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Poly-thiosemicarbazide membrane for gold recovery

机译:聚硫代氨基脲膜用于金的回收

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摘要

A novel polymeric membrane adsorber with a high density of adsorption sites that can selectively capture Au(III) ions, is proposed as an efficient alternative to recover gold from dilute solutions. Poly-thiosemicarbazide (PTSC), a polymer that contains one chelate site per monomeric unit, was used to fabricate the membranes. This polymer can be easily processed into membranes by a phase inversion technique, resulting in an open and interconnected porous structure suitable for high flux liquid phase applications. This method overcomes the usual low capacities of membrane adsorbents by selecting a starting material that contains the adsorption sites within it, therefore avoiding the necessity to add an external agent into the membrane matrix. The resulting mechanically stable PTSC membranes can operate in a pressure driven permeation process, which eliminates the diffusion limitations commonly present in packed column adsorption processes. This process can selectively recover 97% of the gold present in a solution containing a 9-fold higher copper concentration, while operating at a flux as high as 1868 L/m~2 h. The maximum gold uptake measured without sacrificing the mechanical stability of the membrane was 5.4 mmol Au/g. Furthermore the gold can be easily eluted from the membrane with a 0.1 M thiourea solution and the membrane can be reused for at least three cycles without any decrease in its performance. Finally, the ability of this membrane for recovering metals from real-life samples, like seawater and tap water, was tested with promising results.
机译:提出了一种新型的具有高吸附位点密度的聚合物膜吸附剂,它可以选择性地捕获Au(III)离子,作为从稀溶液中回收金的有效替代方法。聚硫代氨基脲(PTSC)是一种每单体单元包含一个螯合位点的聚合物,用于制造膜。通过相转化技术可以将该聚合物轻松加工成膜,从而形成适合于高通量液相应用的开放且相互连接的多孔结构。该方法通过选择在其中包含吸附位点的起始材料来克服膜吸附剂通常的低容量,因此避免了将外部试剂添加到膜基质中的必要性。所得的机械稳定的PTSC膜可以在压力驱动的渗透过程中运行,从而消除了填充柱吸附过程中通常存在的扩散限制。该工艺可以选择性地回收含铜量高9倍的溶液中存在的97%的金,同时以高达1868 L / m〜2 h的流量运行。在不牺牲膜的机械稳定性的情况下测得的最大金吸收量为5.4mmol Au / g。此外,金可以很容易地用0.1 M的硫脲溶液从膜中洗脱出来,并且该膜可以重复使用至少三个循环而不会降低其性能。最后,测试了该膜从真实样品(如海水和自来水中)中回收金属的能力,并获得了可喜的结果。

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