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恶臭曲霉对活性黑5染料生物吸附的动力学和平衡研究

Kinetic and equilibrium studies on the biosorption of reactive black 5 dye by Aspergillus foetidus.

作者信息

Patel Rachna, Suresh Sumathi

机构信息

Centre for Environmental Science and Engineering, Indian Institute of Technology-Bombay, Powai, Mumbai, Maharashtra, India.

出版信息

Bioresour Technol. 2008 Jan;99(1):51-8. doi: 10.1016/j.biortech.2006.12.003. Epub 2007 Jan 23.

Abstract

An isolated fungus, Aspergillus foetidus had the ability to decolourize growth unsupportive medium containing 100 mg L(-1) of reactive black 5 (RB5) dye with >99% efficiency at acidic pH (2-3). Pre-treatment of fungal biomass by autoclaving or exposure to 0.1M sodium hydroxide facilitated more efficient uptake of dye as compared to untreated fungal biomass. Pre-equilibrium biosorption of RB5 dye onto fungus under different temperatures followed pseudo-second-order kinetic model with high degree of correlation coefficients (R(2)>0.99). Biosorption isotherm data fitted better into Freundlich model for lower concentrations of dye probably suggesting the heterogeneous nature of sorption process. Based on the Langmuir isotherm plots the maximum biosorption capacity (Q(0)) value was calculated to be 106 mg g(-1) at 50 degrees C for fungal biomass pre-treated with 0.1M NaOH. Thermodynamic studies revealed that the biosorption process was favourable, spontaneous and endothermic in nature. Recovery of both adsorbate (dye) and adsorbent (fungal biomass) was possible using sodium hydroxide. Recovered fungal biomass could be recycled number of times following desorption of dye using 0.1M NaOH. Fungal biomass pre-treated with NaOH was efficient in decolourizing solution containing mixture of dyes as well as composite raw industrial effluent generated from leather, pharmaceutical and dye manufacturing company.

摘要

一种分离出的真菌,恶臭曲霉能够在酸性pH值(2 - 3)下,以大于99%的效率使含有100 mg L⁻¹活性黑5(RB5)染料的生长非支持性培养基脱色。与未处理的真菌生物质相比,通过高压灭菌或暴露于0.1M氢氧化钠对真菌生物质进行预处理有助于更有效地摄取染料。在不同温度下RB5染料在真菌上的预平衡生物吸附遵循伪二级动力学模型,相关系数较高(R²>0.99)。对于较低浓度的染料,生物吸附等温线数据更好地拟合了Freundlich模型,这可能表明吸附过程具有非均相性质。基于Langmuir等温线图,在50℃下,用0.1M NaOH预处理的真菌生物质的最大生物吸附容量(Q₀)值计算为106 mg g⁻¹。热力学研究表明,生物吸附过程是有利的、自发的且本质上是吸热的。使用氢氧化钠可以回收吸附质(染料)和吸附剂(真菌生物质)。在用0.1M NaOH解吸染料后,回收的真菌生物质可以循环使用多次。用NaOH预处理的真菌生物质能够有效地使含有染料混合物的溶液以及皮革、制药和染料制造公司产生的数据工业复合废水脱色。

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