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首页> 外文期刊>Chemical engineering journal >Fabrication of the polysulfone-based composite ultrafiltration membranes for the adsorptive removal of heavy metal ions from their contaminated aqueous solutions
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Fabrication of the polysulfone-based composite ultrafiltration membranes for the adsorptive removal of heavy metal ions from their contaminated aqueous solutions

机译:基于聚砜的复合超滤膜的制备,用于污染水溶液中重金属离子的吸附去除

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The polysulfone-based ultrafiltration membranes were synthesized by the phase inversion method with the varying ratios of composites for the efficient removal of heavy metal ions from their contaminated solutions. The membranes were characterized in terms of porosity, permeability, average pore size, contact angle, zeta po-tential, flux regeneration, and mechanical strength. The surface morphology of the membranes were analyzed by the field emission scanning electron microscope. The fluxes of the membranes were tested at the different transmembrane pressures of 1.5-3.5 kg cm(-2). The lead ion (Pb2+) removal efficiencies of the membranes were investigated for the solutions of initial concentration 50 mg L-1 at a fixed pH value of 5.42. The effect of the feed concentrations on the overall adsorption capacity was investigated by varying the initial feed concentrations from 50 to 200 mg L-1. The highest adsorption capacity was obtained as 279.63 mg g(-1) for the feed con-centration of 200 mg L-1, and the permeate flux of 1.65 mL min(-1). However, the lower feed concentration and the lower flux were advantageous for the long time functioning of the membrane with its higher efficiency without regeneration. The breakthrough curves for the Pb2+ adsorption processes were generated, and the experimental results were compared with the Thomas model. A mixture of heavy metal ions contaminated solutions was passed through the most appropriate membrane (in terms of adsorption capacity) to investigate the effect of co-existing metal ions on the adsorption capacities of lead ions. The removal efficiencies of the membrane for the different metal ions followed the trend like Pb2+ > Cu2+ > Cd2+ > approximate to Fe2+.
机译:通过相位转化方法合成聚砜的超滤膜,其复合材料的变化比例可以从其污染的溶液中有效地除去重金属离子。膜的特征在于孔隙率,渗透性,平均孔径,接触角,Zeta po-rential,通量再生和机械强度方面。通过现场发射扫描电子显微镜分析膜的表面形态。在不同的跨膜压力下在1.5-3.5kg cm(-2)的不同跨膜压力下测试膜的助熔剂。研究了膜的铅离子(PB2 +)去除膜的初始浓度50mg L-1的溶液,固定pH值为5.42。通过改变50至200mg L-1的初始进料浓度来研究进料浓度对整体吸附能力的影响。获得最高的吸附能力为279.63mg(-1),用于饲料的浓度为200mg l-1,渗透物通量为1.65mL min(-1)。然而,较低的进料浓度和下助焊剂对于膜的长时间运作具有较高的效率而无需再生。产生PB2 +吸附过程的突破性曲线,与托马斯模型进行比较实验结果。重金属离子污染溶液的混合物通过最合适的膜(在吸附能力方面)来研究共存金属离子对铅离子的吸附能力的影响。不同金属离子的膜的去除效率遵循Pb2 +> Cu 2 +> Cd2 +>近似的趋势。

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