapor to contact, and micro-disperse in, water. The obtained water can be effectively used as drinking water.