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The Influence of Electron Discharge and Magnetic Field on Calcium Carbonate (CaCO3) Precipitation

机译:电子放电和磁场对碳酸钙(CaCO3)沉淀的影响

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The influences of electron discharge and magnetic field on calcium carbonate (CaCO3) precipitation in water have been successfully investigated. The study used three pairs of magnetic field 0.1 T whilst the electron discharge was generated from television flyback transformer type BW00607 and stainless steel SUS 304 as an electrode. The water sample with an initial condition of 230 mg/L placed in the reactor with flow rate 375 mL/minutes, result showed that the electron discharge can be reduced contain of calcium carbonate the water sample around 17.39% within 2 hours. Meanwhile for the same long period of treatment and flow rate, around 56.69% from initial condition of 520 mg/L of calcium carbonate in the water sample can be achieved by three pairs of magnetic field 0.1 T. When the combination of three pairs of magnetic field 0.1 T and the electron discharge used for treatment, the result showed that the combination of electron discharge and magnetic field methods can be used to precipitate calcium carbonate in the water sample 300 mg/L around 76.66% for 2 hours of treatment. The study then investigated the influence of the polar position of the magnetic field on calcium carbonate precipitation. Two positions of magnetic field were tested namely the system with alternated polar magnetics and the system without inversion of the polar magnetics. The influence of the polar position showed that the percentage reduction in levels of calcium carbonate in the water sample (360 mg/L) is significant different. Result showed that the system without inversion of the polar magnetics is generally lower than the system with alternated polar magnetics, with reduction level at 30.55 and 57.69%, respectively.
机译:已经成功研究了电子放电和磁场对水中碳酸钙(CaCO 3)沉淀的影响。该研究使用了三对磁场0.1 T,同时从电视反激变压器型BW00607和不锈钢SU304作为电极产生电子放电。水样具有初始条件,初始条件为230mg / L,在反应器中放置在反应器中,具有375ml /分钟,结果表明,在2小时内,可以将电子放电减少约17.39%的碳酸钙。同时对于相同的长期处理和流速,在水样中的520mg / L碳酸钙的初始条件下约为56.69%,可以通过三对磁场0.1吨。当三对磁性的组合时该结果显示为0.1T和用于处理的电子放电,结果表明,电子放电和磁场方法的组合可用于在水样300mg / L中沉淀碳酸钙,约76.66%约76.66%。然后研究研究磁场极地对碳酸钙沉淀的影响。用交替极性磁性和系统的系统测试了两个磁场的位置,而无需极性磁性的反转。极性位置的影响表明,水样(360mg / L)中碳酸钙水平降低的百分比显着不同。结果表明,在不反转极性磁性的系统通常低于具有交替极性磁性的系统,分别减少30.55和57.69%。

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