Kinerja Analitik Mikrokapsul Magnetit - Alginat (MNPs-ALG) untuk Analisis Ion Logam Cu(II) dan Aplikasinya pada Sampel Alam

Ika Yekti Lianasari, Aman Sentosa Panggabean, Bohari Yusuf, Alimuddin, Soerja Koesnarpadi
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Abstract

Research has been carried out regarding the synthesis of Magnetite-Alginate microcapsules (MNPs-ALG) and applied to Cu (II) metal ions. The nature of magnetic nanoparticles, Fe3O4 which easily form aggregations can be overcome by this encapsulation process, but a very efficient separation process is also very much needed in the analytical separation process.The process of making magnetite nanoparticle compounds is carried out first using FeCl2.4H2O and FeCl3.6H2O and adding concentrated ammonia at a temperature of 90οC until the solution becomes blackish in color. The dry magnetite, Fe3O4, nanoparticles were then dissolved in distilled water and thickened with Na-Alginate then dropped slowly into a 1 M CaCl2 solution. The results of characterization using SEM showed that there were differences in morphology before and after contact, and there was 0.98% mass of Cu elements on the EDS results.The microcapsule adsorption optimization test gave results for the best adsorption percentage >90% on a mass variation of magnetite (MNPs) of 0.3 grams; pH 5; contact time of 30 minutes and retention capacity of 185.95 mg/gram, at a Cu(II) concentration of 800 ppm. Analytical performance shows the best results with linearity parameters with a correlation coefficient of 0.999; the detection limit and quantitation limit are 0.0516 ppb and 0.1720 ppb with a lifetime of four times. The application of samples in the form of river water samples shows a percent recovery value of around >90%, indicating that there is no matrix that significantly influences the measurements.
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磁铁矿-藻酸盐微胶囊(MNPs-ALG)分析铜(II)金属离子的性能及其在天然样品中的应用
已经开展了有关磁铁矿-海藻酸盐微胶囊(MNPs-ALG)合成的研究,并将其应用于 Cu (II) 金属离子。首先使用 FeCl2.4H2O 和 FeCl3.6H2O,然后在 90οC 的温度下加入浓氨水,直到溶液变成黑色。然后将干燥的磁铁矿(Fe3O4)纳米颗粒溶解在蒸馏水中,并用 Na-Alginate 增稠,然后缓慢滴入 1 M CaCl2 溶液中。微胶囊吸附优化测试结果表明,在 Cu(II)浓度为 800 ppm 时,磁铁矿(MNPs)的质量变化为 0.3 克;pH 值为 5;接触时间为 30 分钟;滞留能力为 185.95 毫克/克,最佳吸附率大于 90%。分析性能显示出最佳结果,线性相关系数为 0.999;检测限和定量限分别为 0.0516 ppb 和 0.1720 ppb,寿命为四倍。对河水样品的应用显示,回收率约大于 90%,表明没有基质对测量结果产生重大影响。
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