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Role of brown-rot fungi in the bioremoval of azo dyes under different conditions

机译:不同条件下褐腐真菌在偶氮染料生物去除中的作用

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摘要

The present study is vital to the understanding of bioremediation of structurally different azo dyes by some unusual Brown-rot fungi. Bioremoval of each dye (20 mg l-1) was tested in two different culture media under static and shaking conditions by taking inocula from different fungi. Fungal strains showed varying dyes removal abilities, though considerable high in case of Acid Red (AR) 151(di-azo) as compared to Orange (Or) II (mono-azo). With an exception of Aspergillus tereus SA3, all the fungal isolates showed higher removal of dyes in SDB. Under static condition, the maximum decolorizing fungal strains were; Aspergillus flavus SA2 (67%) and Alternaria spp. SA4 (57%) in AR 151, while Penicillium spp. (34 and 33 %) in Orange II, in SDB and STE, respectively. Bioremoval of dyes was considerably increased when experiments were shifted from static to shaking mode. It was specifically increased (%) in; AR 151 (255) with Penicillium spp., Or II with A. flavus SA2 (112) and Alternaria spp. (111). The primary mechanism of dyes removal proved to be fungal biosorption. However, reduction of dyes (onto fungal) with formation of their products (α. naphthol, sulphalinic acid and aniline) furthermore revealed that dyes (specifically azo) were actually biodegraded.
机译:本研究对于理解一些不同寻常的褐腐真菌对结构不同的偶氮染料的生物修复至关重要。通过从不同真菌中接种接种物,在静态和摇动条件下,在两种不同的培养基中测试每种染料(20 mg l -1 )的生物去除。真菌菌株显示出不同的染料去除能力,尽管与橙(Or)II(单偶氮)相比,酸性红(AR)151(二偶氮)相当高。除曲霉曲霉SA3外,所有真菌分离株均显示出SDB中较高的染料去除率。在静态条件下,最大的脱色真菌菌株为:黄曲霉SA2(67%)和链格孢菌。 AR 151中的SA4(57%),而青霉菌属。在SDB和STE中,分别在Orange II中(分别为34%和33%)。当实验从静态模式转移到摇动模式时,染料的生物去除率大大提高。具体增加了(%);带有青霉属的AR 151(255),或带有曲霉SA2(112)和链霉菌的II。 (111)。事实证明,去除染料的主要机理是真菌的生物吸附。但是,染料(在真菌上)的还原及其产物(α。萘酚,磺基苯磺酸和苯胺)的形成进一步表明,染料(特别是偶氮)实际上已被生物降解。

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