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首页> 外文期刊>Environmental Science and Pollution Research >Speciation and uptake of antimony and arsenic by two populations of Pteris vittata L. and Holcus lanatus L. from co-contaminated soil
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Speciation and uptake of antimony and arsenic by two populations of Pteris vittata L. and Holcus lanatus L. from co-contaminated soil

机译:由两种Pteris Vittata L.和Holcuslanatus L.来自共污染土壤的锑和吸收锑和砷

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摘要

This study aimed to investigate the Sb and As co-accumulating processes of Pteris vittata under soil culture condition, including the transformation of Sb and As, and the difference in co-accumulating ability among different plant species/populations. Two populations of P. vittata and one population of As-tolerant species Holcus lanatus L. were grown on soil co-contaminated by Sb and As. Sb and As speciation in plants was assessed by X-ray absorption near-edge structure (XANES) spectroscopy. P. vittata displayed strong As- but limited Sb-accumulating ability, with the highest shoot concentrations of As and Sb reaching 455 and 26mgkg(-1), respectively. After 28days culture, the concentrations of Sb and As in the soil solution were reduced by up to 22% and 36% in the P. vittata treatments, respectively. Holcus lanatus showed limited uptake for both metalloids. In P. vittata, the reduction of arsenate to arsenite occurred (with As in shoots all existing as arsenite), but limited reduction of antimonate to antimonite (with more than 90% of Sb in shoots existing as antimonate) was observed. In terms of the differences in metalloid uptake between the two P. vittata populations, the population from the habitat with higher soil As concentration showed 35% higher As uptake than the population from the habitat with lower As concentration. This populational difference may partly result from varying As transformation efficiencies. However, no significant difference was observed in Sb accumulation between the two populations.
机译:本研究旨在研究土壤培养条件下Pteris Vittata的Sb,包括Sb的转化,以及不同植物种类/人群的共累解能力的差异。 P.Vittata的两种群体和一种可容忍物种Holcus Lanatus L的群体在被SB共同污染的土壤上生长。通过X射线吸收近边缘结构(XANES)光谱评估植物中的SB和植物的形态。 P.Vittata显示出强烈但有限的SB累积能力,分别为AS和Sb的最高拍摄浓度,分别达到455和26mgkg(-1)。在28天的培养后,分别降低了Sb的浓度和土壤溶液的浓度高达22%和36%。 Holcus Lanatus对两种金属体显示有限的摄取。在P.Vittata中,发生砷酸盐的减少(用作芽的枝条),但观察到锑酸盐的锑酸盐的减少有限(以超过90%的Sb在现有的锑酸盐中的SB中)。就两种P.Vittata群体之间的金属剂摄取的差异而言,由于浓度较高的土壤栖息地的人群与栖息地的栖息地的群体较高35%。这种群体差异可能部分导致变化为转型效率。然而,在两种群体之间的SB积累中没有观察到显着差异。

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