A Comparison of Production Methods of High-Purity Perrhenic Acid from Secondary Resources

D. Kopyto, Mateusz Ciszewski, Szymon Orda, K. Leszczyńska-Sejda, Joanna Malarz, Patrycja Kowalik, Karolina Pianowska, Karolina Goc, G. Benke, Alicja Grzybek, D. Babilas, P. Dydo
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Abstract

Methods for obtaining high-purity perrhenic acid (with metallic impurities content below 100 ppm) of a high concentration > 200 g/dm3 and entirely from secondary raw materials were compared. Comparative analyses of three methods were performed: electrodialysis, solvent extraction (research carried out directly as part of the Small Grant project acronym RenMet), and ion-exchange (developed as part of previous projects implemented by Łukasiewicz-IMN). The basic process parameters were selected as comparative indicators: efficiency and selectivity of the process, purity of the obtained product, availability and consumption of raw materials and reagents, equipment necessary to carry out the process, the profitability of the technology, and the ecological aspects, i.e., the possibility of managing the generated solid waste and post-production solutions. Analysis of the verified indicators allowed us to select the most economically and ecologically advantageous method of obtaining high-purity perrhenic acid from secondary raw materials. Its preparation using the ion-exchange method emphasizes the product’s purity and the process’s simplicity, using readily available waste materials and renewable ion-exchange resin, and is based on a sustainable circular economy.
利用二次资源生产高纯度过铼酸的方法比较
对完全从二次原料中获得高浓度大于 200 克/立方米的高纯度过铼酸(金属杂质含量低于 100 ppm)的方法进行了比较。对三种方法进行了比较分析:电渗析法、溶剂萃取法(作为小额赠款项目缩写 RenMet 的一部分直接开展的研究)和离子交换法(作为 Łukasiewicz-IMN 以前实施的项目的一部分开发的)。我们选择了基本工艺参数作为比较指标:工艺的效率和选择性、所得产品的纯度、原材料和试剂的可用性和消耗量、实施工艺所需的设备、技术的盈利能力以及生态方面,即管理产生的固体废物和生产后解决方案的可能性。通过对验证指标的分析,我们选择了从二次原料中获得高纯度过铼酸的最经济、最环保的方法。使用离子交换法制备高纯度过铼酸强调了产品的纯度和工艺的简便性,使用的是现成的废料和可再生的离子交换树脂,并以可持续的循环经济为基础。
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