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Polymer-enhanced ultrafiltration process for heavy metals removal from industrial wastewater

机译:聚合物增强的超滤工艺,用于去除工业废水中的重金属

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Recently, the complexation-ultrafiltration technique has been shown to be a promising technique for removal of heavy metals in solution. In this study, a polymer-enhanced ultrafiltration process has been investigated for removal of toxic heavy metals such as Cu(II), Ni(II), and Cr(IIl) from synthetic wastewater solutions. Carboxy methyl cellulose as a water-soluble polymer was used for complexing the cationic forms of the heavy metals before filtration. The size of the complex has to be larger than the pores of the selected membrane so the complex can be retained. Permeate water is then purified from the heavy metals. Filtration experiments were performed with ultrafiltration membrane system, equipped with a polyethersulfone membrane with a 10,000 Da cut-off. The pressure was fixed at 1 bar with a permeate flow rate of 7.5 L/h. Different parameters, affecting the percentage rejection of the metals, such as pH, metal ion concentration, CMC/metal ratio, and permeate flux (F) have been investigated. Metal rejection in aqueous solution containing Ni(II), Cu(II) and Cr(III) ions simultaneously was also evaluated. Results obtained revealed that the maximum percentage of the metal rejection was achieved at pH>7 with increasing of the CMC concentration.
机译:最近,络合超滤技术已被证明是一种去除溶液中重金属的有前途的技术。在这项研究中,已经研究了一种聚合物增强的超滤工艺,用于从合成废水溶液中去除有毒的重金属,例如Cu(II),Ni(II)和Cr(IIl)。羧甲基纤维素作为水溶性聚合物用于在过滤之前络合重金属的阳离子形式。复合物的尺寸必须大于所选膜的孔,这样才能保留复合物。然后从重金属中净化渗透水。过滤实验是使用超滤膜系统进行的,该系统配备了截留值为10,000 Da的聚醚砜膜。压力固定在1 bar,渗透流量为7.5 L / h。已经研究了影响金属排阻百分比的不同参数,例如pH,金属离子浓度,CMC /金属比和渗透通量(F)。还评估了同时含有Ni(II),Cu(II)和Cr(III)离子的水溶液中的金属排斥率。获得的结果表明,随着CMC浓度的增加,在pH> 7时达到了最大的金属截留率。

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