首页> 外文期刊>Journal of Applied Polymer Science >Preparation and Performance of N,O-Carboxymethyl Chitosan-Polyether Sulfone Composite Nanofiltration Membrane in the Separation of Nickel Ions from Aqueous Solutions
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Preparation and Performance of N,O-Carboxymethyl Chitosan-Polyether Sulfone Composite Nanofiltration Membrane in the Separation of Nickel Ions from Aqueous Solutions

机译:N,O-羧甲基壳聚糖-聚醚砜复合纳滤膜在水溶液中镍离子分离中的制备及性能

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摘要

Nanofiltration (NF) is considered to be an intermediate process between ultrafiltration (UF) and reverse osmosis (RO). In the present work, chitosan derivative containing carboxylic acid group (-COOH), i.e. N,O-carboxymethyl chitosal (NOCC), is prepared. Then, the NOCC composite NF membrane having a polyether sulfone (PES) UF membrane as the substrate is prepared using a method of coating and crosslinking, in which glutaraldehyde solution is used as the crosslinking agent. The developed membranes are characterized in terms of Fourier transform infrared/attenuated total reflectance (FTIR/ATR), scanning electron microscopy/energy dispersive V ray analysis (SEM/EDXA), elemental analysis (EA), swelling behavior, tensile strength, and thermogravimetric analysis (TGA), which confirm the formation of the target membranes. Rejection efficiency of nickel ions from aqueous Solutions, of nickel sulfate and nickel chloride, is investigated. The experiments are carried Out for different feed concentrations, feed flow rates and applied pressures and the corresponding permeate flux and rejections are measured. The maximum observed rejection is found to be 80 and 62 of 5 ppm, 78 and 59, of 10 ppm; and 74 and 57 of 50 ppm feed concentration of nickel sulfate-water and nickel chloride-water systems, respectively. The observed order of the separation of the nickel salts is NiSO4 and NiCl2. (c) 2008 Wiley Periodicals, Inc. J Appl Polym Sci 110: 3596-3605, 2008
机译:纳滤 (NF) 被认为是超滤 (UF) 和反渗透 (RO) 之间的中间过程。本工作制备了含有羧酸基团(-COOH)的壳聚糖衍生物,即N,O-羧甲基壳聚糖(NOCC)。然后,采用以聚醚砜(PES)UF膜为基底的NOCC复合NF膜,采用包覆交联的方法制备,其中以戊二醛溶液为交联剂。所开发的膜从傅里叶变换红外/衰减全反射率(FTIR/ATR)、扫描电子显微镜/能量色散V射线分析(SEM/EDXA)、元素分析(EA)、膨胀行为、拉伸强度和热重分析(TGA)等方面进行了表征,证实了目标膜的形成。研究了硫酸镍和氯化镍水溶液中镍离子的截留效率。针对不同的进料浓度、进料流量和施加的压力进行实验,并测量相应的渗透通量和截留率。观察到的最大拒绝率为 5 ppm 的 80% 和 62%,10 ppm 的 78% 和 59%;硫酸镍-水和氯化镍-水系统的 50 ppm 进料浓度分别为 74% 和 57%。观察到的镍盐分离顺序是 NiSO4 和 NiCl2.(c) 2008 Wiley Periodicals, Inc. J Appl Polym Sci 110: 3596-3605, 2008

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