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首页> 外文期刊>African Journal of Biotechnology >Process optimization and mechanistic studies of lead (II): Aspergillus caespitosus interaction for industrial effluent treatment
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Process optimization and mechanistic studies of lead (II): Aspergillus caespitosus interaction for industrial effluent treatment

机译:铅(II)的工艺优化和机理研究:凯撒曲霉相互作用用于工业废水处理

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The lead (II) accumulation potential of various biosorbent had been widely studied in the last few years, but an outstanding Pb(II) accumulating biomass still seems crucial for bringing the process to a successful application stage. This investigation describes the use of non-living biomass of?Aspergillus caespitosus?for removal of Pb from Pb(NO3)2?solution in a batch system under different experimental conditions. The highest Pb(II) sorption (351.7 ± 5.7 mg/g?biomass) was observed at 600 μg/ml initial Pb concentration. Biosorption data were well defined by pseudo-second order, saturation mixed order and Langmuir isotherm models. The thermodynamic parameters: G (303 K),?H?and S were determined to be 4.64 kJ/mol, 75.4 kJ/mol and 26.2 J/mol-K respectively. The Pb uptake from binary solution was inhibited in the order of copper > nickel > zinc > manganese.?Fourier transform infrared spectroscopy?(FT-IR) characterization of Pb biosorption revealed the involvement of –SO3?and –CN groups along with other groups. The biosorbed Pb was stripped out (85.5%) using 0.01 M HCl and about 12% loss in Pb(II) sorption capacity was observed after five sorption-desorption cycles. High Pb (II) uptake (351.7 ± 5.7 mg/gbiomass) by?A. caespitosus?proved it to be an outstanding biomaterial until now reported in literature for accumulating from solutions.
机译:过去几年中已广泛研究了各种生物吸附剂中铅(II)的积累潜力,但对于使该工艺成功进入应用阶段,仍然具有出色的Pb(II)积累生物量的关键。这项研究描述了在不同的实验条件下,在分批系统中使用无生命生物的“巴西曲霉”生物质从Pb(NO3)2β溶液中去除Pb的方法。在初始Pb浓度为600μg/ ml时,观察到最高的Pb(II)吸附量(351.7±5.7 mg / g生物量)。生物吸附数据由伪二级,饱和混合级和Langmuir等温线模型很好地定义。热力学参数G(303K),ΔH2和S分别确定为4.64kJ / mol,75.4kJ / mol和26.2J / mol-K。二元溶液中铅的吸收受到抑制的顺序为铜>镍>锌>锰。傅立叶变换红外光谱(FT-IR)表征铅的生物吸附表明–SO3?和-CN基团与其他基团有关。使用0.01 M HCl去除了生物吸附的Pb(85.5%),经过五个吸附-解吸循环后,观察到Pb(II)吸附能力损失了约12%。 A对Pb(II)的摄取量很高(351.7±5.7 mg / g生物量)。 caespitosus证明它是一种杰出的生物材料,直到现在已有文献报道它可以从溶液中积累。

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