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Peroxidase-mediated oxidative coupling of 1-naphthol: Characterization of polymerization products

机译:过氧化物酶介导的1-萘酚的氧化偶联:聚合产物的表征

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The oxidative polymerization of 1-naphthol was investigated in the presence of horseradish peroxidase (HRP). Naphthol polymerization products (NPP) were characterized for their relative polarity using octanol-water partitioning experiments and reverse-phase high pressure liquid chromatography, for structure using size exclusion chromatography and liquid chromatography-mass spectrometry (LC/MS), and for ecotoxicity using inhibition of bacterial bioluminescence. Peroxidase addition resulted in the production of soluble and insoluble NPP. Soluble NPP was predominantly more polar than the parent naphthol and comprised of trimers and tetramers. Insoluble NPP oligomers included dimers, trimers and tetramers. The net aqueous-phase toxicity was significantly reduced due to polymer formation and subsequent precipitation. A reaction model deduced from the LC/MS fragmentation patterns of trimeric naphthol was proposed for NPP formation. Results from this study suggest that HRP-mediated treatment of naphthol contaminated soils can achieve risk reduction through (ⅰ) the formation of large hydrophobic oligomers that are immobilized on the soil matrix; and (ⅱ) reduction in aqueous-phase toxicity due to polymer precipitation.
机译:在辣根过氧化物酶(HRP)存在下,研究了1-萘酚的氧化聚合反应。使用辛醇-水分配实验和反相高压液相色谱法表征萘酚聚合产物(NPP)的相对极性,使用尺寸排阻色谱法和液相色谱-质谱法(LC / MS)表征其结构,并通过抑制作用表征其生态毒性。细菌生物发光。过氧化物酶的添加导致产生可溶性和不溶性NPP。可溶性NPP主要比母体萘酚更具极性,并且由三聚体和四聚体组成。不溶性NPP低聚物包括二聚体,三聚体和四聚体。由于聚合物的形成和随后的沉淀,净水相毒性显着降低。提出了由三聚萘酚的LC / MS断裂模式推导的反应模型用于NPP的形成。这项研究的结果表明,HRP介导的萘酚污染土壤的处理可通过以下方法降低风险:(ⅰ)形成固定在土壤基质上的大疏水性低聚物; (ⅱ)由于聚合物沉淀而降低水相毒性。

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