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Hybrid anion conducting membranes (ACM) for industrial applications: Excellent salt removal efficiency and electro-chemical properties

机译:用于工业应用的杂化阴离子导电膜(ACM):优异的盐去除效率和电化学性能

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Graphical abstractDifferent properties of hybrid anion conducting membranes.Display OmittedHighlights?Hybrid anion conducting membrane shows excellent electro-chemical properties.?Ionic conductivity of membrane also improved and reaches to almost four times of its initial value.?Membrane shows 1.93×10?7cm2S?1methanol permeability with 3.662×105selectivity.AbstractThe manuscript demonstrates the synthesis of novel poly (2,6-dimethyl-1,4-phenylene oxide) based hybrid anion conducting membrane for efficient electro-membrane applications. The ACMs were synthesized by in situ reaction of 1-vinylimidazole on denser supported membrane matrix with the aid of (3-aminopropyltriethoxysilane). Synthesized hybrid membranes were designated as BPVI, BPVI, BPVI-AP-10, BPVI-AP-20, BPVI-AP-50 and BPVI-AP-80 accordingly with the quantity of (3-aminopropyltriethoxysilane). Membranes show excellent physicochemical properties like water uptake, ion exchange capacity and water kinetics inside the membrane. Ionic conductivity of the hybrid membrane also improved and reaches to almost four times of its initial value for BPVI-AP-80 membrane. Interpolation of the silica and surface morphology are investigated by TEM, shows the uniform distribution of silica throughout matrix. Membranes are also evaluated by methanol crossover resistance and salt removal efficiency. Methanol permeability and selectivity for BPVI-AP-80 membrane was calculated to the 1.93×10?7cm2S?1and 3.662×105. On the other hand, it shows 89.7% current efficiency and 0.985kWhkg?1power consumption during salt removal by electrodialysis for same membrane. Furthermore, the applicability of the membrane towards fuel cells and electrodialysis is potentially high.]]>
机译:<![cdata [ 图形摘要 混合阴离子导电膜的不同属性。 显示省略 突出显示 < CE:列表ID =“l0005”> 混合阴离子导电膜显示出优异的电化学特性。 膜的离子电导率也有所改善,达到其初始值的几乎四次。 膜显示1.93×10 ?7 cm 2 s ?1 < / Ce:sup>甲醇渗透率3.662×10 5 选择性。 抽象 手稿演示了合成基于新的聚(2,6-二甲基-1,4-亚苯基氧化物)的杂化阴离子导电膜,用于高效电膜应用。通过(3-氨基丙基三乙氧基三氧基硅烷)通过1-乙烯基咪唑的原位反应合成ACMS。合成的杂化膜被称为BPVI,BPVI,BPVI-AP-10,BPVI-AP-20,BPVI-AP-50和BPVI-AP-80,其量为(3-氨基丙基三乙氧基硅烷)。膜显示出优异的物理化学性质,如膜内的水吸收,离子交换能力和水动力学等。杂化膜的离子电导率还改善并达到其BPVI-AP-80膜的初始值的几乎四倍。通过TEM研究二氧化硅和表面形态的插值,显示出在基质中均匀分布二氧化硅。还通过甲醇交叉抗性和盐去除效率评估膜。 BPVI-AP-80膜的甲醇渗透性和选择性计算为1.93×10 α7 CM 2 s ?1 和3.662×10 5 。另一方面,它显示出89.7%的电流效率和0.985kwhkg Δ1电渗析在相同膜的盐除去期间的功耗。此外,膜对燃料电池和电渗析的适用性可能是潜在的。 ]]>

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