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首页> 外文期刊>Chemistry central journal >The catalytic role of uranyl in formation of polycatechol complexes
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The catalytic role of uranyl in formation of polycatechol complexes

机译:铀酰在聚儿茶酚配合物形成中的催化作用

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To better understand the association of contaminant uranium with natural organic matter (NOM) and the fate of uranium in ground water, spectroscopic studies of uranium complexation with catechol were conducted. Catechol provides a model for ubiquitous functional groups present in NOM. Liquid samples were analyzed using Raman, FTIR, and UV-Vis spectroscopy. Catechol was found to polymerize in presence of uranyl ions. Polymerization in presence of uranyl was compared to reactions in the presence of molybdate, another oxyion, and self polymerization of catechol at high pH. The effect of time and dissolved oxygen were also studied. It was found that oxygen was required for self-polymerization at elevated pH. The potential formation of phenoxy radicals as well as quinones was monitored. The benzene ring was found to be intact after polymerization. No evidence for formation of ether bonds was found, suggesting polymerization was due to formation of C-C bonds between catechol ligands. Uranyl was found to form outer sphere complexes with catechol at initial stages but over time (six months) polycatechol complexes were formed and precipitated from solution (forming humic-like material) while uranyl ions remained in solution. Our studies show that uranyl acts as a catalyst in catechol-polymerization.
机译:为了更好地了解污染物铀与天然有机物(NOM)的关系以及铀在地下水中的命运,对铀与邻苯二酚络合进行了光谱研究。邻苯二酚为NOM中普遍存在的官能团提供了模型。使用拉曼光谱,FTIR和UV-Vis光谱分析液体样品。发现邻苯二酚在存在铀酰离子的情况下发生聚合。将铀酰存在下的聚合反应与钼酸根,另一种氧离子存在下的反应以及邻苯二酚在高pH下的自聚合进行了比较。还研究了时间和溶解氧的影响。发现在升高的pH下氧对于自聚合是必需的。监测苯氧基和醌的潜在形成。发现苯环在聚合后是完整的。没有发现形成醚键的证据,表明聚合是由于邻苯二酚配体之间形成了C-C键。发现铀酰在初始阶段会与邻苯二酚形成外球络合物,但随着时间的推移(六个月)会形成聚邻苯二酚络合物,并从溶液中沉淀出来(形成腐殖质样物质),而铀酰离子仍保留在溶液中。我们的研究表明,铀酰在儿茶酚聚合反应中起催化剂的作用。

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