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Removal of metal ions and humic acids through polyetherimide membrane with grafted bentonite clay

机译:接枝膨润土通过聚醚酰亚胺膜去除金属离子和腐殖酸

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摘要

Functional surfaces and polymers with branched structures have a major impact on physicochemical properties and performance of membrane materials. With the aim of greener approach for enhancement of permeation, fouling resistance and detrimental heavy metal ion rejection capacity of polyetherimide membrane, novel grafting of poly (4-styrenesulfonate) brushes on low cost, natural bentonite was carried out via distillation-precipitation polymerisation method and employed as a performance modifier. It has been demonstrated that, modified bentonite clay exhibited significant improvement in the hydrophilicity, porosity, and water uptake capacity with 3 wt. % of additive dosage. SEM and AFM analysis showed the increase in macrovoides and surface roughness with increased additive concentration. Moreover, the inclusion of modified bentonite displayed an increase in permeation rate and high anti-irreversible fouling properties with reversible fouling ratio of 75.6%. The humic acid rejection study revealed that, PEM-3 membrane having rejection efficiency up to 87.6% and foulants can be easily removed by simple hydraulic cleaning. Further, nanocomposite membranes can be significantly employed for the removal of hazardous heavy metal ions with a rejection rate of 80% and its tentative mechanism was discussed. Conspicuously, bentonite clay-bearing poly (4-styrenesulfonate) brushes are having a synergistic effect on physicochemical properties of nanocomposite membrane to enhance the performance in real field applications.
机译:功能表面和具有分支结构的聚合物对膜材料的物理化学性质和性能具有重大影响。为了更绿色地提高聚醚酰亚胺膜的渗透性,抗结垢性和有害的重金属离子排斥能力,采用低成本的新型接枝聚(4-苯乙烯磺酸盐)刷,通过蒸馏-沉淀聚合方法进行了天然膨润土的接枝。用作性能改进剂。已经证明,改性的膨润土在3重量%的条件下在亲水性,孔隙率和吸水能力方面显示出显着的改善。添加剂用量的%。 SEM和AFM分析表明,随着添加剂浓度的增加,大孔和表面粗糙度也增加。此外,包含改性膨润土显示出渗透率的增加和高的不可逆结垢性能,可逆结垢比率为75.6%。腐殖酸排斥研究表明,PEM-3膜具有高达87.6%的排斥效率,并且可以通过简单的水力清洁轻松去除污垢。此外,纳米复合膜可以显着地用于去除有害重金属离子,排阻率为80%,并探讨了其初步机理。明显地,带有膨润土的聚(4-苯乙烯磺酸盐)刷对纳米复合膜的物理化学性质具有协同作用,以增强其在实际应用中的性能。

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