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Polymerization of humic substances by an enzyme-catalyzed oxidative coupling

机译:腐殖质通过酶催化的氧化偶合聚合

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A novel understanding of the structural features of humic substances supports the self-assembly supramolecular association of relatively small molecules rather than their polymeric nature. An increase in the conformational stability of humus may thus be achieved through promotion of intermolecular covalent bondings between heterogeneous humic molecules by an enzyme-catalyzed oxidative reaction. We present evidence from high performance size exclusion chroma-tography (HPSEC) and diffuse reflectance infrared spectrometry (DRIFT) that oxidation of a humic material catalyzed by horseradish peroxidase stabilizes the humic structure by the formation of aryl and alkyl ethers and permanently enhances its molecular size.
机译:对腐殖质结构特征的新颖理解支持相对较小分子的自组装超分子缔合,而不是其聚合性质。因此,通过酶催化的氧化反应促进异质腐殖质分子之间的分子间共价键,可以提高腐殖质的构象稳定性。我们从高性能尺寸排阻色谱(HPSEC)和漫反射红外光谱(DRIFT)提供的证据表明,辣根过氧化物酶催化的腐殖质材料的氧化作用通过芳基和烷基醚的形成稳定了腐殖质结构,并永久增加了其分子大小。

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