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首页> 外文期刊>Scientific Research and Essays >Ion exchange kinetics of some heavy metals from aqueous solutions onto poly (acrylic acid-acrylonitrile) potassium titanate
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Ion exchange kinetics of some heavy metals from aqueous solutions onto poly (acrylic acid-acrylonitrile) potassium titanate

机译:水溶液中一些重金属到聚(丙烯酸-丙烯腈)钛酸钾上的离子交换动力学

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摘要

Heavy metals released by a number of industrial processes are major pollutants. Ground, industrial and even treated wastewaters, heavy metals can be extremely toxic as they damage nerves, liver, kidney and bones. So, our work was concerned to prepare composite inorganic-organic absorbers which represent a group of inorganic ion exchangers modified using binding organic materials. Polyacrylonitrile (PAN) has been used as a universal binding polymer for a number of inorganic ion exchangers. Acrylic acid-acrylonitrile (AA-AN) comonomer mixture was prepared at the optimum copolymerization process and potassium titanate was synthesized by adding 200 ml of 2.2 M TiCl4,and 800 ml of 2.8 M KOH were prepared and mixed with constant stirring to the 1000 ml of AA-AN. These composites have been tested for separation of various contaminants from aqueous solutions. Their high selectivity and sorption efficiency are advantageous for treatment of various industrial waste waters. The kinetic of lead (Pb2+), cadmium (Cd2+) and zinc (Zn2+) ions on the prepared material were studied by applying the Nernest-plank equation. The rate of exchange is controlled by particle diffusion mechanism. The physical thermodynamic parameters such as activation energy and entropy of activation have been evaluated. The selectivity order towards the ions was found: Pb (II) & Cd (II) & Zn (II).
机译:许多工业过程释放的重金属是主要污染物。地面,工业甚至经过处理的废水中的重金属可能会破坏神经,肝脏,肾脏和骨骼,因此具有极强的毒性。因此,我们的工作涉及制备复合无机-有机吸收剂,该吸收剂代表一组使用粘合有机材料改性的无机离子交换剂。聚丙烯腈(PAN)已被用作许多无机离子交换剂的通用粘合聚合物。在最佳共聚过程中制备丙烯酸-丙烯腈(AA-AN)共聚单体混合物,并通过添加200 ml 2.2 M TiCl4合成钛酸钾,并制备800 ml 2.8 M KOH,并在不断搅拌下混合至1000 ml AA-AN。这些复合材料已经过测试,可以从水溶液中分离出各种污染物。它们的高选择性和吸附效率有利于处理各种工业废水。应用Nernest-plank方程研究了铅(Pb2 +),镉(Cd2 +)和锌(Zn2 +)在所制备材料上的动力学。交换速率由颗粒扩散机制控制。已经评估了物理热力学参数,例如活化能和活化熵。发现对离子的选择性顺序:Pb(II)> Pb(II)。镉(II)锌(II)。

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