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Mechanistic Insights into Dissolved Organic Sulfur Photomineralization through the Study of Cysteine Sulfinic Acid

机译:通过研究半胱氨酸硫酸酸的机械洞察溶解有机硫磷酸化

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摘要

Photochemical reactions convert dissolved organic matter (DOM) into inorganic and low-molecular-weight organic products, contributing to its cycling across environmental compartments. However, knowledge on the formation mechanisms of these products is still scarce. In this work, we investigate the triplet-sensitized photodegradation of cysteine sulfinic acid, a (photo)degradation product of cysteine, to sulfate (SO_4~(2-)). We use kinetic analysis, targeted experiments, and previous literature from several fields of chemistry to explain the elementary steps that lead to the release of sulfate. Our analysis indicates that triplet sensitizers act as one-electron oxidants on the sulfinate S lone pair. The resulting radical undergoes C-S fragmentation to form SO_2, which becomes hydrated to sulfite/bisulfite (S(Ⅳ)). S(Ⅳ) is further oxidized to SO_4~(2-) in the presence of triplet sensitizers and oxygen. We point out that the reaction sequence SO_2⇄ S(Ⅳ) → SO_4~(2-) is valid independently of the chemical structure of the model compound and might represent a sulfate photoproduction mechanism with general validity for DOS. Our mechanistic investigation revealed that amino acids in general might also be photochemical precursors of CO_2, ammonia, acetaldehyde, and H_2O_2 and that reaction byproducts can influence the rate and mechanism of S(FV) (photo)oxidation.
机译:光化学反应将溶解的有机物质(DOM)转化为无机和低分子量的有机产品,有助于其跨环保分区的循环。但是,关于这些产品的形成机制的知识仍然是稀缺的。在这项工作中,我们研究了半胱氨酸硫酸的三重致敏光降解,半胱氨酸的半胱氨酸硫酸盐,硫酸盐(SO_4〜(2-))。我们使用动力学分析,有针对性的实验和以前的几个化学领域的文学来解释导致硫酸盐释放的基本步骤。我们的分析表明,三重态敏化剂充当亚硫酸盐的唯一氧化剂。所得到的基团经历C-S碎片以形成SO_2,其变为水合成亚硫酸盐/亚硫酸氢盐(S(Ⅵ))。在三重态敏化剂和氧气存在下,S(ⅳ)进一步氧化成SO_4〜(2-)。我们指出,反应序列SO_2-(Ⅵ)→SO_4〜(2-)独立于模型化合物的化学结构有效,并且可以代表具有通用剂量的硫酸盐光保护机理。我们的机制调查显示,氨基酸通常也可以是CO_2,氨,乙醛和H_2O_2的光化学前体,并且反应副产物可以影响S(FV)(照片)氧化的速率和机制。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|13066-13076|共11页
  • 作者单位

    Institute of Biogeochemistry and Pollutant Dynamics (IBP) Department of Environmental Systems Science ETH Zurich 8092 Zurich Switzerland;

    Institute of Biogeochemistry and Pollutant Dynamics (IBP) Department of Environmental Systems Science ETH Zurich 8092 Zurich Switzerland;

    Institute of Biogeochemistry and Pollutant Dynamics (IBP) Department of Environmental Systems Science ETH Zurich 8092 Zurich Switzerland;

  • 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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