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Low-Fe(Ⅲ) driven UV/Air process for enhanced recovery of heavy metals from EDTA complexed system

机译:低铁(Ⅲ)驱动的UV /空气工艺可增强EDTA络合系统中重金属的回收率

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The efficient recovery of heavy metals from complexed wastewater is an essential but challenging task. In this study, a novel low-Fe(III) driven UV/Air process (LFUA) was developed to break the strong complexation between ethylenediamine tetracetic acid (EDTA) and heavy metal ions (HMIs) and enable the enhanced recovery of HMIs via chelating resin adsorption (CRA). The inside mechanism of the LFUA process includes: 1) displacement of HMIs from HMI-EDTA complexes by Fe(III); 2) direct photolysis of Fe(III)-EDTA through a ligand-to-metal charge transition reaction (LMCT) and indirect photolysis of EDTA by HO2 center dot/O-2(center dot-). The iron dosage was orders of magnitude lower than that previously reported, due to the Fe(II)/Fe(III) redox cycle in the LFUA process. Fe(II) formed during the LMCT reaction of Fe(III)-EDTA was oxidized back to Fe(III) by O-2 and HO2 center dot-, and the reformed Fe(III) was then recombined with EDTA to sustains the LMCT reaction. EDTA was completely removed in 20 min at a molar ratio of Fe(III)/EDTA = 0.05. In addition, following the LFUA process, the adsorption amounts of various HMIs onto D463 resin were at least two orders of magnitude higher than those reported using the direct adsorption process. Employing the integrated technique of LFUA + CRA enabled the efficient removal of up to 64.5 mg/L of Cu(II) from inlet wastewater, and residual Cu(II) was below 0.5 mg/L. The results of desorption experiments showed that over 90% of Cu(II) was recovered, and the desorption solution had a Cu concentration of 2.1 g/L and purity of 99%. Furthermore, the economic and practical feasibility of using the combined process of LFUA + CRA was analyzed to substantiate that the technique is highly efficient and clean (produces no harmful sludge). Therefore, it is an appropriate and practical process in removing HMIs-EDTA complexes and recovering HMIs from wastewater. (C) 2019 Elsevier Ltd. All rights reserved.
机译:从复杂的废水中有效地回收重金属是一项必不可少但具有挑战性的任务。在这项研究中,开发了一种新型的低铁(III)驱动的UV /空气工艺(LFUA),以打破乙二胺四乙酸(EDTA)与重金属离子(HMI)之间的强络合,并通过螯合提高HMI的回收率。树脂吸附(CRA)。 LFUA过程的内部机制包括:1)用Fe(III)从HMI-EDTA配合物中置换HMI。 2)通过配体到金属的电荷转移反应(LMCT)对Fe(III)-EDTA进行直接光解,并通过HO2中心点/ O-2(center dot-)对EDTA进行间接光解。由于LFUA工艺中的Fe(II)/ Fe(III)氧化还原循环,铁的剂量比以前报道的要低几个数量级。 Fe(III)-EDTA LMCT反应期间形成的Fe(II)被O-2和HO2中心点氧化为Fe(III),然后将重整后的Fe(III)与EDTA重新结合以维持LMCT反应。 EDTA在20分钟内以Fe(III)/ EDTA = 0.05的摩尔比被完全去除。另外,在LFUA工艺之后,各种HMI在D463树脂上的吸附量比使用直接吸附工艺所报道的高至少两个数量级。采用LFUA + CRA的集成技术,可以有效地从进口废水中去除高达64.5 mg / L的Cu(II),残留的Cu(II)低于0.5 mg / L。解吸实验的结果表明,回收了90%以上的Cu(II),解吸溶液的Cu浓度为2.1 g / L,纯度为99%。此外,分析了使用LFUA + CRA组合工艺的经济和实践可行性,以证明该技术高效且清洁(不产生有害污泥)。因此,这是去除HMIs-EDTA配合物并从废水中回收HMIs的合适且实用的过程。 (C)2019 Elsevier Ltd.保留所有权利。

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