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METHOD FOR INCREASE OF EFFECTIVENESS OF OXIDATION-REDUCTION REACTION AT PRODUCTION OF ADDITIONAL HEAT

机译:产生额外热量时提高氧化还原反应效率的方法

摘要

A method for increase of effectiveness of oxidation-reduction reaction at production of additional heat includes formation of flow of liquid, at least a two-component one, one of components of that one is, for instance, water, with formation of neighboring layers of those components of liquid flow in the gap between the stator and the rotor of cavitator with collection of electric charges there, with formation of cavitational bubbles, atomic hydrogen and oxygen and interaction of those in oxidation-reduction reaction with formation of water molecules and production of additional heat. Liquid flow is formed as multi-component, and liquid with electrostatic conductivity differing from that of water is added to water, and the neighboring layers are a system of connected in serial-parallel connection capacitors formed in dynamical mode, and there by the whole volume of the gap between the stator and the rotor electric charges are integrated, those are used for increase of power of electric discharges between those layers and stator, or between the layers and the edges of the cells of the rotor of cavitator thus increasing the effectiveness of oxidation-reduction reaction.
机译:一种用于在产生额外的热量时提高氧化还原反应的有效性的方法,该方法包括形成至少两种成分的液体流,其中一种成分例如是水,并形成相邻的有机层。汽化器的定子和转子之间的间隙中流动的那些液体,在那里收集电荷,形成空化气泡,原子氢和氧,以及氧化还原反应中的那些相互作用与水分子的形成以及额外的热量。液体以多组分的形式形成,并向水中添加静电导电性与水不同的液体,并且相邻的层是一个以动态模式形成的串联-并联连接电容器的连接系统,在该系统中整个体积定子和转子之间的间隙中的一部分电荷被积分,这些电荷用于增加这些层和定子之间,或空化器转子的单元的层与边缘之间的放电功率,从而提高了效率。氧化还原反应。

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