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Biosorption potential and kinetic studies of vegetable waste mixture for the removal of Nickel(II)

机译:蔬菜废料混合物去除镍的生物吸附潜力和动力学研究

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Biosorption potential of new low cost biosorbent prepared from vegetable waste, composed of 1:1 mixture of potato and carrot peels for the removal of Ni(II) from aqueous solution was determined. The residual metallic ion concentrations were determined using an atomic absorption spectrophotometric technique (AAS). Batch experiments were conducted to optimize parameters such as initial pH, temperature, contact time, initial metal ion concentration and biosorbent dose and the results showed that maximum adsorption of Nickel (79.32 %) occurs when the contents were stirred for 75 min with 3.0 g of biosorbent at 35 °C and pH 4. Kinetic studies of the reaction revealed that it follows a pseudo-second order reaction. The experimental results were analyzed in terms of Langmuir and Freundlich isotherms. The Langmuir isotherm model fits well to data of Ni(II) biosorption by the prepared biomass as compared to the model of Freundlich. Both neat and Ni loaded biosorbent samples were analyzed by AAS using a dry ashing process in a furnace and also by use of a FT-IR spectrophotometer and an X-Ray florescence spectrometer in order to confirm the biosorption of Ni(II) and the results have revealed that a significant amount of Ni is present in the spent biosorbent.
机译:确定了由蔬菜废料制备的新型低成本生物吸附剂的生物吸附潜力,该吸附剂由马铃薯和胡萝卜皮的1:1混合物组成,用于从水溶液中去除Ni(II)。使用原子吸收分光光度法(AAS)测定残留的金属离子浓度。进行了分批实验以优化诸如初始pH,温度,接触时间,初始金属离子浓度和生物吸附剂量等参数,结果表明,当将内容物与3.0 g的物质一起搅拌75分钟时,镍的最大吸附(79.32%)发生。生物吸附剂在35°C和pH 4下进行。反应动力学研究表明,该反应遵循假二级反应。根据Langmuir和Freundlich等温线分析了实验结果。与Freundlich模型相比,Langmuir等温线模型非常适合所制备生物质对Ni(II)的生物吸附数据。使用AAS在炉中使用干灰化过程以及使用FT-IR分光光度计和X射线荧光光谱仪对纯净和负载Ni的生物吸附剂样品进行分析,以确认Ni(II)的生物吸附和结果已经揭示了废生物吸附剂中存在大量的Ni。

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