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首页> 外文期刊>Applied Microbiology and Biotechnology >Depolymerization of low-rank coal by extracellular fungal enzyme systems .3. In vitro depolymerization of coal humic acids by a crude preparation of manganese peroxidase from the white-rot fungus Nematoloma frowardii b19
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Depolymerization of low-rank coal by extracellular fungal enzyme systems .3. In vitro depolymerization of coal humic acids by a crude preparation of manganese peroxidase from the white-rot fungus Nematoloma frowardii b19

机译:低品位煤的胞外真菌酶解聚反应.3。用白腐真菌Frowardii b19粗制锰过氧化物酶对煤腐殖酸进行体外解聚

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摘要

The in vitro depolymerization of humic acids derived from German lignite (lour-rank coal, brown coal) was studied using: a manganese peroxidase preparation ration from the white-rot fungus Nematoloma frowardii b19. The H2O2 required was continuously generated by glucose oxidase. Mn peroxidase depolymerized high-molecular-mass humic acids by forming fulvic-acid-like compounds. The depolymerization process was accompanied by the decolorization of the dark-brown humic acid fraction soluble in alkaline solutions (decrease in absorbance at 450 nm) and by the yellowish coloring of the fraction of acid-soluble fulvic-acid-like compounds (increase in absorbance at 360 nm). The Mn peroxidase of N. frowardii b19 has been proved to be highly stable; even after an in vitro reaction time of 7 days in the presence of humic acids, less than 10% loss in total oxidizing activity was detectable.
机译:用以下方法研究了德国褐煤(腐烂煤,褐煤)中腐殖酸的体外解聚反应:从白腐真菌Frowardii b19制备了锰过氧化物酶配比。葡萄糖氧化酶连续产生所需的H2O2。 Mn过氧化物酶通过形成黄腐酸样化合物使高分子腐殖酸解聚。解聚过程伴随着可溶于碱性溶液的深棕色腐殖酸级分的脱色(450 nm处的吸光度降低)和酸溶性富维酸样化合物的级分的黄色(吸光度增加)在360 nm)。事实证明,frowardii b19的Mn过氧化物酶是高度稳定的。即使在腐殖酸存在下体外反应7天后,总氧化活性的损失也不到10%。

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