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首页> 外文期刊>Chemical engineering journal >Treatment of strongly acidic wastewater with high arsenic concentrations by ferrous sulfide (FeS): Inhibitive effects of S(0)-enriched surfaces
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Treatment of strongly acidic wastewater with high arsenic concentrations by ferrous sulfide (FeS): Inhibitive effects of S(0)-enriched surfaces

机译:硫化亚铁(FeS)处理高砷浓度的强酸性废水:富含S(0)的表面的抑制作用

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摘要

The utilization of arsenopyrite (FeAsS), the As ore mineral, produces strongly acidic wastewater with extremely high arsenic (As) concentrations. This study investigates the feasibility of using ferrous sulfide (FeS) as a sulfide [S(-II)] source to treat strongly acidic wastewater with high concentrations of arsenite [As(III)] and arsenate [As(V)]. The removal of As(III) by FeS was nearly 30% higher than that of As(V), and higher acidity and elevated FeS doses benefited their removal. At extremely high acidity of above 7 mol/L as H2SO4, the consumption of S(-II) by H2SO4 inhibited As removal. At lower acidity of below 2 mol/L as H2SO4, elevated FeS doses up to 4 times the theoretical dose could achieve good As removal. SEM/EDS and XPS analysis indicated the formation of As2S3 precipitates, and sulfur [S(0)] also formed in the As(V)removing system. The tiny and negatively-charged S(0) particles tend to coat the FeS surface. The S(0) enriched surface acts as a barrier to inhibit S(-II) detachment and As(V) penetration and inhibits As(V) removal thereafter. The reduction of As(V) to As(III) by Na2S, prior to dosing with FeS, is preferred to achieve rapid and favorable As(V) removal. The low-cost FeS provides available Fe(II) and S(-II) for As removal, and is practically valuable to treat acidic high-As wastewater. (C) 2016 Elsevier B.V. All rights reserved.
机译:砷矿矿物砷铁矿(FeAsS)的利用会产生具有极高砷(As)浓度的强酸性废水。这项研究调查了使用硫化亚铁(FeS)作为硫化物[S(-II)]源处理高浓度亚砷酸盐[As(III)]和砷酸盐[As(V)]的强酸性废水的可行性。 FeS对As(III)的去除比As(V)高近30%,较高的酸度和较高的FeS剂量对它们的去除有利。在极高的酸度(高于7 mol / L)作为H2SO4时,H2SO4消耗S(-II)抑制了As的去除。在较低的酸度(低于2 mol / L)作为H2SO4的情况下,将FeS剂量提高到理论剂量的4倍即可实现良好的As去除率。 SEM / EDS和XPS分析表明形成了As2S3沉淀,并且在As(V)去除系统中也形成了硫[S(0)]。微小且带负电的S(0)颗粒倾向于覆盖FeS表面。富集了S(0)的表面充当了抑制S(-II)脱离和As(V)渗透的屏障,并随后抑制了As(V)的去除。在用FeS计量添加之前,最好先用Na2S将As(V)还原为As(III),以实现快速,有利的As(V)去除。低成本的FeS为去除As提供了可用的Fe(II)和S(-II),对于处理酸性高As废水具有实用价值。 (C)2016 Elsevier B.V.保留所有权利。

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