School of Chemical Sciences, Mahatma Gandhi University, Kottayam 686560, Kerala, India.
Langmuir. 2012 Sep 4;28(35):12744-52. doi: 10.1021/la302347k. Epub 2012 Aug 20.
This work illustrates the potential use of PEI/PSS bilayers assembled via layer by layer (lbl) method on a nylon microfiltration membrane for the recovery of phosphate from water in the presence of chloride under ultrafiltration conditions. A total of nine bilayers were used for the selective recovery of phosphate. Bilayers were constructed from polyelectrolyte solutions of varying ionic strength (0-1 M of NaCl). The selected pH for deposition of PEI (5.9) and the presence of supporting salt in the polyelectrolyte solution is expected to provide membranes with high permeability and high charge density. This particular combination of bilayers yielded high flux membranes that allowed selective removal of H(2)PO(4)(-) in the presence of Cl(-) at low pressure (0.28 bar). The magnitude of negative solute rejection of chloride showed increasing trend with the number of bilayer for a particular salt concentration. Whereas the increase in magnitude with ionic strength is so high (-6.18 to -269.17 at 0.5 M NaCl for 9 bl) that gave the best observed Cl(-)/H(2)PO(4)(-) selectivity (310.23, flux 13.53 m(3)/m(2)-day). To the best of our knowledge, this is the first time a multilayer polyelectrolyte system with such a high selectivity and rejection for H(2)PO(4)(-) is reported. The solution flux decreased with the number of bilayers and ionic strength. The rejection of phosphate was dependent on feed pH, concentration of deposited polyelectrolyte solution, and composition of membrane support.
这项工作说明了通过层层(lbl)方法在尼龙微滤膜上组装聚(乙撑亚胺)/聚(磺酸钠)双层膜,在超滤条件下,在存在氯化物的情况下从水中回收磷酸盐的潜在用途。总共使用了 9 层双层膜来选择性地回收磷酸盐。双层膜是由不同离子强度的聚电解质溶液构建而成(0-1 M 的 NaCl)。选择沉积聚(乙撑亚胺)的 pH 值(5.9)和聚电解质溶液中支撑盐的存在,预计可为膜提供高渗透性和高电荷密度。这种特殊的双层膜组合产生了高通量膜,允许在低压(0.28 巴)下选择性地去除 Cl-存在下的 H2PO4-。在特定盐浓度下,随着双层膜数量的增加,对 Cl-的溶质排斥程度呈增加趋势。而随着离子强度的增加,这种趋势非常高(在 0.5 M NaCl 下从-6.18 到-269.17,对于 9 个双层膜),这给出了观察到的最佳 Cl--H2PO4-选择性(310.23,通量 13.53 m3/m2-day)。据我们所知,这是首次报道具有如此高的 H2PO4-选择性和排斥性的多层聚电解质系统。溶液通量随双层膜数量和离子强度的增加而降低。磷酸盐的排斥率取决于进料 pH 值、沉积聚电解质溶液的浓度以及膜支撑物的组成。