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Lead Speciation and Bioavailability in Apatite-Amended Sediments

机译:磷灰石改良沉积物中铅的形态和生物利用度

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摘要

The in situ sequestration of lead (Pb) in sediment with a phosphate amendment was investigated by Pb speciation and bioavailability. Sediment Pb in preamendment samples was identified as galena (PbS) with trace amounts of absorbed Pb. Sediment exposed to atmospheric conditions underwent conversion to hydrocerussite and anglesite. Sediments mixed with apatite exhibited limited conversion to pyromorphite, the hypothesized end product. Conversion of PbS to pyromorphite is inhibited under reducing conditions, and pyromorphite formation appears limited to reaction with pore water Pb and PbS oxidation products. Porewater Pb values were decreased by 94% or more when sediment was amended with apatite. The acute toxicity of the sediment Pb was evaluated withHyalella aztecaand bioaccumulation of Pb withLumbriculus variegatus. The growth ofH. aztecamay be mildly inhibited in contaminated sediment, with apatite-amended sediments exhibiting on average a higher growth weight by approximately 20%. The bioaccumulation of Pb inL. variegatustissue decreased with increased phosphate loading in contaminated sediment. The study indicates limited effectiveness of apatite in sequestering Pb if present as PbS under reducing conditions, but sequestration of porewater Pb and stabilization of near-surface sediment may be a feasible and alternative approach to decreasing potential toxicity of Pb.
机译:通过Pb的形态和生物利用度研究了含磷酸盐改性剂的沉积物中铅(Pb)的原位螯合。改良前样品中的沉积物Pb被鉴定为方铅矿(PbS),其中含有痕量的Pb。暴露在大气条件下的沉积物被转化为水陶粒和角粒。沉积物与磷灰石混合后,向假晶石(假定的最终产物)的转化有限。在还原条件下,PbS向焦晶石的转化受到抑制,焦晶石的形成似乎仅限于与孔隙水Pb和PbS氧化产物的反应。用磷灰石修正沉积物后,孔隙水的Pb值降低了94%或更多。用Azalca azteca评估沉积物Pb的急性毒性,并用百日草(Lumbriculus variegatus)评价Pb的生物蓄积性。 H的增长。阿兹台克星在受污染的沉积物中受到轻度抑制,磷灰石改良沉积物的平均生长重量平均提高了约20%。铅在L中的生物蓄积。随着受污染沉积物中磷酸盐含量的增加,杂色果组织减少。研究表明,如果磷灰石在还原条件下以PbS的形式存在,磷灰石在螯合Pb方面的效果有限,但是螯合孔隙水Pb和稳定近地表沉积物可能是降低Pb潜在毒性的可行和替代方法。

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