首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biosorption of Acid Black 172 and Congo Red from aqueous solution by nonviable Penicillium YW 01: Kinetic study, equilibrium isotherm and artificial neural network modeling
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Biosorption of Acid Black 172 and Congo Red from aqueous solution by nonviable Penicillium YW 01: Kinetic study, equilibrium isotherm and artificial neural network modeling

机译:不可行青霉YW 01对水溶液中酸性黑172和刚果红的生物吸附:动力学研究,平衡等温线和人工神经网络建模

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The main objective of this work was to investigate the biosorption performance of nonviable Penicillium YW 01 biomass for removal of Acid Black 172 metal-complex dye (AB) and Congo Red (CR) in solutions. Maximum biosorption capacities of 225.38 and 411.53mgg-1 under initial dye concentration of 800mgL-1, pH 3.0 and 40°C conditions were observed for AB and CR, respectively. Biosorption data were successfully described with Langmuir isotherm and the pseudo-second-order kinetic model. The Weber-Morris model analysis indicated that intraparticle diffusion was the limiting step for biosorption of AB and CR onto biosorbent. Analysis based on the artificial neural network and genetic algorithms hybrid model indicated that initial dye concentration and temperature appeared to be the most influential parameters for biosorption process of AB and CR onto biosorbent, respectively. Characterization of the biosorbent and possible dye-biosorbent interaction were confirmed by Fourier transform infrared spectroscopy and scanning electron microscopy.
机译:这项工作的主要目的是研究无生命的青霉YW 01生物质对溶液中酸性黑172金属络合物染料(AB)和刚果红(CR)的去除性能。在800 mgL-1的初始染料浓度,pH 3.0和40°C条件下,AB和CR的最大生物吸附量分别为225.38和411.53mgg-1。用Langmuir等温线和伪二级动力学模型成功描述了生物吸附数据。 Weber-Morris模型分析表明,颗粒内扩散是AB和CR在生物吸附剂上生物吸附的限制步骤。基于人工神经网络和遗传算法混合模型的分析表明,初始染料浓度和温度似乎分别是AB和CR在生物吸附剂上生物吸附过程中最有影响力的参数。通过傅里叶变换红外光谱和扫描电子显微镜确认了生物吸附剂的特征以及可能的染料-生物吸附剂相互作用。

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