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Remova of endocrine disruptors using homogeneous metal catalyst combined with nanofiltration membrane

机译:使用均相金属催化剂和纳滤膜去除内分泌干扰物

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Chemicals that are known or suspected of being endocrine disrupting chemicals (EDCs) have received increased attention over the past decade for their potential presence in drinking water sources. This study focuses on the development of a hybrid system that combines the advantages of nanofiltration (NF) and homogeneous catalytic oxidation, which include compactness operational facilitation hi h,, g treatment efficiency, and selective reaction capability. Iron(III)-tetrasulfophthalocyanine (Fe-TsPc) was employed as a homogeneous metal catalyst to degrade bisphenol-A (BPA), a representative EDC. The treatment efficiency of BIPA as well as operational characteristics of the hybrid system was investigated to examine the applicability of this technique to decrease the concentration of EDCs in drinking water. Fe-TsPc homogeneous catalyst revealed a remarkable activity in degrading BPA under acidic condition. The high rejection of Fe-TsPc catalyst in the feed stream by the membrane for its large molecular weight (976 Da) and functional group (SO3- X-4) allowed the continuous use of the catalyst for BPA oxidation reaction. The NF with Fe-TsPc/H2O2 hybrid system turned out to have higher BPA treatment efficiency comparing with the NF-only system since the hybrid system reduced BPA concentration in the feed stream by catalytic destruction of BPA as well as it mitigated concentration polarization on the surface of the membrane.
机译:在过去的十年中,已知或怀疑是破坏内分泌的化学物质(EDC)的化学物质因其在饮用水源中的潜在存在而受到越来越多的关注。这项研究的重点是混合系统的开发,该系统结合了纳滤(NF)和均相催化氧化的优点,包括紧凑的操作性,高的处理效率和选择性反应能力。铁(III)-四磺酞菁(Fe-TsPc)被用作均相金属催化剂,以降解双酚A(BPA)(一种代表性的EDC)。研究了BIPA的处理效率以及混合系统的运行特性,以检验该技术在降低饮用水中EDC浓度方面的适用性。 Fe-TsPc均相催化剂在酸性条件下具有显着的降解BPA的活性。膜对Fe-TsPc催化剂的高分子量(976 Da)和官能团(SO3-X-4)截留率很高,因此可以将催化剂连续用于BPA氧化反应。与仅使用NF的系统相比,具有Fe-TsPc / H2O2混合系统的NF具有更高的BPA处理效率,因为该混合系统通过BPA的催化破坏降低了进料流中的BPA浓度,并减轻了BPA的浓度极化。膜表面。

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