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首页> 外文期刊>Clays and clay minerals >REMOVAL OF HEAVY METALS FROM WASTE WATERS BY NATURAL AND Na-EXCHANGED BENTONITES
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REMOVAL OF HEAVY METALS FROM WASTE WATERS BY NATURAL AND Na-EXCHANGED BENTONITES

机译:天然和钠交换膨润土去除废水中的重金属

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Batch sorption studies of Cr(Ⅲ), Ni(Ⅱ), Zn(Ⅱ), Cu(Ⅱ) and Cd(Ⅱ) were conducted on Ca-bentonite and Na-bentonite to determine their retention capacities for these metal cations commonly present in the waste waters of galvanic industries. The Langmuir model was found to describe the sorption process well, offering maximum sorption capacities of 44.4 mg Cr/g, 6.32 mg,Ni/g, 5.75 mg Zn/g, 7.72 mg Cu/g, 7.28 mg Cd/g on Ca-bentonite and 49.8 mg Cr/g, 24.2 mg Ni/g, 23.1 mg Zn/g, 30.0 mg Cu/g, 26.2 mg Cd/g on Na-bentonite. The use of Na-bentonite in the purification of waste waters from Ni, Cr and acid-Zn electroplating processes was an effective treatment in small-scale and in semi-industrial-scale tests. This proves the worth of this method as an alternative to existing methods. In contrast, Na-bentonite was not effective in Zn sorption from cyanide-containing waste waters.
机译:对钙膨润土和钠膨润土进行了Cr(Ⅲ),Ni(Ⅱ),Zn(Ⅱ),Cu(Ⅱ)和Cd(Ⅱ)的批量吸附研究,以确定它们在水中常见的这些金属阳离子的保留能力。电镀工业的废水。发现Langmuir模型很好地描述了吸附过程,在Ca-上提供的最大吸附容量为44.4 mg Cr / g,6.32 mg,Ni / g,5.75 mg Zn / g,7.72 mg Cu / g,7.28 mg Cd / g。膨润土和在膨润土上的含量分别为49.8 mg Cr / g,24.2 mg Ni / g,23.1 mg Zn / g,30.0 mg Cu / g,26.2 mg Cd / g。在小规模和半工业规模的试验中,将钠基膨润土用于净化镍,铬和酸锌电镀工艺废水的方法是一种有效的处理方法。这证明了该方法作为现有方法的替代方法的价值。相反,钠膨润土在含氰化物废水中吸附锌方面没有效果。

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