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Adsorption characteristics of both cationic and oxyanionic metal ions on hexadecyltrimethylammonium bromide-modified NaY zeolite

机译:十六烷基三甲基溴化铵修饰的NaY沸石对阳离子和氧阴离子金属离子的吸附特性

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In this study, we investigated the adsorption capacities and the mechanisms of adsorption of cationic [copper(II), zinc(II), nickel(II), lead(II), cadmium(II)] and oxyanionic [dichromate(-II), permanganate(-I)] metal ions onto hexadecyltrimethylammonium (HDTMA)-modified and unmodified NaY zeolites. To understand the surface characteristics of the modified adsorbents, we analyzed the NaY zeolite and the HDTMA-modified zeolite (HMZ) in terms of their surface areas, zeta potentials, Fourier transform infrared (FTIR), elemental composites and cation exchange capacities. The results reveal that HMZ behaved as a dual-electronic adsorbent. Because cationic heavy metals cannot replace the HDTMA forming admicelles on the external surface, the obtained adsorbent could simultaneously adsorb both cationic and anionic metal ions. We propose that ion exchange is the primary mechanism through which cationic metal ions adsorb onto the NaY zeolite-with adsorption capacities, dependent on the ion radius, following the order Pb >Cd >Cu >Zn >Ni. The mechanisms for the adsorption of the cationic and anionic metal ions onto HMZ include ion exchange and complexation reactions and/or surface precipitation, with the adsorption capacities of the cationic metal ions following the order Pb >Cu >Cd >Zn >Ni and those of anionic metal ions following the order MnO_4~(-) >Cr_2O_7~(2-).
机译:在这项研究中,我们研究了阳离子[铜(II),锌(II),镍(II),铅(II),镉(II)]和氧阴离子[重铬酸盐(-II)]的吸附能力及其吸附机理。 ,高锰酸盐(-I)]金属离子转移到十六烷基三甲基铵(HDTMA)改性和未改性的NaY沸石上。为了了解改性吸附剂的表面特性,我们分析了NaY沸石和HDTMA改性沸石(HMZ)的表面积,ζ电位,傅立叶变换红外(FTIR),元素复合物和阳离子交换容量。结果表明,HMZ表现为双电子吸附剂。由于阳离子重金属不能替代外表面上形成HDTMA的微粒,因此获得的吸附剂可以同时吸附阳离子和阴离子金属离子。我们提出离子交换是阳离子金属离子通过其吸附能力(取决于Pb> Cd> Cu> Zn> Ni>的吸附能力)的主要机理,其吸附能力取决于离子半径。阳离子和阴离子金属离子在HMZ上的吸附机理包括离子交换和络合反应和/或表面沉淀,其中阳离子金属离子的吸附能力依次为Pb> Cu> Cd> Zn> Ni和阴离子金属离子的顺序为MnO_4〜(-)> Cr_2O_7〜(2-)。

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