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Optimization, equilibrium, kinetic modeling, and thermodynamic studies of biosorption of aniline blue by the dead biomass of Aspergillus fumigatus

机译:烟曲霉死生物对苯胺蓝的生物吸附的优化,平衡,动力学模型和热力学研究

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The effect of biosorbent concentration, initial pH, temperature, agitation rate, adsorption time, and initial dye concentration was studied for the biosorption of aniline blue dye using dead fungal biomass of Aspergillus fumigatus. The maximum biosorption of aniline blue was observed at the sorbent concentration of 1 g/L, initial pH 10, temperature 30 ℃, agitation rate 160 rpm, and initial dye concentration of 50mg/L. The experimental data were analyzed using Freundlich, Temkin, and Scatchard equilibrium isotherm models out of which the Freundlich isotherm (R~2 = 0.98) was found to best fit the experimental data. Thermodynamic parameters such as enthalpy change (-3.08 kJ/mol) and entropy change (8.32 J/mol K) were also calculated. The biosorption kinetics of Aniline blue was found to obey pseudo-second-order kinetic model (R~2 = 0.967). The results showed that biosorption was favorable and spontaneous, thus, indicating the positive affinity of the dye towards the adsorbent. The characteristics of the fungal biosorbent were studied using Fourier transform-infrared spectroscopy (FTIR) and scanning electron microscopic (SEM).
机译:研究了烟曲霉死菌生物量对苯胺蓝染料生物吸附的生物吸附剂浓度,初始pH,温度,搅拌速度,吸附时间和初始染料浓度的影响。在1 g / L的吸附剂浓度,初始pH 10,温度30℃,搅拌速度160 rpm和初始染料浓度50mg / L时观察到了苯胺蓝的最大生物吸附。使用Freundlich,Temkin和Scatchard平衡等温线模型分析了实验数据,其中Freundlich等温线(R〜2 = 0.98)最适合实验数据。还计算了热力学参数,例如焓变(-3.08 kJ / mol)和熵变(8.32 J / mol K)。发现苯胺蓝的生物吸附动力学符合伪二级动力学模型(R〜2 = 0.967)。结果表明生物吸附是有利的和自发的,因此表明染料对吸附剂具有正亲和力。使用傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)研究了真菌生物吸附剂的特性。

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