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Removal of Cobalt from Aqueous Solutions using Haro River Sand

机译:使用Haro River砂去除水溶液中的钴

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The sorption of cobalt on Haro river sand has been optimized with respect to shaking time, amount of sand and concentration of cobalt. Maximum sorption (>94%) was achieved from deionized water at a v/w ratio of 90 cm3/g. Among the ions tested, EDTA, citrate, thiosulphate, tartrate, PbII, ZnII, CrIII, AlIII, CdII and MnII reduced the sorption significantly. Manganese(II), ZnII, SeIV, CrIII and HlIV showed low sorption affinity towards the sand whereas Sc111, Aum and ZrIV were strongly sorbed. Cobalt, along with elements having higher sorption, could be separated from metal ions showing low sorption. The sand could be used for the preconcentration and removal of cobalt from aqueous solutions. The sand may be exploited for wastewater treatment and water pollution abatement. The sorption data followed the Freundlich adsorption isotherm. The characteristic parameters 1 = 0.81 ± 0.03 and A = 14.2 ± 0.5 mmol/g were evaluated for the system.
机译:在摇动时间,砂量和钴浓度方面,对哈罗河沙上钴的吸附进行了优化。从去离子水中以90 cm3 / g的v / w比例获得最大吸附(> 94%)。在测试的离子中,EDTA,柠檬酸根,硫代硫酸根,酒石酸根,PbII,ZnII,CrIII,AlIII,CdII和MnII显着降低了吸附。锰(II),ZnII,SeIV,CrIII和HlIV对沙子的吸附亲和力很低,而Sc111,Aum和ZrIV则被强烈吸附。可以将钴以及具有较高吸附性的元素与具有低吸附性的金属离子分离。该砂可用于从水溶液中预浓缩和去除钴。沙子可用于废水处理和减少水污染。吸附数据遵循Freundlich吸附等温线。对系统评估了特征参数1 / n = 0.81±0.03和A = 14.2±0.5 mmol / g。

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