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Polyaspartate extraction of cadmium ions from contaminated soil: Evaluation and optimization using central composite design

机译:从污染土壤中提取聚天冬氨酸镉离子:使用中心复合设计进行评估和优化

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The occurrences of heavy metal contaminated sites and soils and the need for devising environmentally friendly solutions have become global issues of serious concern. In this study, polyaspartate (a highly biodegradable agent) was synthesized using L-Aspartic acid via a new modified thermal procedure and employed for extraction of cadmium ions (Cd) from contaminated soil. Response surface methodology approach using 35 full faced centered central composite design was employed for modeling, evaluating and optimizing the influence of polyaspartate concentration (36-145 mM), polyaspartate/soil ratio (5-25), initial heavy metal concentration (100-500 mg/kg), initial pH (3-6) and extraction time (6-24h) on Cd ions extracted into the polyaspartate solution and its residual concentration in the treated soil. The Cd extraction efficacy obtained reached up to 98.8%. Increase in Cd extraction efficiency was associated with increase in the polyaspartate and Cd concentration coupled with lower polyaspertate/soil ratio and initial pH. Under the optimal conditions characterized with minimal utilization of the polyaspartate and high Cd ions removal, the extractible Cd in the polyaspartate solution reached up to 84.4 mg/L which yielded 85% Cd extraction efficacy. This study demonstrates the suitability of using polyaspartate as an effective environmentally friendly chelating agent for Cd extraction from contaminated soils. (C) 2017 Elsevier B.V. All rights reserved.
机译:重金属污染场地和土壤的出现以及对设计环保解决方案的需求已成为严重关切的全球性问题。在这项研究中,聚天冬氨酸(一种高度可生物降解的试剂)是使用L-天冬氨酸通过一种新的改良热方法合成的,并用于从受污染的土壤中提取镉离子(Cd)。响应面方法学方法采用35个全中心中心复合设计,用于建模,评估和优化聚天冬氨酸浓度(36-145 mM),聚天冬氨酸/土壤比(5-25),初始重金属浓度(100-500)的影响mg / kg),初始pH值(3-6)和提取时间(6-24h)对萃取到聚天冬氨酸溶液中的Cd离子及其在处理土壤中的残留浓度。获得的镉提取效率高达98.8%。 Cd提取效率的提高与聚天冬氨酸和Cd浓度的增加相关,同时聚多糖,土壤比率和初始pH值也较低。在最佳条件下,聚天冬氨酸的利用率极低,Cd离子的去除率很高,聚天冬氨酸溶液中的可萃取Cd达到84.4 mg / L,Cd萃取效率达到85%。这项研究证明了使用聚天冬氨酸作为一种有效的环保螯合剂从污染土壤中提取Cd的适用性。 (C)2017 Elsevier B.V.保留所有权利。

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