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首页> 外文期刊>Journal of Bioscience and Bioengineering >Microbial Decolorization of Melanoidin-Containing Wastewaters: Combined Use of Activated Sludge and the Fungus Coriolus hirsutus
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Microbial Decolorization of Melanoidin-Containing Wastewaters: Combined Use of Activated Sludge and the Fungus Coriolus hirsutus

机译:含黑色素的废水的微生物脱色:活性污泥和真菌Corriolus hirsutus的组合使用

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摘要

A white rot fungus, Coriolus hirsutus, exhibited a strong ability to decolorize melanoidin in cultures not supplemented with nitrogenous nutrients. Addition of peptone to the cultures lowered the ability of the fungus to decolorize melanoidin, but that of inorganic nitrogens (Ns), ammonium and nitrate did not bring about any marked reduction in the ability. These results suggest an inhibitory effect of organic N on melanoidin decolorization. Therefore, for enhancing the decolorization of melanoidin in wastewaters by the fungus, activated sludge pretreatment of the wastewaters was expected to be effective, i.e., activated sludge is capable of converting available organic N into inorganic N. To confirm this, waste sludge heat treatment liquor (HTL), wastewater from a sewage treatment plant, was pretreated with activated sludge. In practice, pretreatment of HTL under appropriate conditions accelerated the fungal decolorization of HTL. In the pretreated HTL, the fungus was shown to produce a high level of manganese-independent peroxidase (MIP). Addition of Mn(II) to the pretreated HTL caused a further increase in the decolorization efficiency of the fungus and a marked increase in the manganese peroxidase (MnP) activity. Consequently, the increases in MIP and MnP activities were considered to play an important role in the enhanced ability of C. hirsutus to decolorize HTL.
机译:在未添加氮营养素的培养物中,一种白色腐烂真菌科里奥利希罗(Coriolus hirsutus)具有很强的使黑色素脱色的能力。在培养物中添加蛋白ept会降低真菌使类黑素脱色的能力,但无机氮(Ns),铵和硝酸盐的能力却不会显着降低。这些结果表明有机氮对黑素的脱色具有抑制作用。因此,为了增强真菌对废水中黑色素的脱色作用,对废水进行活性污泥预处理是有效的,即,活性污泥能够将有效的有机氮转化为无机氮。 (HTL),即污水处理厂的废水,用活性污泥进行了预处理。实际上,在适当条件下对HTL进行预处理可加速HTL的真菌脱色。在经过预处理的HTL中,该真菌显示出可产生高水平的不依赖锰的过氧化物酶(MIP)。在预处理的HTL中添加Mn(II)导致真菌的脱色效率进一步提高,锰过氧化物酶(MnP)活性显着提高。因此,MIP和MnP活性的增加被认为在C. hirsutus增强HTL脱色能力中起重要作用。

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