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首页> 外文期刊>Environmental Science and Pollution Research >Cysteine-beta-cyclodextrin enhanced phytoremediation of soil co-contaminated with phenanthrene and lead
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Cysteine-beta-cyclodextrin enhanced phytoremediation of soil co-contaminated with phenanthrene and lead

机译:半胱氨酸-β-环糊精增强了对菲和铅共污染土壤的植物修复

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It is necessary to find an effective soil remediation technology for the simultaneous removal of hydrophobic organic contaminants and heavy metals from contaminated soils. In this work, a novel cysteine-beta-cyclodextrin (CCD) was synthesized by the reaction of beta-cyclodextrin with cysteine, and the structure of CCD was confirmed by H-1-NMR, C-13-NMR, FT-IR spectroscopy and elemental analysis. Potculture experiments were conducted to investigate the effects of CCD on the phytoremediation of soil co-contaminated with phenanthrene and lead. The results showed that CCD can enhance the phytoremediation of soil co-contaminated with phenanthrene and lead. When CCD was added to the cocontaminated soil, the concentrations of phenanthrene and Pb in roots and shoots of ryegrass (Lolium perenne L.) significantly increased, the presence of CCD is beneficial to the accumulation of phenanthrene and Pb in ryegrass, and the residual concentrations of phenanthrene and Pb in soils significantly decreased. Under the co-contamination of 500 mg Pb kg(-1) and 50 mg PHE kg(-1), the bioconcentration factor of phenanthrene and Pb in the presence of CCD was increased by 1.43-fold and 4.47-fold, respectively. After CCD was added to the contaminated soils, the residual concentration of phenanthrene and Pb in unplanted soilwas decreased by 18 and 25%, respectively. However, for the planted soil, the residual concentration of phenanthrene and Pb was decreased by 48 and 56 %, respectively. CCD may improve the bioavailability of phenanthrene and Pb in co-contaminated soil; CCD enhanced phytoremediation technology may be a good alternative for the removal of hydrophobic organic contaminants and heavy metals from contaminated soils.
机译:有必要找到一种有效的土壤修复技术,以同时从受污染的土壤中去除疏水性有机污染物和重金属。本文通过β-环糊精与半胱氨酸的反应合成了一种新型的半胱氨酸-β-环糊精(CCD),并通过H-1-NMR,C-13-NMR,FT-IR光谱确定了CCD的结构。和元素分析。进行了盆栽试验,以研究CCD对菲和铅共污染的土壤的植物修复作用。结果表明,CCD可以增强对菲和铅共污染土壤的修复作用。当将CCD添加到共同污染的土壤中时,黑麦草(Lolium perenne L.)的根和枝条中菲和Pb的浓度显着增加,CCD的存在有利于黑麦草中菲和Pb的积累以及残留浓度土壤中菲和铅的含量显着降低。在500 mg Pb kg(-1)和50 mg PHE kg(-1)的共同污染下,在存在CCD的情况下菲和Pb的生物富集系数分别增加了1.43倍和4.47倍。将CCD添加到受污染的土壤中后,未种植的土壤中菲和Pb的残留浓度分别降低了18%和25%。但是,对于种植的土壤,菲和铅的残留浓度分别降低了48%和56%。 CCD可以提高在被污染的土壤中菲和铅的生物利用度。 CCD增强的植物修复技术可能是从污染土壤中去除疏水性有机污染物和重金属的好选择。

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