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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A novel nanofiltration hybrid system to control organic micro-pollutants: application of dual functional adsorbent/catalyst
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A novel nanofiltration hybrid system to control organic micro-pollutants: application of dual functional adsorbent/catalyst

机译:一种控制有机微污染物的新型纳滤混合系统:双重功能吸附剂/催化剂的应用

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摘要

A homogeneous catalyst, iron(III)-tetrasulfophttaalocyanine (FeTsPc), was electrostatically immobilized on Amberlite IRA-400 (Amb) anion-exchange resin. The sorption behaviors and oxidation reactivities of Amb and FeTsPc-immobilized Amb were evaluated using bisphenol-A (BPA), which has received great concern as a strong endocrine disrupting chemical (EDC) due to its adverse effects on human health. FeTsPc-immobilized Amb could completely remove BPA by adsorption and oxidation in the presence of H2O2 even though Amb itself could remove BPA to a certain degree by adsorption. The stability of FeTsPc was improved by immobilizing it on Amb. Two NF membrane systems including NF-only system (conventional NF) and NF-hybrid system (NF combined with FeTsPc-immobilized Amb) were compared in continuous tests.
机译:将均相催化剂铁(III)-四磺基酞菁(FeTsPc)静电固定在Amberlite IRA-400(Amb)阴离子交换树脂上。使用双酚A(BPA)对Amb和FeTsPc固定的Amb的吸附行为和氧化反应性进行了评估,由于其对人体健康的不利影响,双酚A作为一种强大的内分泌干扰化学物质(EDC)受到了广泛关注。 FeTsPc固定化的Amb可以在H2O2存在下通过吸附和氧化来完全去除BPA,即使Amb本身可以通过吸附在一定程度上去除BPA。通过将FeTsPc固定在Amb上可以提高其稳定性。在连续测试中比较了两种NF膜系统,包括仅NF系统(常规NF)和NF混合系统(NF结合FeTsPc固定的Amb)。

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