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Concentration Effects on Competitive Sorption of Trichloroethylene and Tetrachloroethylene to the Roots of Typha latifolia: Implications for Phytomonitoring

机译:浓度对三氯乙烯和四氯乙烯竞争性吸收至香蒲根的影响:对植物监测的意义

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Uptake of organic contaminants by plant roots consists of two consecutive steps: sorption to plant roots and entrance into root xylem tissues through epidermal and endodermic membranes. Most research pertaining to phytoremediation assumed that sorption to plant roots is linear and non-competitive. A growing body of evidence, however, is suggesting that sorption to plant roots is nonlinear and competitive. The objective of this study was to examine the concentration effects of chemical constituents on the competitive sorption of trichloroethylene (TCE) and tetrachloroethylene (PCE) to the roots of Typha latifolia. Competitive sorption was clearly demonstrated by the reduced sorption of TCE and PCE in bi-solute systems than in single-solute systems. Concentration is an important factor affecting the extent of competition. In bi-solute systems, the PCE/TCE ratio on root surface approximately reflected the contaminant footprints in solution. The result was attributed to limited high energetically favorable sorption sites on the root surface and similar sorption mechanisms of TCE and PCE. The results hold significant importance for the application of phytomonitoring of organic contaminant mixtures.
机译:植物根部对有机污染物的吸收包括两个连续步骤:吸附到植物根部和通过表皮和皮内膜进入根木质部组织。大多数与植物修复有关的研究都假定植物根系的吸附是线性的且非竞争性的。然而,越来越多的证据表明,植物根部的吸附是非线性的且具有竞争性。这项研究的目的是研究浓度对香蒲根部三氯乙烯(TCE)和四氯乙烯(PCE)的竞争性吸附的浓度影响。在双溶质系统中,TCE和PCE的吸附量比单溶质系统中的吸附量明显降低,从而证明了竞争吸附。集中度是影响竞争程度的重要因素。在双溶质系统中,根表面的PCE / TCE比大致反映了溶液中的污染物足迹。结果归因于根表面上有限的高能量有利吸附位点以及TCE和PCE的相似吸附机理。该结果对于应用有机污染物混合物进行植物监测具有重要意义。

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