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Rhizosphere effect on Pb solubility and phytoavailability in Pb-Contaminated soils

机译:在PB污染的土壤中对Pb溶解度和植物的根际影响

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The effect of plant roots in modifying Pb solubility and bioavailability in an historically contaminated orchard (Hudson) and a Pb phosphate-spiked (Arkport) soil was determined by measuring soluble Pb in the soil solutions as well as content of Pb in radish shoots grown in these soils. Soluble Pb and dissolved organic carbon (DOC) contents were greater in the rhizospheres of both Pb-contaminated soils than in the unplanted high-Pb soils. The rhizosphere effect increased soluble Pb 15-fold in the field-contaminated orchard soil, whereas the effect was much smaller in the Pb phosphate-spiked soil. The rhizosphere effect persisted in the Pb-phosphate spiked soil after adjustment of the soil pH from 7.8 to 6.7. The results indicate that Pb phosphate added to a non-acid soil has lower solubility than Pb in an orchard soil contaminated by historical Pb arsenate applications; nevertheless, some uptake of Pb into plant shoots resulted from both sources of soil Pb contamination. The rhizosphere effect was observed for trace metals in addition to Pb, with the solubility of Al, Fe, Cu and Ni all increasing in the rhizosphere soil. In contrast, the solubility of alkali and alkaline earth metals (K, Ca, Mg, Sr, Ba) all decreased in the rhizosphere soil. The results indicate that the rhizosphere effect associated with plant roots can raise the solubility of Pb in soils contaminated by legacy Pb and by insoluble Pb phosphate. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过测量土壤溶液中的可溶性Pb以及在萝卜枝条中生长的萝卜射击中的可溶性Pb,测定植物根系在历史上污染的果园(Hudson)和Pb磷酸盐掺入(Arkport)土壤中的影响和生物利用度改变Pb溶解度和生物利用度的影响这些土壤。在PB污染的土壤的脱菱体中,可溶性Pb和溶解的有机碳(DOC)含量大于彩色的高PB土壤。根际效果在污染的果园土壤中增加了可溶性Pb 15折,而Pb磷酸盐掺入土壤中的效果小得多。在将土壤pH调整为7.8至6.7后,在PB磷酸盐尖刺土中持续存在的根际效应。结果表明,在历史Pb砷酸盐应用污染的果园土壤中,加入到非酸性土壤中的Pb磷酸盐比Pb较低;尽管如此,植物枝条的一些吸收来自土壤PB污染的植物射击。除了Pb之外,除了Pb之外,还观察到根际效果除了Pb,含有Al,Fe,Cu和Ni的溶解度在根际土壤中均增加。相反,在根际土壤中碱和碱土金属(K,Ca,Mg,Sr,Ba)的溶解度均降低。结果表明,与植物根源相关的根际效应可以提高Pb在由传统Pb污染的土壤中的溶解度和不溶性Pb磷酸盐。 (c)2020 elestvier有限公司保留所有权利。

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