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Removal of potentially toxic metals from soil by para-sulphonato-thiacalix[4]arene: competitive extraction and selectivity sequence

机译:对次磺基硫杂杯[4]芳烃从土壤中去除有毒金属的竞争萃取和选择性序列

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摘要

para-Sulphonato-thiacalix[4] arene (STC[4]A) is an emerging supramolecular receptor for enhancing the extraction of potentially toxic metals (PTMs) from soil. Batch extraction experiments were conducted to evaluate the competitive extraction of cadmium (Cd), copper (Cu), and lead (Pb) by STC[4]A from single-and multi-metal contaminated soils. The extraction capacity and selectivity mechanism were investigated by determination of the conditional stability constants (log K) of the STC[4]A-M complex via spectrophotometric titration and the metal speciation using sequential extraction. Under STC[4]A deficiency, the order of metal extraction efficiencies was Cd > Cu > Pb for single-metal contaminated soils, while the selectivity sequence of metal extraction was Cu > Cd > Pb for multi-metal contaminated soils. Spectrophotometric titration indicated that the log K values of the STC[4]A-M complex were in the order of STC[4]A-Cu > STC[4]A-Cd > STC[4]A-Pb and that the values governed the metal extraction selectivity of STC[4]A in multi-metal contaminated soils. Although the log K values for STC[4]A-Cd were intermediate, STC[4]A showed the largest extraction yield for Cd from single-metal contaminated soil due to its larger proportion of exchangeable fraction in soil. The effectiveness of STC[4]A washing appeared to be highly dependent on the metal-STC[4]A formation constants and the metal distribution in soil.
机译:对-Sulphonato-thiacalix [4]芳烃(STC [4] A)是一种新兴的超分子受体,可增强从土壤中提取潜在有毒金属(PTM)的能力。进行了批量提取实验,以评估STC [4] A从单金属和多金属污染土壤中对镉(Cd),铜(Cu)和铅(Pb)的竞争性提取。通过分光光度滴定法测定STC [4] A-M络合物的条件稳定性常数(log K),并采用顺序萃取对金属形态进行测定,从而研究了萃取能力和选择性机理。在STC [4] A不足条件下,单金属污染土壤的金属萃取效率顺序为Cd> Cu> Pb,而多金属污染土壤的金属萃取选择性顺序为Cu> Cd> Pb。分光光度滴定表明,STC [4] AM络合物的log K值按STC [4] A-Cu> STC [4] A-Cd> STC [4] A-Pb的顺序排列。多金属污染土壤中STC [4] A的金属萃取选择性。尽管STC [4] A-Cd的log K值处于中间水平,但STC [4] A从单金属污染土壤中提取Cd的产量最高,因为它在土壤中的可交换部分占较大比例。 STC [4] A洗涤的有效性似乎高度取决于金属-STC [4] A的形成常数和土壤中金属的分布。

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