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Biosorption of Hexavalent Chromium from Aqueous Medium with Opuntia Biomass

机译:仙人掌生物质从水介质中吸附六价铬

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摘要

The biosorption of hexavalent chromium from aqueous solutions by Opuntia cladodes and ectodermis from cactus fruits was investigated. Both types of biomass are considered low-cost, natural, and ecofriendly biosorbents. Batch experiments were carried out to determine Cr(VI) biosorption capacity and the efficiency of the biosorption process under different pH, initial Cr(VI) concentration, and sorbent dosage. The biosorption of Cr(VI) by Opuntia biomass was highly pH dependent, favoring higher metal uptake at low pH. The higher biosorption capacity was exhibited at pH 2. The optimal conditions were obtained at a sorbent dosage of 1 g L−1 and initial metal concentration of 10 mg L−1. Biosorption kinetic data were properly fitted with the pseudo-second-order kinetic model. The rate constant, the initial biosorption rate, and the equilibrium biosorption capacity were determined. The experimental equilibrium data obtained were analyzed using two-parameter isotherm models (Langmuir, Freundlich, and Temkin). The Langmuir maximum monolayer biosorption capacity (q max) was 18.5 mg g−1 for cladodes and 16.4 mg g−1 for ectodermis. The results suggest that Opuntia biomass could be considered a promising low-cost biosorbent for the ecofriendly removal of Cr(VI) from aqueous systems.
机译:研究了仙人掌果实对仙人掌水溶液中六价铬对水溶液中六价铬的生物吸附作用。两种类型的生物质都被认为是低成本,天然和环保的生物吸附剂。进行批处理实验以确定在不同pH,初始Cr(VI)浓度和吸附剂量下Cr(VI)的生物吸附能力和生物吸附过程的效率。仙人掌生物质对Cr(VI)的生物吸附高度依赖pH,在低pH下有利于更高的金属吸收。在pH 2下表现出较高的生物吸附能力。以1 g L -1 为吸附剂,初始金属浓度为10 mg L -1 为最佳条件。生物吸附动力学数据与伪二级动力学模型正确拟合。确定了速率常数,初始生物吸附速率和平衡生物吸附容量。使用两参数等温线模型(Langmuir,Freundlich和Temkin)分析获得的实验平衡数据。包层的Langmuir最大单层生物吸附容量(q max)为18.5 mg g -1 ,外胚层为16.4 mg g -1 。结果表明,仙人掌生物质可以被认为是从水性体系中生态去除Cr(VI)的有前途的低成本生物吸附剂。

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