首页> 外文期刊>Research journal of applied science, engineering and technology >Removal of Manganese and Copper from Contaminated Groundwater Generated from Mines Landfills Waste Using ZV-I, AC and NZ in PRB Technology
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Removal of Manganese and Copper from Contaminated Groundwater Generated from Mines Landfills Waste Using ZV-I, AC and NZ in PRB Technology

机译:在PRB技术中使用ZV-I,AC和NZ去除矿山垃圾填埋场产生的受污染地下水中的锰和铜

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In this study, Zero Valent Iron (ZV-I), Activated Carbon (AC) and Natural Zeolite (NZ) were utilized as reactive material for testing its effectiveness for removal manganese and copper in the waste of Mine Landfills. Hereby, four parameters were taken in this study which is initial concentration of metal, initial groundwater alkalinity PH and dosage of reactive ZV-I, AC, or NZ. Batch results show that ZV-I is the most effective materials for removal manganese and copper up to 48 ppm at low concentration of ZV-I 1990-4990 ppm while initial pH range varies between three through seven. The study discovered that ZV-I reactive compound can be used effectively for manganese removal through settling and adsorption on ZV-I, while copper is basically removed by ZV-I through direct reductive settling. Also, ACcompared to ZV-I reactive material has not significant effect on manganese removal whereas AC basically removed manganese by adsorption while Copper is removed basically by settling. The removal of Copper and manganese can be increased by increasing detention time and dosage of carbon. The study showed that manganese and copper are removed slowly and ineffective by NZ compound.
机译:在这项研究中,零价铁(ZV-1),活性炭(AC)和天然沸石(NZ)被用作反应材料,以测试其清除矿山垃圾填埋场中锰和铜的有效性。因此,本研究采用了四个参数,分别是金属的初始浓度,初始地下水碱度PH和反应性ZV-1,AC或NZ的剂量。分批结果表明,ZV-1是在低浓度的ZV-1 1990-4990 ppm时去除锰和铜的最有效材料,最高可达48 ppm,而初始pH范围在3至7之间。研究发现,ZV-I反应性化合物可通过沉降和吸附在ZV-I上有效地去除锰,而ZV-I通过直接还原性沉降基本上去除了铜。而且,与ZV-1反应性材料相比,交流电对锰的去除没有显着影响,而交流电基本上是通过吸附去除锰的,而铜基本上是通过沉降去除的。可以通过增加滞留时间和碳剂量来增加对铜和锰的去除。研究表明,NZ化合物可缓慢去除锰和铜,且效果不佳。

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