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作 者:袁怡 王嘉欣 刘方荣 白盼盼 YUAN Yi;WANG Jiaxin;LIU Fangrong;BAI Panpan(School of Environmental Science and Engineering,Suzhou University of Science and Technology,Suzhou 215009,China;Jiangsu Collaborative Innovation Center of Water Treatment and Materials,Suzhou 215009,China;Nation and Local Joint Engineering Laboratory of Urban Domestic Sewage Resource Utilization Technology,Suzhou 215009,China;Suzhou CPS Technology Co.,Ltd.,Suzhou 215121,China)
机构地区:[1]苏州科技大学环境科学与工程学院,苏州215009 [2]江苏省水处理技术与材料协同创新中心,苏州215009 [3]城市生活污水资源化利用技术国家地方联合工程实验室,苏州215009 [4]苏州依斯倍环保装备科技有限公司,苏州215121
出 处:《给水排水》2024年第9期99-107,共9页Water & Wastewater Engineering
基 金:2023年江苏省科技副总项目(FZ20230446)。
摘 要:采用粉末活性炭(PAC)-管式微滤膜(TMF)耦合工艺处理某电子厂的电镀锡废水,分析了影响PAC-TMF运行的重要因素。在单因素的基础上采用Box-Behnken组合设计法建立数学模型对运行条件进行优化。结果表明:该耦合工艺对Sn^(2+)去除效果大于对COD去除效果。在PAC投加量290 mg/L,错流速度3.5 m/s,产水浓水比1∶25时,COD与Sn^(2+)去除效果较好,分别为80.7%和89.1%,试验数据与模型预测吻合较好,能指导实际生产。The PAC-TMF coupling process was used to treat electroplating tin wastewater in an electronics factory,and the important factors affecting the operation of PAC-TMF were analyzed.On the basis of single factor,Box-Behnken combined design method is used to establish a mathematical model to optimize the operating conditions.The results show that the effect of the coupling process on Sn^(2+)removal is greater than that on COD removal.When PAC dosage is 290 mg/L,crossflow velocity is 3.5 m/s,and concentration ratio of produced water is 1∶25,the removal effect of COD and Sn^(2+)is better,which is 80.7%and 89.1%,respectively.The experimental data are in good agreement with the prediction model,which could guide the actual production.
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