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Biological Removal of Azo and Triphenylmethane Dyes and Toxicity of Process By-Products

机译:偶氮和三苯甲烷染料的生物去除及工艺副产物的毒性

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摘要

Increasing environmental pollution is connected with broad applications of dyes and imperfection of dyeing technology. Decolourization of triphenylmethane brilliant green and disazo Evans blue by bacterial and fungal strains and toxicity (phyto- and zootoxicity) of degradation by-products were investigated. Influence of incubation method on dyes removal was evaluated (static, semi-static, shaken). Dead biomass was used for sorption estimation. Toxicity of treated dyes was measured to estimate possible influence on aquatic ecosystems. The zootoxicity test was done with Daphnia magna and phytotoxicity with Lemna minor. Samples were classified according to ACE 89/BE 2/D3 Final Report Commission EC. The best results of removal for all tested strains were reached in shaken samples. In opposite to fungi, bacterial strains decolourized brilliant green more effectively than Evans blue. The most effective bacterial strain was Erwinia spp. (s12) and fungal strains were Polyporus picipes (RWP17) and Pleurotus ostreatus (BWPH and MB). Decolourization of brilliant green was connected with decrease of zootoxicity (D. magna) and phytotoxicity (L. minor). Removal of Evans blue was connected with no changes in zootoxicity and decrease of phytotoxicity in most of samples.
机译:日益严重的环境污染与染料的广泛应用和染色技术的缺陷有关。研究了细菌和真菌菌株对三苯甲烷亮绿色和双偶氮Evans蓝的脱色以及降解副产物的毒性(植物和动物毒性)。评估了孵育方法对染料去除的影响(静态,半静态,摇动)。死生物质用于吸附估算。测量了处理过的染料的毒性,以估计对水生生态系统的可能影响。对大型蚤(Daphnia magna)进行了动物毒性测试,对小Lemna进行了植物毒性测试。根据ACE 89 / BE 2 / D3最终报告委员会EC对样品进行分类。在摇动的样品中,所有测试菌株的去除效果最佳。与真菌相反,细菌菌株比埃文斯蓝更有效地使亮绿色脱色。最有效的细菌菌株是欧文氏菌。 (s12)和真菌菌株是猪Poly(RWP17)和平菇(BWPH和MB)。亮绿色的脱色与动物毒性(D. magna)和植物毒性(L. minor)的降低有关。伊文思蓝的去除与大多数样品的动物毒性没有改变和植物毒性的降低有关。

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