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Zero Valent Iron Nanoparticle Assisted Electrocoagulation of Arsenic with electromagnetic Separation of Solids

机译:零valent铁纳米粒子辅助砷的固体电磁分离辅助电凝

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摘要

A new arsenic removal process was designed combining: 1) iron nanoparticle addition, b) electrocoagulation, and c) electromagnetic separation. Results showed that arsenic could be removed with more than 99 % efficiency from liquid waste samples. Parameters that were found to have importance on the process were: a) nanoparticle dosage, b) electric voltage drop during electrocoagulation, b) pH of the solution, d) arsenic concentration, and e) electromagnetic field distribution during solid separation. Arsenic could efficiently be removed by iron nanoparticles during electrocoagulation. Afterwards the arsenic containing particles were separated from the solution by electromagnetic fields. This new process could be a feasible alternative to conventional arsenic treatment in liquid waste streams.
机译:设计了一种新的砷去除过程结合:1)铁纳米粒子添加,B)电凝和C)电磁分离。结果表明,可以从液体废物样品中以超过99%的效率除去砷。发现在该过程中具有重要性的参数是:a)纳米粒子剂量,b)电凝血期间电压下降,B)溶液,d)砷浓度和e)固体分离期间的电磁场分布。砷在电凝期期间可以通过铁纳米颗粒有效地除去。之后,通过电磁场与溶液分离含砷颗粒。这种新方法可能是液体废物流中常规砷治疗的可行替代品。

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