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首页> 外文期刊>Journal of Hazardous Materials >A promising inert support for laccase production and decolouration of textile wastewater by the white-rot fungus Trametes pubescesns
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A promising inert support for laccase production and decolouration of textile wastewater by the white-rot fungus Trametes pubescesns

机译:白腐菌Trametes pubescesns为漆酶生产和纺织废水脱色提供了有希望的惰性支持

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摘要

Cubes of nylon sponge, cubes of polyurethane foam (PUF), cuttings of stainless steel sponges and the commercial carriers Kaldnes™ Kl were tested as inert supports for laccase production by the white-rot fungus Trametes pubescens under semi-solid-state fermentation conditions. The cultures operating with Kaldnes™ Kl led to the highest laccase activity (3667 U/l). In addition this support could be re-utilised, making the whole process more economical. Subsequently, the decolouration of simulated textile wastewater (STW) by T. pubescens grown on the different tested supports under semi-solid-state fermentation conditions was studied. Decolouration percentages around 66-80% were obtained in 96 h. It was found that STW decolouration was due to two mechanisms: laccase action (biodegradation) and adsorption onto fungal mycelium, save for the PUF cultures in which decolouration was mainly due to adsorption onto the support. Further, the decolouration of STW by Kaldnes™ Kl cultures in three successive batches of 96 h each was studied. Decolouration percentages of 51.3,70.0 and 69.8%, were attained for each batch, respectively.
机译:在半固态发酵条件下,白腐菌Trametes pubescens测试了尼龙海绵,聚氨酯泡沫(PUF),不锈钢海绵的切屑和商用载体Kaldnes™K1作为生产漆酶的惰性载体。用Kaldnes™K1进行的培养导致最高的漆酶活性(3667 U / l)。此外,可以重新利用这种支持,从而使整个过程更加经济。随后,研究了在半固态发酵条件下,生长在不同测试支持物上的毛竹对模拟纺织品废水(STW)的脱色。在96小时内获得的脱色百分比约为66-80%。发现STW脱色是由于两种机制引起的:漆酶作用(生物降解)和吸附在真菌菌丝体上,但PUF培养物中的脱色主要是由于吸附在载体上。此外,研究了在三个连续的每批96小时的批次中,通过Kaldnes™K1培养物对STW的脱色。每批的脱色率分别为51.3、70.0和69.8%。

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