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Apparatus and method for the microbiological control of fluids using electric and magnetic fields generated from alternate electrical current of low voltage and low frequency

机译:利用由低压和低频交流电产生的电场和磁场对流体进行微生物控制的装置和方法

摘要

The present application relates to an apparatus and method for fluids microbiological control in electrical conductive or not electrical conductive current pipes, by applying electric and magnetic fields generated from alternating electrical current of low voltage and low frequency. The apparatus is characterized by comprising a set of cells (21) of piping being electrical conductor or not, separated by electrical insulating joints (10A), but hydraulically interconnected to form sections (22) arranged or connected in series. The apparatus has an electrical arrangement that allows the direction of the magnetic field generated by the current passing through the insulated electric wire, which goes inside the pipe, be added to the direction of magnetic field generated within the pipe. The result of the sum of these magnetic and electrical fields is a tangential reinforced force. The reinforced resultant has helically—centrifuged form with direction to the inner wall of the tube (which carries lots of electrons). These electromagnetic forces push bacteria to the inner tube surface. These forces stress the membrane of these microorganisms and generating pores in the membrane, which eventually causes total lysis.
机译:本申请涉及一种通过施加由低压和低频的交流电产生的电场和磁场来控制导电或非导电电流管道中的流体微生物的装置和方法。该设备的特征在于,其包括一组是否为电导体的管道单元( 21 ),由电绝缘接头( 10 A)隔开,但通过液压互连形成部分( 22 )串联或串联。该设备具有电气装置,该电气装置允许将通过流经绝缘电线的电流所产生的磁场的方向添加到管内所产生的磁场的方向上,该电流穿过管内部。这些磁场和电场的总和是切向增强力。增强的合成物呈螺旋离心形式,指向管的内壁(携带大量电子)。这些电磁力将细菌推到内管表面。这些力对这些微生物的膜施加压力,并在膜中产生孔,最终导致完全裂解。

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