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首页> 外文期刊>Environmental Progress & Sustainable Energy >Batch and Dynamics Modeling of the Biosorption of Cr(VI) from Aqueous Solutions by Solid Biomass Waste from the Biodiesel Production
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Batch and Dynamics Modeling of the Biosorption of Cr(VI) from Aqueous Solutions by Solid Biomass Waste from the Biodiesel Production

机译:批处理和吸附的动力学建模铬(VI)从固体生物质水解决方案从生物柴油生产浪费

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摘要

Pongamia oil cake (POC), a bio-residual waste is obtained during the production of biodiesel as a byproduct. This is used as biosorbent to evaluate the removal of chromium (VI) ions from an aqueous synthetic solution. The effects of various process parameters such as pH, contact time, initial chromium ions concentration and adsorbent dosage have been investigated. The FT-IR and SEM analysis of the adsorbents was done in the native- and Cr(VI)-loaded state, to explore the position of the functional groups available for binding of chromium ions and the structural morphology of the studied adsorbents respectively. Langmuir, Freundlich, Temkin and Dubinin-Radushkevich isotherm were used to study the adsorption mechanism, and it was found that the equilibrium data was better represented by the Freundlich isotherm. The maximal removal of hexavalent chromium ion was found to be at a pH of 2.0 within 2 h. The sorption kinetic follows the pseudo second order kinetic model. The Cr(VI) ions bound to the biosorbent could be effectively removed, using dilute H2SO4 (0.05 mM). The ability of POC to adsorb Cr(VI) ions in packed column was also investigated through the column studies. Bed Depth Service Time model and the Thomas model were used to analyze the experimental data and evaluate the model parameters. POC was shown to be a promising adsorbent for removal of CrCVI) ions from aqueous solutions.
机译:Pongamia豆饼(POC) bio-residual浪费在生物柴油的生产副产品。铬(VI)离子的去除水综合的解决方案。工艺参数如pH值、接触时间、最初的铬离子浓度和吸附剂用量进行了研究。吸附剂的分析是在完成的本地和铬(VI))下载状态,探索可用的官能团的位置绑定的铬离子和结构形态学的吸附剂进行了研究分别。Dubinin-Radushkevich等温线是用于研究吸附机理和发现平衡数据更好的代表弗伦德里希等温线。六价铬离子在pH值被发现2.0在2 h,吸附动力学遵循伪二阶动力学模型。离子绑定到biosorbent可能有效移除,用稀硫酸(0.05毫米)。POC吸附铬(VI)离子的能力在包装通过列列也被调查研究。托马斯模型被用来分析实验数据和评估模型参数。从水吸附剂去除CrCVI)离子解决方案。

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