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Influence of Tea Polyphenols Amendment to Contaminated Soil on Lead Speciation, Transformation, and Bioavailability

机译:茶多酚修正对铅污染土壤铅污染,转化和生物利用度的影响

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To verify whether tea polyphenols (TP) could be used as Pb chelating agents to alleviate the problem of Pb contamination in tea, we conducted a greenhouse study using soil bioavailability extraction, sequential extraction fractionation, and X-ray absorption near-edge structure spectroscopy (XANES) to understand and clarify the effect of TP on Pb speciation transformation and bioavailability changes in the soil. TP and Pb(NO3)2 were amended by root watering and four treatments as flowing: (1) CK, deionized water containing no TP and Pb; (2) TP, 2.6 g kg~(-1) TP; (3) Pb, 400 mg kg~(-1) Pb; and (4) PbTP, 400 mg kg~(-1) Pb and 2.6 g kg~(-1) TP. The unprovability of growth and development and the increase of dry matter accumulation after adding TP to Pb-polluted soil indicated that TP had a striking effect on detoxification of Pb. Pb bioavailability characterized by Pb concentration in tea plants, DTPA, and EDTA extraction showed that TP could increase soil Pb bioavailability under low concentration of Pb, whereas TP inhibited it under the high concentrations of Pb. Sequential extraction fractionation in the soils suggested that the effects of TP on Pb species transformation varied among different treatments and TP could enhance the transformation of detrital form of Pb to other forms. Combining with XANES evidence of Pb, the research suggested that TP played an important role in detoxification of Pb and regulation of Pb speciation transformation and bioavailability in soil and could be used as a Pb chelating agent to alleviate the problem of Pb contamination in tea in the future.
机译:为了验证茶多酚(TP)是否可以用作Pb螯合剂以缓解茶中的PB污染问题,我们使用土壤生物利用度提取,序列提取分馏和X射线吸收近边缘结构光谱进行温室研究( Xanes)了解和阐明TP对PB物种转化和土壤生物利用度变化的影响。 TP和PB(NO3)2用根浇水和四种处理进行修订,如流动:(1)CK,含有TP和Pb的去离子水; (2)TP,2.6克kg〜(-1)Tp; (3)Pb,400 mg kg〜(-1)Pb; (4)PBTP,400 mg kg〜(-1)Pb和2.6g kg〜(-1)Tp。增长和开发的无法动力和干物质积累的不可持续性,加入PB污染土壤后的干物质积累表明,TP对Pb排毒具有引人注目的影响。 PB生物利用度,其特征在于茶叶植物,DTPA和EDTA提取的PB浓度表明,TP可以在低浓度的Pb下提高土壤PB生物利用度,而TP在高浓度的Pb下抑制它。土壤中的序贯提取分馏表明,TP对Pb物种转化的影响不同,不同治疗和TP可以增强毒物形式的Pb转化为其他形式。该研究结合了XANES证据,该研究表明,TP在PB的解毒中发挥了重要作用和土壤中PB物种转化和生物利用度的调节,可用作PB螯合剂,以缓解茶中PB污染问题的问题未来。

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