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Preconcentration of phosphate ion onto ion-imprinted polymer

机译:将磷酸根离子预浓缩到离子印迹聚合物上

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摘要

In this study, selective separation and preconcentration of phosphate ions on the phosphate-imprinted chitosan-succinate beads have investigated. Chitosan-succinate, phosphate, epichlorohydrin were used as the complexing monomer, template and crosslinking agent, respectively. In the first step, chitosan was modified with succinic anhydrides and complex formation occurred between carboxylic acid functional groups and iron(III) ions. Secondly, Fe(III)-chitosan-succinate particles were reacted with phosphate ions. Afterwards, particles were crosslinked with epichlorohydrin and the template (phosphate ions) was removed using 1 M KOH solution. Selective cavity for the phosphate ion was obtained in the phosphate-imprinted metal-chelate polymer. These phosphate-imprinted metal-chelate polymer was used in the adsorption-desorption process. The adsorption process was fast and equilibrium was reached around 30 min. The adsorption behaviour of this system was described approximately by the Langmuir equation. Percent extraction, distribution ratio and selectivity coefficients of phosphate and other ions using non-imprinted and phosphate-imprinted polymer were also determined and comparison of these data was reported.
机译:在这项研究中,已经研究了磷酸盐印迹壳聚糖琥珀酸酯微珠上磷酸根离子的选择性分离和预富集。壳聚糖琥珀酸酯,磷酸盐,表氯醇分别用作络合单体,模板和交联剂。第一步,用琥珀酸酐对壳聚糖进行改性,并在羧酸官能团和铁(III)离子之间形成络合物。其次,使Fe(III)-壳聚糖-琥珀酸酯颗粒与磷酸根离子反应。之后,将颗粒与表氯醇交联,并使用1 M KOH溶液除去模板(磷酸根离子)。在磷酸盐印迹的金属螯合聚合物中获得了磷酸根离子的选择性腔。这些磷酸盐压印的金属螯合聚合物用于吸附-解吸过程。吸附过程很快,并且在30分钟左右达到平衡。该系统的吸附行为大致由Langmuir方程描述。还确定了使用非压印和磷酸盐压印聚合物提取磷酸盐和其他离子的百分比,分布比例和选择性系数,并报告了这些数据的比较。

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