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Phosphate removal from source separated urine by electrocoagulation using iron plate electrodes

机译:使用铁板电极通过电凝从源分离的尿液中去除磷酸盐

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The aim of this study was to investigate the effects of current density, gap between electrodes, urine dosage, dilution and hydrolysis on phosphate removal from human urine by electrocoagulation technique using iron as electrodes. It was shown that, although a high current density and a long electrolysis time favored the removal of phosphate, an appropriate value for these two parameters can be obtained by taking into account the consumption of energy and iron in addition to P removal. In this study, current density 40mA/cm2 and electrolysis time 20 min were shown to be optimal for 1.0 L pure urine to achieve nearly a complete removal (98%) efficiency of phosphate under the conditions of electrode area 160cm2, the stirring speed 150 rpm, and the gap between electrodes 5mm. Increase of gap between electrodes had little effect on phosphate removal, although it increased the energy consumption dramatically. The use of a high urine dosage reduced the efficiency of phosphate removal but increased the amount of removed phosphate. When pure urine was diluted with tap water, use of a higher tap water proportion for dilution expedited the electrolysis to achieve a nearly complete removal of phosphate in solution, but dilution caused the increase in energy consumption. It was also revealed that the hydrolysis of urine prior to electrocoagulation treatment impeded phosphate removal.
机译:这项研究的目的是研究电流密度,电极之间的间隙,尿液的剂量,稀释和水解对以铁为电极的电凝技术从人尿中去除磷酸盐的影响。结果表明,尽管高电流密度和长电解时间有利于磷酸盐的去除,但是除了去除P之外,还可以通过考虑能源和铁的消耗来获得这两个参数的适当值。在这项研究中,电流密度40mA / cm2和电解时间20分钟被证明对于1.0 L纯尿液是最佳的,以在电极面积为160cm2,搅拌速度为150 rpm的条件下实现几乎完全去除(98%)磷酸盐的效率。 ,电极之间的间隙为5mm。电极之间间隙的增加对磷酸盐的去除几乎没有影响,尽管它显着增加了能耗。高剂量尿液的使用降低了磷酸盐的去除效率,但增加了磷酸盐的去除量。当纯净的尿液用自来水稀释时,使用较高的自来水比例进行稀释可加快电解速度,从而几乎完全去除溶液中的磷酸盐,但稀释会导致能耗增加。还揭示了在电凝处理之前尿液的水解阻碍了磷酸盐的去除。

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