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Evaluation of Zero-Valent Iron for Pb(II) Contaminated Soil Remediation: From the Analysis of Experimental Mechanism Hybird with Carbon Emission Assessment

机译:PB(II)零价熨斗评价污染土壤修复:从碳排放评估分析

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摘要

Carbon emission is one of the main causes of global climate change, thus it is necessary to choose a low-carbon method in the contaminated soil remediation. This paper studies the adsorption ability of ZVI on Pb(II) contaminated soils under different working conditions. The removal efficiency of Pb(II) was 98% because of the suitable ZVI dosage, log reaction time and low initial solution concentration. The whole balancing process was much fast according to the pseudo-second-order kinetic and Freundlich isothermal model. Moreover, sequential extraction procedure (SEP) showed Pb(II) was transformed from Fe/Mn oxides-bound form to residual form in Pb(II) contaminated soils. From scanning electron microscopy (SEM), Brunauer-Emmett-Teller method (BET) and X-ray diffraction (XRD) results, it was confirmed that zero-valent iron (ZVI) stabilizes Pb(II) pollutants mostly through the combination of chemical adsorption and physical adsorption. The economic and carbon emission assessments were used to compare the cost and carbon emissions of different methods. The results show that ZVI adsorption has excellent economic benefits and low carbon emission.
机译:碳排放是全球气候变化的主要原因之一,因此有必要在受污染的土壤修复中选择低碳方法。本文研究了ZVI对不同工作条件下PB(II)污染土壤的吸附能力。由于合适的ZVI剂量,对数反应时间和低初始溶液浓度,Pb(II)的去除效率为98%。根据伪二阶动力学和Freundlich等温模型,整个平衡过程很快。此外,序列提取方法(SEP)显示PB(II)从Fe / Mn氧化物结合的形式转化为Pb(II)污染的土壤中的残余形式。从扫描电子显微镜(SEM),Brunauer-Emmett-Teller方法(BET)和X射线衍射(XRD)结果,证实零价铁(ZVI)稳定PB(II)污染物主要通过化学的组合吸附和物理吸附。经济和碳排放评估用于比较不同方法的成本和碳排放。结果表明,ZVI吸附具有优异的经济效益和低碳排放。

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