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Decolouration of industrial metal-complex dyes in successive batches by active cultures of Trametes pubescens

机译:连续培养的Trametes pubescens对工业金属络合物染料的脱色

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摘要

The decolouration of the metal-complex dyes Bemaplex Navy M-T (150 mg/L) and Bezaktiv Blue BA (150 mg/L) in nine successive batches by immobilised cultures of the white-rot fungus Trametes pubescens was studied. Two different types of immobilisation supports were used: the commercial carriers Kaldnes™ K1 (synthetic supports) and sunflower-seed shells (SS) (natural supports). Bemaplex showed more resistance to degradation by T. pubescens cultures than Bezaktiv, especially in the K1 cultures. Thus, SS cultures led to decolouration percentages higher than 59% for Bemaplex in all the batches save for the last two and higher than 50% for Bezaktiv in all the batches except for the 2nd and 9th ones. K1 cultures showed decolouration percentages for Bemaplex higher than 42% in batches 1, 3, 4, 5 and 7 and for Bezaktiv higher than 70% in all the batches save for the last one. Dye decolouration was mainly due to enzyme action (biodegradation).
机译:研究了固定化培养的白腐真菌Trametes pubescens对金属络合物染料Bemaplex Navy M-T(150 mg / L)和Bezaktiv Blue BA(150 mg / L)进行的九次连续脱色。使用了两种不同类型的固定支架:商业载体Kaldnes™K1(合成支架)和葵花籽壳(SS)(天然支架)。 Bemaplex表现出比Tezaktiv更好的抗毛被丁酸螺旋菌降解的能力,尤其是在K1培养中。因此,SS培养导致除最后两个批次外,所有批次中Bemaplex的脱色率均高于59%,除第二批次和第九批次外,所有批次中Bezaktiv的脱色率均高于50%。在第1、3、4、5和7批中,K1培养物对Bemaplex的脱色百分比均高于42%,对于最后一批,Bezaktiv的所有批次的脱色率均高于70%。染料脱色主要是由于酶的作用(生物降解)。

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