首页> 外文期刊>Journal of Hazardous Materials >Determining the fate of lead (Pb) and phosphorus (P) in alkaline Pb-polluted soils amended with P and acidified using multiple synchrotron-based techniques
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Determining the fate of lead (Pb) and phosphorus (P) in alkaline Pb-polluted soils amended with P and acidified using multiple synchrotron-based techniques

机译:用P的碱性PB污染土壤中铅(Pb)和磷(P)的命运和使用多种同步技术的技术酸化

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摘要

The effect of acidification on lead (Pb) and phosphorus (P) speciation in alkaline Pb-polluted soils that are amended with P to stabilize Pb is still unclear. It was studied in three alkaline Pb-polluted soils containing specific amounts of Soil Organic Matter (SOM), using multiple synchrotron-based techniques, i.e. bulk X-ray Absorption Fine Structure (XAFS) spectroscopy at Pb LIII- and PK-edges, micro-X-ray Fluorescence (mu-XRF), and micro-X-ray Diffraction (mu-XRD). These techniques provided unambiguous evidences that the formation of pyromorphite, i.e. the desired Pb stabilized chemical form, was severely limited in the acidified soil samples amended with fish bones or phosphoric acid (H3PO4). Most Pb present in the H3PO4-amended soil samples did not convert to pyromorphite due to Pb and P leaching and PbSO4(s) formation. In contrast, most Pb present in the fish bone-amended soil samples was unaffected by acidification and did not convert to pyromorphite as it was inaccessible to soil solution or retained by SOM, similarly to P. Additionally, Pb-SOM association increased with increasing SOM content. Results had important implications on the applicability of the P-based method to stabilize Pb within the first centimeters below surface of Pb-polluted alkaline soils, which potentially represent the most hazardous part of these soils.
机译:酸化对铅(Pb)和磷(p)形态的碱性Pb污染土壤的影响仍然不清楚。在Pb Liii-and PK边缘的批量X射线吸收细结构(XAFS)光谱法,在含有特定量的土壤有机物质(SOM)的三种碱性PB污染土壤中研究了含有比土壤有机物质(SOM)的三种碱性有机物(SOM)。 -X射线荧光(MU-XRF)和微X射线衍射(MU-XRD)。这些技术提供了明显的证据,即吡咯段的形成,即所需的Pb稳定化的化学形式,在用鱼骨或磷酸(H3PO4)修正的酸化土样品中严重限制。 H3PO4修正的土壤样品中存在的大多数Pb由于Pb和P浸出和PBSO4(S)形成而没有转化为致丙酸酯。相比之下,鱼骨修正的土壤样品中存在的大多数Pb不受酸化的影响,并且不转化为致致丙二酸盐,因为土壤溶液无法进入或通过SOM保留,类似于P.另外,Pb-SOM关联随着SOM的增加而增加内容。结果对基于P基方法的适用性稳定PB污染的碱性土壤表面下的PB的适用性具有重要意义,这可能代表这些土壤中最有害的部分。

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