高铁酸盐长期贮存的稳定性

IF 0.9 Q4 CHEMISTRY, MULTIDISCIPLINARY
Michaela Benköová, E. Mališová, P. Peciar, Adam Guštafík, J. Híveš
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引用次数: 0

摘要

地表水和地下水受到药品、洗涤剂、杀虫剂和许多其他物质的污染。高铁酸盐的应用似乎是废水处理的一个前景选择,因为高铁酸盐不仅是强氧化剂,而且是一种优秀的消毒和混凝剂,可以分解许多稳定的无机、有机和生物化合物。它们分解的最终产物不包括致癌或有毒的产物。利用3D打印机对电化学制备的高铁酸钾封装在包装材料中的稳定性进行了监测。实验采用电化学法制备高铁酸钾,纯度分别为21.4%、63.5%和67.3%。高铁酸钾的稳定性监测为1个月,其他高铁酸盐的稳定性监测为3个月。并对不同贮藏条件下高铁酸盐样品进行了比较。贮藏条件对高铁酸盐的稳定性有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability of ferrate during long-term storage
Abstract Surface water and groundwater are polluted with pharmaceuticals, detergents, pesticides, and many other substances. Application of ferrates seems to be a perspective option for wastewater treatment as ferrates are not only powerful oxidizing agents but also an excellent disinfecting and coagulating agents decomposing many stable inorganic, organic, and biological compounds. Final products of their decomposition do not include carcinogenic or toxic products. In this paper, stability of electrochemically prepared potassium ferrate encapsulated in packaging materials printed on a 3D printer was monitored. In the experiment, electrochemically prepared potassium ferrate with different purity (21.4 %, 63.5 % and 67.3 %) was used. Stability of potassium ferrate was monitored for one month and that of other ferrates for three months. Different storage conditions of ferrate samples were also compared. Storage conditions had a significant influence on the ferrate stability.
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来源期刊
Acta Chimica Slovaca
Acta Chimica Slovaca CHEMISTRY, MULTIDISCIPLINARY-
自引率
12.50%
发文量
11
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