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Remediation of arsenic-contaminated soils via waste-reclaimed treatment agents: Batch and field studies

机译:废物再生治疗剂修复砷污染的土壤:批量和现场研究

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The potential of three different waste-reclaimed treatment agents (WRTAs) for removing arsenic was evaluated via laboratory-scale batches, column experiments, and field tests. WRTA1 was synthesized using acid mine drainage sludge (AMDS), cement, and sand. WRTA2 and WRTA3 were synthesized by adding fly ash or Ca(OH)2, respectively, to WRTA1. The maximum adsorption capacities of WRTA1, WRTA2, and WRTA3 for As(III) using the Langmuir model were 16.6?mg?g?1, 14.5?mg?g?1, and 20.6?mg?g?1, respectively, and for As(V) were 29.6?mg?g?1, 27.3?mg?g?1, and 31.3?mg?g?1, respectively. The pseudo-second-order equation for the adsorption of As(III) and As(V) fit the kinetics data well. The column study showed that the WRTAs are very effective adsorbents and exhibit?>?80% removal of As from the contaminated soil. The inhibition of As accumulation in plants (i.e., rice, chili, and sesame) by the WRTAs was evaluated and showed a 96% inhibition in As accumulation in chili roots for WRTA2. The suggested WRTAs are promising agents for the removal of As and heavy metals from heavily contaminated agricultural soil.
机译:通过实验室批量批次,柱实验和现场试验评估三种不同废物再生处理剂(WRTA)的潜力进行除去砷。使用酸性矿污泥污泥(AMD),水泥和沙子合成WRTA1。通过将粉煤灰或Ca(OH)2分别加入WRTA1来合成WRTA2和WRTA3。使用Langmuir模型的WRTA1,WRTA2和WRTA3的最大吸附容量为(III)为16.6Ωmg?1,14.5?mg?g?1,20.6Ωmg?g?1,以及AS(v)分别为29.6Ω·毫克Δ1,27.3?mg?g≤1,31.3μm≤1。伪二阶方程作为(III)和AS(v)的吸附符合动力学数据。柱子研究表明,WRTA是非常有效的吸附剂和表现出来的α> 80%从受污染的土壤中去除。评估WRTA的植物中(即米,辣椒和芝麻)的抑制作用,并在WRTA2的辣椒根中积累了96%的抑制作用。建议的WRTA是有前途的代理商,用于从污染的农业土壤中删除和重金属。

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