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Molecular Sorption Mechanisms of Cr(Ⅲ) to Organo-Ferrihydrite Coprecipitates Using Synchrotron-Based EXAFS and STXM Techniques

机译:Cr(Ⅲ)对有机铁矿石CopRecipitate使用Synchrotron的EXAFS和STXM技术的分子吸附机制

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摘要

Ubiquitous organo-ferrihydrite coprecipitates (OFC) significantly affect the mobility and availability of Cr in soil through sorption, but the underlying sorption mechanisms remain unclear at the molecular level. Due to the potential formation of OFC in agricultural soils with returned crop straws, we synthesized OFC with rice/rape straw-derived carbon (C) sources and different loadings. The molecular sorption mechanisms of Cr(Ⅲ) to the synthesized OFC under different conditions were investigated by Cr K-edge extended X-ray absorption fine structure (EXAFS) spectroscopy and scanning transmission X-ray microscopy (STXM). Cr(Ⅲ) sorption by OFC decreased with increasing C loading and decreasing pH, regardless of C sources. Moreover, inhibition of Cr(Ⅲ) sorption to OFC with high C loading occurred when ionic strength (IS) increased, suggesting the presence of outer-sphere complexed Cr(Ⅲ).EXAFS analysis revealed that more Cr(Ⅲ) were bound to ferrihydrite of the OFC at a relatively high pH, and organically bound Cr(Ⅲ) enhanced when increasing C loading and decreasing IS. STXM analysis strongly suggested that C loading reduced Cr(Ⅲ) sorption through blocking the binding sites on the ferrihydrite, which overwhelmed Cr(Ⅲ) retention by the direct binding of Cr(Ⅲ) to carboxyl of the particulate organic matter (OM) and OM coated on the Fh fractions of the OFC. These findings facilitated the comprehensive understanding of the sorption mechanisms of Cr(Ⅲ) to OFC at the molecular level, which will assist the prediction of Cr(Ⅲ) mobility in soils, particularly for Cr(Ⅲ)-contaminated agricultural soils with the application of crop straws.
机译:普遍存在的有机氢化钛矿CopRecipitates(OFC)显着影响通过吸附的土壤中Cr的流动性和可用性,但潜在的吸附机制在分子水平下仍然不清楚。由于潜在地形成了农业土壤与返回的作物吸管,我们用米/油菜秸秆衍生的碳(C)来源和不同的载荷合成了型。通过Cr k边缘延伸X射线吸收细结构(EXAFS)光谱和扫描透射X射线显微镜(STXM)研究了Cr(Ⅲ)在不同条件下合成的OFC的分子吸附机制。无论C源,Cr(Ⅲ)通过增加C加载和降低pH值,Cr(Ⅲ)减少,随着C源的增加而降低。此外,当离子强度(AS)增加时,抑制Cr(Ⅲ)对OFC的吸附于CO的抑制作用,表明外球络合物络合物Cr(Ⅲ).exafs分析显示更多的Cr(Ⅲ)与Ferrihydite结合在相对高的pH下的OFC,在增加C加载和减少时,有机结合的Cr(Ⅲ)增强。 STXM分析强烈建议,C加载Cr(Ⅲ)通过阻断Ferrihydrite上的结合位点来减少Cr(Ⅲ)吸附,这使得Cr(Ⅲ)的Cr(Ⅲ)留在颗粒状有机物质(OM)和OM的羧基上的直接结合涂覆在OFC的FH分数上。这些发现促进了对分子水平的Cr(Ⅲ)至OFC的研究机制的综合理解,这将有助于预测土壤中的Cr(Ⅲ)迁移率,特别是对于Cr(Ⅲ) - 含有农业土壤的应用农作物吸管。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|12989-12997|共9页
  • 作者单位

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 China;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 China;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 China School of Chemistry and Chemical Engineering Huaiyin Normal University Huaian 223300 China;

    Canadian Light Source Inc. University of Saskatchewan Saskatoon SK S7N 2V3 Canada;

    Canadian Light Source Inc. University of Saskatchewan Saskatoon SK S7N 2V3 Canada;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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