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Effect of submerged combustion evaporation on Cd complexation potential of organic matter in municipal solid waste landfill leachate

机译:浸没燃烧蒸发对城市固体废弃物垃圾填埋液渗滤液中有机质CD络合潜力的影响

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Despite the strong ability for complexation of heavy metals, a high amount of humic substances (HS) is always contained in membrane retentate from municipal solid waste landfill leachates treatment processes. Submerged Combustion Evaporation (SCE) can be used to effectively concentrate the membrane retentate. However, the impact of the SCE treatment on HS complexation capacity is still unclear. Since cadmium (Cd) plays a vital role in the pollution of soil and food, this study investigated the influence of the SCE treatment on the Cd complexation potential of leachate HS. Specific effects and complexation properties on Cd complexation of leachate HS before and after the SCE treatment were demonstrated using the Non-Ideal Competitive Adsorption model. The results showed that the Cd complexation capacity of carboxyl sites increased from 3.76 to 4.65 mol/kg-Total Organic Carbon (TOC) after the SCE treatment, which agreed with the stoichiometric number of proton binding sites. Moreover, characterization results indicated that SCE increased the affinity of HS for Cd by enhancing the overall aromaticity of HS (E-2:E-4 from 9.8 to 9.3), dominantly due to the humic acid contribution. By modeling the practical Cd remediation scenarios, the enhanced Cd complexation performance of HS after SCE treatment was observed even at low pH values (pH = 5) or insufficient TOC content (TOC = 50 mg/L). (C) 2020 Elsevier Ltd. All rights reserved.
机译:尽管对重金属的络合有利,但始终含有大量的腐殖质物质(HS),膜滞留在城市固体废物垃圾填埋场渗滤液处理过程中。浸没式燃烧蒸发(SCE)可用于有效地浓缩膜滞留物。然而,SCE治疗对HS络合能力的影响仍不清楚。本研究镉(CD)在土壤和食物污染中发挥着至关重要的作用,研究了SCE治疗对渗滤液HS的CD络合潜力的影响。使用非理想的竞争吸附模型对SCE治疗之前和之后的渗滤液HS的CD络合的特异性效果和络合性质。结果表明,在SCE治疗后,羧基的Cd络合容量从3.76-4.65mol / kg-总有机碳(TOC)增加,这与化学计量的质子结合位点同意。此外,表征结果表明,通过增强Hs(E-2:E-4从9.8至9.3)的总体芳香性,由于腐殖酸的贡献,通过增强Hs(E-2:E-4的总体性,增加了Hs对Cd的亲和力。通过建模实际CD修复场景,即使在低pH值(pH = 5)或TOC含量不足(TOC = 50mg / L),也观察到SCE治疗后的HS的增强的CD络合性能。 (c)2020 elestvier有限公司保留所有权利。

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