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Oyster Shell as a Low-Cost Adsorbent for Removing Heavy Metal Ions from Wastewater

机译:牡蛎壳作为从废水中除去重金属离子的低成本吸附剂

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Oyster shell powder is a potential adsorbent material that can be used to control pollution in groundwater. The current research objective is to evaluate the heavy metal ion adsorption properties by oyster shell powder in an aqueous solution. Three kinds of heavy metals (copper, cadmium, and lead) were adsorbed using oyster shell powder from aqueous solution. The effects of different temperatures, contact times, pH values, and initial concentrations were examined in order to optimize the conditions used for heavy metal decontamination. Cadmium and copper adsorption behaviours were suitable for modelling by the Langmuir isotherm, and lead adsorption behaviour was best modelled by the Freundlich isotherm. Adsorption situations fitted a pseudo second-order kinetic model. Intra-particular diffusion of heavy metal ions by oyster shell powder could be divided into two stages: rapid diffusion first, followed by a stable second stage. The maximum adsorption amount was ranked in an ascending order as that to copper, cadmium, and then lead for both single and competitive systems. The adsorption capacities of copper, cadmium, and lead ions by oyster shell powder were lower in a competitive system than in a single system, indicating that competitive adsorption could occur.
机译:牡蛎壳粉是一种潜在吸附材料,可用于控制地下水的污染。目前的研究目的是通过牡蛎壳粉末在水溶液中评价重金属离子吸附性能。使用来自水溶液的牡蛎壳粉末吸附三种重金属(铜,镉和铅)。研究了不同温度,接触时间,pH值和初始浓度的影响,以优化用于重金属去污的条件。镉和铜吸附行为适用于朗米尔等温线的建模,铅吸附行为最佳由Freundlich等温线建模。吸附情况适用于伪二阶动力学模型。牡蛎壳粉末的重金属离子的特定扩散可以分为两个阶段:首先快速扩散,然后是稳定的第二阶段。最大吸附量以升序排列为铜,镉,然后引导单一和竞争系统。铜,镉和铅离子的吸附能力在竞争系统中较低的牡蛎壳粉末较低,而不是在单一系统中,表明可能发生竞争性吸附。

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