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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A modified anion-exchange membrane applied to purification of effluent containing different anions.Pre-treatment before desalination
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A modified anion-exchange membrane applied to purification of effluent containing different anions.Pre-treatment before desalination

机译:一种改性的阴离子交换膜,用于纯化含有不同阴离子的废水。脱盐前的预处理

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Previous works have been made on the improvement of selectivity of ion-exchange membranes using organic macrocation adsorbant on the surface of the materials.The formation of a smooth layer on the surface of an ion-exchange membrane plays a role of a repulsive barrier towards ions of high valences.The modification of the surface material in the case of an anion-exchange membrane concerns the hydropnilic/hydrophobic balance properties and its relationship with the hydration state.Starting from this goal,an anion-exchange membrane has been modified by adsorption of branched polyethyleneimine.This modification permits to achieve separation and concentration of sulfuric,nitric and hydrochloric acids from acidic effluents which are rejected generally in the sea and may affect the efficiency of the desalination process.The low selectivity obtained towards SO_4~(2-) anion allowed separation with nitrate and chloride anions in electrodialysis.A commercial anion-exchange membrane ARA favoured the transfer of monovalent acids.The transference of the three acids follow the sequence HNO3 > HCl > H2SO4.However,an increase of concentration of the initial acid leads to its decrease in an anodic compartment.This is due to a leakage of protons in the opposite direction of anions.The modification of the anion-exchange membrane leads to a reduction of transfer of divalent anions and thus to acidity.On the other hand,the higher the concentration of acid,the lower the transference number of anions.
机译:在材料表面上使用有机大阳离子吸附剂改善离子交换膜的选择性方面已经进行了以前的工作。在离子交换膜表面上形成光滑层起着排斥离子的作用。阴离子交换膜的表面材料改性涉及亲水/疏水平衡特性及其与水化状态的关系。从这个目标出发,阴离子交换膜通过吸附这种修饰可以实现酸性废水中硫酸,硝酸和盐酸的分离和浓缩,而酸性废水通常在海中被排除,并可能影响脱盐过程的效率。对SO_4〜(2-)阴离子的选择性低允许在电渗析中与硝酸根和氯离子分离。商用阴离子交换膜ARA有利于t一价酸的转移。三种酸的转移遵循HNO3> HCl> H2SO4的顺序,但是初始酸浓度的增加导致其在阳极室中的减少,这是由于质子在质子中的泄漏所致。阴离子交换膜的改性导致二价阴离子的转移减少,从而导致酸度降低。另一方面,酸的浓度越高,阴离子的转移数越低。

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