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比较磷酸钛离子交换剂对铅(II)和锌(II)的吸附动力学。

Comparison of The Sorption Kinetics of Lead(II) and Zinc(II) on Titanium Phosphate Ion-Exchanger.

机构信息

Tananaev Institute of Chemistry-Subdivision of The Federal Research Centre "Kola Science Centre of The Russian Academy of Sciences" (ICT KSC RAS), «Academic town» 26a, Apatity 184209, Murmansk region, Russia.

出版信息

Int J Mol Sci. 2020 Jan 10;21(2):447. doi: 10.3390/ijms21020447.

Abstract

The treatment of heavy metal-contaminated wastewater is an important action to reduce The negative impacts of industrial wastes on water bodies. This work focuses on The application of a low-cost titanium (IV) phosphate sorbent of TiO(OH)HPO42HO chemical composition toward lead and zinc ions depending on their concentration and The temperature of The solution. The kinetic studies showed that The values of The rate of intraparticle diffusion and The effective diffusion coefficients for Zn were considerably higher than those for Pb. To explain The difference between The sorption kinetics rates for Pb and Zn, The effective radius and dehydration degree of The adsorbed ions were calculated. The sorbent capability of The lead and zinc ion removal and its excellent efficiency in The presence of a high concentration of calcium ions were demonstrated using simulated mine water. Due to The fast kinetics and The high exchange capacity of titanium phosphate toward divalent ions, this sorbent can be considered as a promising material for The concentration and immobilization of heavy metals into The phosphate matrix.

摘要

重金属污染废水的处理是减少工业废物对水体负面影响的重要措施。本工作重点研究了 TiO(OH)HPO42HO 化学组成的低成本钛(IV)磷酸盐吸附剂对铅和锌离子的应用,取决于其浓度和溶液温度。动力学研究表明,锌的内扩散速率值和有效扩散系数明显高于铅。为了解释铅和锌吸附动力学速率之间的差异,计算了吸附离子的有效半径和脱水程度。采用模拟矿山废水证明了该吸附剂对铅和锌离子去除的能力及其在高浓度钙离子存在下的优异效率。由于钛磷酸盐对二价离子的快速动力学和高交换容量,该吸附剂可被视为将重金属浓缩和固定在磷酸盐基质中的有前途的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5814/7013848/838667fd00dc/ijms-21-00447-g0A1.jpg

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