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首页> 外文期刊>Journal of the Iranian Chemical Society >Application of ion-imprinted polymer synthesized by precipitation polymerization as an efficient and selective sorbent for separation and pre-concentration of chromium ions from some real samples
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Application of ion-imprinted polymer synthesized by precipitation polymerization as an efficient and selective sorbent for separation and pre-concentration of chromium ions from some real samples

机译:将沉淀聚合化合成的离子印迹聚合物作为一种有效和选择性吸附剂,用于与一些真实样品的分离和预浓度的铬离子分离和预浓度

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摘要

In this study, a new Cr(III)-imprinted polymer (Cr(III)-IIP) is prepared from CrCl3 center dot 6H(2)O, methacrylic acid functional monomer, ethyleneglycoldimethacrylate cross-linking agent, 2,2E(1)-azobisisobutyronitrile radical initiator and 2,2-(azanediylbis (ethane-2,1-diyl))bis(isoindoline-1,3-dione) ligand. To obtain the maximum adsorption capacity, the optimum condition was studied through pH, type and concentration of eluent, IIP weight, sample volume as well as the adsorption and desorption times. The Cr(III) ion content was determined via flame atomic absorption spectrometer. In optimum conditions, the adsorption capacity of the IIP for Cr(III) was obtained to be 74.65 mg g(-1), using 50 mg of IIP and the initial pH solution of 3.0. Both the adsorption and desorption times for quantitative analyses of Cr(III) ions were 15 and 5 min; respectively. After elution of the adsorbed ions by 3 mL of 4 mol L-1 HNO3 aqueous solution, the established IIP-based SPE procedure provides a reasonable pre-concentration factor of 100. The IIP-based pre-concentration method provides a low detection limit of 1.7 A mu g L-1 with good repeatability (RSD = 3.22%). Reusability studies confirmed that synthesis IIP is reusable and recoverable up to six cycles. According to the selectivity experiments, it was concluded that the prepared sorbent possesses more affinity toward Cr(III) ions than other ions such as Al3+, Pb2+, Cu2+, Mn2+, Fe2+, Zn2+, and Ni2+ ions. To evaluate the potential applicability of the proposed separation method, the pre-concentration and determination of trace amounts of Cr(III) were performed successfully in food samples with complex matrices, a bestial sample (i.e. cow liver) and an herbal product (i.e., broccoli) as real samples.
机译:在该研究中,新的Cr(III)-Imprinted聚合物(Cr(iii)-iip)由CrCl3中心点6h(2)O,甲基丙烯酸官能单体,乙烯基丙烯二甲基丙烯酸酯交联剂,2,2e(1)制备 - 唑二异丁腈自由基引发剂和2,2-(氮杂胺(乙烷-2,1-二硫基))双(异吲哚-1,3-二酮)配体。为了获得最大吸附容量,通过pH,型和浓度,洗脱液,IIP重量,样品体积以及吸附和解吸时间来研究最佳状况。通过火焰原子吸收光谱仪测定Cr(III)离子含量。在最佳条件下,使用50mg IIP和3.0的初始pH溶液,获得Cr(III)的IIP的吸附容量为74.65mg g(-1),以及3.0的初始pH溶液。 Cr(III)离子的定量分析的吸附和解吸时间均为15%和5分钟;分别。在用3mL 4mol L-1 HNO3水溶液洗脱的吸附离子后,所建立的基于IIP的SPE程序提供合理的预浓度因子100.基于IIP的预浓度方法提供了低检测限1.7 A MU G L-1具有良好的重复性(RSD = 3.22%)。可重用性研究证实,合成IIP可重复使用,最多可恢复六个周期。根据选择性实验,得出结论,制备的吸附剂对Cr(III)离子具有比其他离子更具有亲和力,如Al 3 +,Pb2 +,Cu 2 +,Mn2 +,Fe 2 +,Zn2 +和Ni2 +离子。为了评估所提出的分离方法的潜在适用性,在具有复杂基质的食物样品中成功地进行痕量Cr(III)的预浓度和测定,复杂的基质,兽人样品(即牛肝)和草药产品(即,西兰花)作为真正的样本。

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