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Influence of Coprecipitated Organic Matter on Fe~( 2+)_((aq))-Catalyzed Transformation of Ferrihydrite: Implications for Carbon Dynamics

机译:共沉淀有机物对Fe〜(2 +)_((aq))催化水铁矿转化的影响:碳动力学的意义。

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摘要

Aqueous Fe(Ⅱ) is known to catalyze the abiotic transformation of ferrihydrite to more stable Fe minerals. However, little is known about the impacts of coprecipitated OM on Fe(Ⅱ)-catalyzed ferrihydrite transformation and its consequences for C dynamics. Accordingly, we investigated the extent and pathway of Fe(Ⅱ)-induced transformation of OM-ferrihydrite coprecipitates as a function of C/Fe ratios and aqueous Fe(Ⅱ) concentrations, and its implications for subsequent C dynamics. The coprecipitated OM resulted in a linear decrease in ferrihydrite transformation with increasing C/Fe ratios. The secondary mineral profiles upon Fe(Ⅱ) reaction with OM-ferrihydrite coprecipitates depend on Fe(Ⅱ) concentrations At 0.2 mM Fe(Ⅱ), OM completely inhibited goethite formation and stimulated lepidocrocite formation. At 2 mM Fe(Ⅱ), whereas goethite was formed in the presence of OM, OM reduced the amount of goethite and magnetite formation and increased the formation of lepidocrocite. The solid-phase C content remained unchanged after reaction, suggesting that OM remains associated with Fe minerals following ferrihydrite transformation to more stable Fe minerals. However, C desorbability by H_2PO_4~- from the resulting Fe minerals following reaction was enhanced. The study indicates a "lepidocrocite favoring effect" by OM and suggests that Fe(Ⅱ)-catalyzed transformation of ferrihydrite may decrease OM stability in natural environments under moderately reducing conditions.
机译:已知Fe(Ⅱ)水溶液催化亚铁酸盐向更稳定的Fe矿物的非生物转化。然而,关于共沉淀OM对Fe(Ⅱ)催化的亚铁水合物转变的影响及其对C动力学的影响知之甚少。因此,我们研究了Fe(Ⅱ)诱导的OM-铁水合物共沉淀转变的程度和途径与C / Fe比和Fe(Ⅱ)水溶液浓度的关系,及其对后续C动力学的影响。随着C / Fe比的增加,共沉淀OM导致水铁矿相变线性下降。 Fe(Ⅱ)与OM-三水铁矿共沉淀时的次生矿物分布取决于Fe(Ⅱ)的浓度。在0.2 mM Fe(Ⅱ)下,OM完全抑制针铁矿的形成并刺激了纤铁矿的形成。 Fe(Ⅱ)浓度为2 mM时,存在OM时形成针铁矿,而OM减少了针铁矿和磁铁矿的形成,增加了纤铁矿的形成。反应后固相C含量保持不变,这表明在水铁矿转变为更稳定的Fe矿物后,OM仍与Fe矿物相关。然而,反应后,H_2PO_4〜-从生成的Fe矿物中解吸C的能力增强。该研究表明OM具有“利于蒙脱石的作用”,并表明Fe(Ⅱ)催化的水铁矿转化可能降低在中等还原条件下自然环境中的OM稳定性。

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  • 来源
    《Environmental Science & Technology》 |2015年第18期|10927-10936|共10页
  • 作者单位

    Department of Plant and Soil Sciences, Delaware Environmental Institute, University of Delaware, Newark, Delaware 19711, United States;

    Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, Washington 99354, United States;

    Department of Plant and Soil Sciences, Delaware Environmental Institute, University of Delaware, Newark, Delaware 19711, United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:59:49

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