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作 者:邓兆龙 邓慧宇[1] 陈庆春[1] 賀沿沿 张小广[1] 那兵[1]
机构地区:[1]东华理工大学省部共建核资源与环境国家重点实验室培育基地,南昌330013
出 处:《功能材料》2017年第1期1099-1104,共6页Journal of Functional Materials
基 金:国家自然科学基金资助项目(51463001,21666002);江西省教育厅科技资助项目(GJJ13449)
摘 要:以端氨基超支化聚酰胺为水相单体,对苯二甲酰氯为油相单体,采用界面聚合法通过控制单体浓度制备出具有荷负电特征的超支化聚酰胺纳滤膜。该膜对1 000mg/L NaCl、Na_2SO_4、MgCl_2、MgSO_4的脱除顺序为Na_2SO_4>MgSO_4>MgCl_2>NaCl,对硫酸钠的脱除率为73.5%。在明确该膜分离特征的基础上,着重考察了操作压力、Mg^(2+)浓度等因素对纳滤膜吸附镁离子性能的影响。结果表明,增大操作压力和进料液浓度均有助于缩短膜吸附达到平衡的时间,且吸附量略有增大;动力学模拟结果表明该膜的吸附动力学比较符合准一级动力学模型;并且理论分析初步表明镁离子主要吸附在膜表面及孔内部。A negatively charged nanofiltration membrane was prepared by interfacial polymerization of amino-terminated hyperbranched polyamide (monomer in aqueous phase) with 1,4-benzenedicarbonyl dichloride (monomer in oil phase) at certain concentration. The salts rejection order of this membrane for 1 000 mg/L NaCl, Na2SO4 ,MgCl2 and MgSO4 was MgCl2〉 MgSO4〉 Na2SO4〉 NaC1 and the rejection coefficient of Na2SO4was 73.5%. The effects of the operation pressure and the concentration of Mg2+ on the Mg2+ adsorption of the membrane were investigated. The results indicated that adsorption equilibrium time could be reduced by increasing the operation pressure or increasing the CMg2+ in feeding solution which can also enhance the adsorption capacity of the membrane for Mg2+. Pseudo-first-order kinetics model provided better fit to the adsorption data, however, which needs some modification. The data analysis also indicted that most Mg2+ deposited on the surface of the membrane and existed in the membrane pore.
分 类 号:TQ028.8[化学工程] TB324[一般工业技术—材料科学与工程]
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