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从酸性矿山排水中分离出的毛壳菌对酸性纺织染料的吸附作用。

Biosorption of acidic textile dyestuffs from aqueous solution by Paecilomyces sp. isolated from acidic mine drainage.

机构信息

Department of Biology, Faculty of Arts and Science, Eskişehir Osmangazi University, Eskişehir, Turkey.

出版信息

Environ Sci Pollut Res Int. 2013 Jul;20(7):4540-50. doi: 10.1007/s11356-012-1396-9. Epub 2012 Dec 21.

Abstract

Removal of textile dyestuffs from aqueous solution by biosorption onto a dead fungal biomass isolated from acidic mine drainage in the Çanakkale Region of Turkey was investigated. The fungus was found to be a promising biosorbent and identified as Paecilomyces sp. The optimal conditions for bioremediation were as follows: pH, 2.0; initial dyestuff concentration, 50 mg l(-1) for Reactive Yellow 85 and Reactive Orange 12, and 75 mg l(-1) for Reactive Black 8; biomass dosage, 2 g l(-1) for Reactive Yellow 85, 3 g l(-1) for Reactive Orange 12, 4 g l(-1) for Reactive Black 8; temperature, 25 °C; and agitation rate, 100 rpm. Zeta potential measurements indicated an electrostatic interaction between the binding sites and dye anions. Fourier transform infrared spectroscopy showed that amine, hydroxyl, carbonyl, and amide bonds were involved in the dyestuff biosorption. A toxicity investigation was also carried out before and after the biosorption process. These results showed that the toxicities for the reactive dyestuffs in aqueous solutions after biosorption studies decreased. The Freundlich and Langmuir adsorption models were used for the mathematical description of the biosorption equilibrium, and isotherm constants were evaluated for each dyestuff. Equilibrium data of biosorption of RY85 and RO12 dyestuffs fitted well to both models at the studied concentration and temperature.

摘要

从土耳其恰纳卡莱地区酸性矿山排水中分离出的死真菌生物质对水溶液中的纺织染料进行生物吸附,研究了从水溶液中去除纺织染料的方法。该真菌被发现是一种很有前途的生物吸附剂,并被鉴定为拟青霉属。生物修复的最佳条件如下:pH 值为 2.0;初始染料浓度为 50 mg/L(Reactive Yellow 85 和 Reactive Orange 12)和 75 mg/L(Reactive Black 8);生物质用量为 2 g/L(Reactive Yellow 85)、3 g/L(Reactive Orange 12)和 4 g/L(Reactive Black 8);温度为 25°C;搅拌速度为 100 rpm。Zeta 电位测量表明结合位点和染料阴离子之间存在静电相互作用。傅里叶变换红外光谱表明,胺、羟基、羰基和酰胺键参与了染料的生物吸附。还在生物吸附前后进行了毒性研究。这些结果表明,在生物吸附研究后,水溶液中反应性染料的毒性降低。Freundlich 和 Langmuir 吸附模型用于描述生物吸附平衡的数学描述,并评估了每种染料的等温常数。RY85 和 RO12 染料的吸附平衡数据在研究的浓度和温度下均与两种模型拟合良好。

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