王亚丽, 杨宁, 崔素萍, 韦奇. 高炉渣对废水中Cu2+的吸附率和吸附行为[J]. 北京工业大学学报, 2021, 47(2): 186-193. DOI: 10.11936/bjutxb2019090020
    引用本文: 王亚丽, 杨宁, 崔素萍, 韦奇. 高炉渣对废水中Cu2+的吸附率和吸附行为[J]. 北京工业大学学报, 2021, 47(2): 186-193. DOI: 10.11936/bjutxb2019090020
    WANG Yali, YANG Ning, CUI Suping, WEI Qi. Adsorption Rate and Adsorption Behavior of Cu2+ in Wastewater by Blast Furnace Slag[J]. Journal of Beijing University of Technology, 2021, 47(2): 186-193. DOI: 10.11936/bjutxb2019090020
    Citation: WANG Yali, YANG Ning, CUI Suping, WEI Qi. Adsorption Rate and Adsorption Behavior of Cu2+ in Wastewater by Blast Furnace Slag[J]. Journal of Beijing University of Technology, 2021, 47(2): 186-193. DOI: 10.11936/bjutxb2019090020

    高炉渣对废水中Cu2+的吸附率和吸附行为

    Adsorption Rate and Adsorption Behavior of Cu2+ in Wastewater by Blast Furnace Slag

    • 摘要: 工业固废高炉渣对废水中的重金属离子表现出了较好的吸附能力,为了深入了解高炉渣对Cu2+的吸附效果,在研究高炉渣的用量、pH、吸附时间和温度对废水中Cu2+吸附率的影响规律基础上,选取四因素三水平正交设计实验,获得吸附Cu2+的最佳反应条件,并利用吸附等温模型和吸附动力学探讨高炉渣对Cu2+的吸附行为.结果表明:高炉渣表面的吸附位点、较大的比表面积以及发达的孔隙结构能够促进Cu2+的吸附.在高炉渣用量为0.5 g、pH为9、吸附时间为360 min、温度为65℃时,去除率可达99.93%,吸附后溶液中Cu2+的残余质量浓度小于1 mg/L,达到了国家排放标准.高炉渣对Cu2+的吸附更符合Langmuir吸附等温模型,吸附动力学过程更符合拟二级动力学方程.

       

      Abstract: The industrial solid waste blast furnace slag shows a good adsorption capacity for heavy metal ions in wastewater. To understand the adsorption effect of blast furnace slag on Cu2+, based on the influence of the consumption of industrial solid waste blast furnace slag, pH value, adsorption time and temperature on the adsorption rate of Cu2+ in wastewater, four factors and three levels orthogonal designed experiments were selected. The optimum reaction conditions for Cu2+ adsorption were obtained, and the adsorption isotherm model and adsorption kinetics were used to study the adsorption behavior of Cu2+ on blast furnace slag. Results show that the adsorption sites, large specific surface area and developed pore structure on the surface of blast furnace slag can promote the adsorption of Cu2+. The removal rate can reach 99.93% when the slag consumption is 0.5 g, the pH value is 9, the adsorption time is 360 min, and the temperature is 65℃. The residual mass concentration of Cu2+ in the adsorbed solution is less than 1 mg/L, which meets the national emission standard. The adsorption isotherm model of blast furnace slag for Cu2+ is more in line with Langmuir adsorption isotherm model. The adsorption of Cu2+ by blast furnace slag is more in accordance with pseudo-second-order kinetic equation.

       

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