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Phosphorus-arsenic interactions in variable-charge soils in relation to arsenic mobility and bioavailability

机译:可变电荷土壤中磷与砷的相互作用与砷迁移率和生物利用度的关系

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摘要

Phosphorus (P) influences arsenic (As) mobility and bioavailability which depends on the charge components of soil. The objective of this study was to examine P-As interaction in variable-charge allophanic soils in relation to P-induced As mobilization and bioavailability. In this work, the effect of P on arsenate [As(Ⅴ)] adsorption and de-sorption was examined using a number of allophanic and non-allophanic soils which vary in their anion adsorption capacity. The effect of P on As uptake by Indian mustard (Brassica juncea L.) plants was examined using a solution culture, and a soil plant growth experiment involving two As-spiked allophanic and non-allophanic soils which vary in their anion adsorption capacity, and a field As-contaminated sheep dip soil. Arsenate adsorption increased with an increase in the anion adsorption capacity of soils. The addition of P resulted in an increase in As desorption, and the effect was more pronounced in the case of allophanic soil. In the case of both As-spiked soils and field contaminated sheep-dip soil, application of P increased the desorption of As, thereby increasing its bioavailability. The effect of P on As uptake was more pronounced in the high anion adsorbing allophanic than low adsorbing non-allophanic soil. In the case of solution culture, As phytoavailability decreased with increasing concentration of P which is attributed to the competition of P for As uptake by roots. While increasing P concentration in solution decreased the uptake of As, it facilitated the translocation of As from root to shoot. The net effect of P on As phytoavailability in soils depends on the extent of P-induced As mobilization in soils and P-induced competition for As uptake by roots. The P-induced mobilization of As could be employed in the phytoremediation of As-contaminated sites. However, care must be taken to minimize the leaching of As mobilized through the P-induced desorption, thereby resulting in groundwater and off site contamination.
机译:磷(P)影响砷(As)的迁移率和生物利用度,这取决于土壤的电荷成分。这项研究的目的是研究与P诱导的As的动员和生物利用度相关的可变电荷同型土中P-As的相互作用。在这项工作中,使用许多其阴离子吸附能力不同的同型和非同型土壤,研究了P对砷酸盐[As(Ⅴ)]吸附和解吸的影响。使用溶液培养法研究了磷对印度芥菜(Brassica juncea L.)植物吸收砷的影响,并进行了土壤植物生长实验,其中涉及两种砷离子加成的异质和非异质土壤,其阴离子吸附能力各不相同,并且被田地污染的绵羊浸入土壤。砷的吸附量随土壤阴离子吸附量的增加而增加。 P的添加导致As解吸的增加,并且在同素异形土壤的情况下效果更明显。在掺砷的土壤和田间污染的羊浸土壤中,施用磷都会增加砷的解吸,从而提高其生物利用度。在高阴离子吸附性脲基磷肥中,磷对砷吸收的影响比低吸附性非卤化土更为明显。在溶液培养的情况下,As的植物利用率随P浓度的增加而降低,这归因于P对根吸收As的竞争。溶液中磷浓度的增加降低了砷的吸收,但促进了砷从根向芽的转运。磷对土壤中As的植物有效性的净效应取决于土壤中P诱导的As的动员程度和P诱导的根吸收As的竞争程度。 P诱导的As的动员可用于As污染部位的植物修复。但是,必须注意使通过P诱导的解吸而动员的As的浸出最小化,从而导致地下水和场外污染。

著录项

  • 来源
    《Science of the total environment》 |2013年第1期|1154-1162|共9页
  • 作者单位

    Centre for Environmental Risk Assessment and Remediation (CERAR), University of South Australia, SA 5095, Australia,CRC for Contamination Assessment and Remediation in the Environment, University of South Australia, Mawson Lakes, SA, Australia;

    Department of Environmental Science, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India;

    Chemical Safety Division, Department of Agro-Food Safety, National Academy of Agricultural Science, Suwon-si, Gyeonggi-do 441-707, Republic of Korea;

    Centre for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes, SA, Australia,CRC for Contamination Assessment and Remediation in the Environment, University of South Australia, Mawson Lakes, SA, Australia,Centre for Plant and Water Sciences, Central Queensland University, Rockhampton, QLD, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arsenic; Adsorption; Phosphorus; Variable-charge soil; Bioavailability;

    机译:砷;吸附;磷;可变电荷土壤;生物利用度;

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