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White-rot fungi combined with lignite granules and lignitic xylite to decolorize textile industry wastewater

机译:白腐真菌与褐煤颗粒和褐铁矿混合,使纺织工业废水脱色

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The feasibility of using immobilized fungi to decolorize textile industry wastewater containing dyes was examined in experiments with: two species of white-rot fungi (a Marasmius species from Indonesia, which produces copious biomass, and Trametes hirsuta, which produces high levels of laccase); two types of lignite products as adsorbents and solid substrates (lignitic xylite and lignite granules); and four simulated wastewaters, each containing a different kinds of reactive textile azo dye. The growth, extracellular enzyme production, dye degradation and dye absorption parameters afforded by each permutation of fungus, substrate and dye were then measured. Both fungal species grew poorly on xylite, but much better on lignite granules. Marasmius sp.produced up to 67 U/L laccase on lignite granules, but just 10 U/L on xylite, and no other detectable extracellular enzymes. T. hirsuta produced 1343 U/L laccase and up to 12 U/L unspecific peroxidase when immobilized on lignite granules, and 898 U/L laccase with 14 U/L unspecific peroxidase when immobilized on xylite. The amount of color lost from the dye solutions depended on both the type of dye and the enzyme levels in the fermenter.
机译:在以下实验中检验了使用固定化真菌使含染料的纺织工业废水脱色的可行性:两种白腐真菌(一种来自印度尼西亚的马拉斯缪斯种,产生大量生物质,另一种是Trametes hirsuta,产生高水平的漆酶);两种褐煤产品分别作为吸附剂和固体基质(褐铁矿黄铁矿和褐煤颗粒);四种模拟废水,每种废水中都含有不同种类的活性纺织偶氮染料。然后测量由真菌,底物和染料的每个排列提供的生长,细胞外酶产生,染料降解和染料吸收参数。两种真菌种类在黄铁矿上生长都很差,但是在褐煤颗粒上却好得多。 Marasmius sp。在褐煤颗粒上产生高达67 U / L的漆酶,但在木质素上仅产生10 U / L,没有其他可检测到的细胞外酶。固定在褐煤颗粒上的hirsuta T. hiraseta产生了1343 U / L漆酶和高达12 U / L的非特异性过氧化物酶,而固定在黄铁矿上的T. hirsuta产生了具有14 U / L非特异性过氧化物酶的898 U / L漆酶。染料溶液损失的颜色数量取决于染料的类型和发酵罐中酶的水平。

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