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ENZYMATIC DEPOLYMERIZATION AND SOLUBILIZATION OF CHEMICALLY PRETREATED COAL AND COAL-DERIVED CONSTITUENTS

机译:化学处理过的煤及其衍生成分的酶解聚和增溶作用

摘要

Use of chemical pretreatment agents on the subsequent enzymatic conversion of coal is described. As an example, fungal manganese peroxidase (MnP) produced by the agaric white-rot fungus Bjerkandera adusta, where the enzyme MnP has little effect on the untreated coal controls, was investigated. The nature of pretreatment agents and their applied concentrations were found to have significant impact on subsequent enzymatic conversion of coal. Four agents were investigated: HNO3, catalyzed H2O2, KMnO4, and NaOH. Hydrogen peroxide was found to generate the greatest quantity of total organic carbon from the coal samples employed. Combined chemical and enzymatic treatment of coal is appropriate for enhanced depolymerisation of coal and coal-derived constituents and results in chemically heterogeneous and complex liquefaction products like humic and fulvic acids, which will have important ramifications in the generation of liquid and gaseous fuels from coals as nonpetroleum-derived fuel alternatives.
机译:描述了在煤的随后酶促转化中使用化学预处理剂。例如,研究了由木耳白腐真菌 Bjerkandera adusta 产生的真菌锰过氧化物酶(MnP),其中MnP酶对未经处理的煤质对照几乎没有影响。发现预处理剂的性质及其施加的浓度对随后的煤的酶转化具有显着影响。研究了四种试剂:HNO 3 ,催化的H 2 O 2 ,KMnO 4 和NaOH。发现过氧化氢从所用煤样品中产生最大量的总有机碳。煤的化学和酶处理相结合适合于增强煤和煤衍生成分的解聚,并产生化学多相和复杂的液化产物,例如腐殖酸和富里酸,这将对从煤中生产液态和气态燃料产生重要影响。非石油衍生的燃料替代品。

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