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Cyclic Voltammetry and Oxidation Rate Studies of Ferrous Gluconate Complex Solutions for Preparation of Chitosan-Tripolyphosphate Microparticles

机译:含有葡萄糖苷葡萄糖酸盐复合溶液的循环伏安法和氧化速率研究,用于制备壳聚糖三聚磷酸盐微粒

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A proper understanding of the properties of iron could increase the effectiveness of programmes for alleviating iron deficiency. Recently, encapsulation has been considered an appropriate method for protecting iron from injurious reactions. However, several events may occur during encapsulation processes, including changes in the iron’s oxidation state. Oxidation of ferrous iron is not desirable since the intestines can only absorb iron in the ferrous form. In this study, a cyclic voltammetry method was applied to investigate the likelihood of ferrous gluconate oxidation for the preparation of chitosan-tripolyphosphate microparticles. Then, the electrochemical properties of ferrous gluconate were confirmed experimentally. The oxidation rate of ferrous gluconate is also discussed in this paper. All the experimental solutions were formulated in detail to produce conditions similar to those of microparticle production. Cyclic voltammetry analysis was conducted using a configuration of three electrodes connected to an electrochemical analyser. Graphite, platinum wire, and Ag/AgCl were employed as the auxiliary, working, and reference electrodes, respectively. The cyclic voltammetry results show that the observed potential for each anodic peak shifted negatively in the presence of chitosan and sodium tripolyphosphate. Moreover, the rate of ferrous oxidation tended to increase during 75?min of experiments due to the presence of chitosan and sodium tripolyphosphate. These behaviours indicate the transformation of ferrous iron to ferric iron during iron microparticle preparation. Furthermore, these findings suggest that spray drying is a preferable method to minimise the oxidation reaction.
机译:正确理解铁的性质可以增加节目减轻缺铁的有效性。最近,封装已被认为是保护来自有害反应的熨斗的适当方法。然而,在封装过程中可能发生几种事件,包括铁的氧化状态的变化。由于肠子只能在黑色形式吸收铁,因此不希望铁铁氧化是不可取的。在该研究中,应用循环伏安法方法以研究葡萄糖酸盐氧化的含有葡萄糖酸盐氧化的可能性,用于制备壳聚糖 - 三聚磷酸微粒。然后,实验证实了葡萄糖酸亚甘油酸的电化学性质。本文还讨论了葡萄糖酸盐的氧化速率。详细配制所有实验溶液,以产生与微粒产生类似的条件。使用连接到电化学分析仪的三个电极的配置进行循环伏安法分析。石墨,铂金属丝和Ag / AgCl分别用作辅助,加工和参考电极。循环伏安法结果表明,在壳聚糖和三聚磷酸钠的存在下,每个阳极峰的观察到的潜力呈负极。此外,由于壳聚糖和三聚磷酸钠的存在,氧化氧化率趋于增加75次实验。这些行为表明铁微粒制备期间铁铁转化为铁铁。此外,这些发现表明喷雾干燥是最小化氧化反应的优选方法。

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