Fluorinated Diluents- A Review

IF 1.8 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
V. Babain, M. Alyapyshev, C. Ekberg, T. Todd
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Abstract

ABSTRACT The history of the development of fluorinated compounds as potential diluents in solvent extraction processes is described. Fluorinated diluents were first investigated in the former Soviet Union and later in the United States and Europe. Fluorinated diluents represent a class of compounds that can be used as primary diluents or as phase modifiers. They are of particular utility when extractant solubility is limited in traditional hydrocarbon diluents and a polar diluent is needed. The chemical and physical characterisitics of fluorinated diluents are provided for a broad range of compounds. Other properties such as toxidcity and resistance to radiolysis are described. Fluorinated compounds have been studied for over 40 years and have been used at industrial scale as a primary diluent for cesium and strontium extraction in Russia and as a phase modifer for an insustrial-scale cesium extraction process in the United States. The advantages and disadvantages of traditional hydrocarbon diluents are compared with chlorinated diluents, chlorinated and fluorinated diluents, and a number of different types of fluorinated diluents. Developing trends for teh use of fluorinated diluents in solvent extraction processes are discussed. This article should provide assistance to researchers investigating new or improved solvent extraction processes where traditional hydrocarbon diluents may not be appropriate.
氟化稀释剂综述
摘要介绍了氟化化合物在溶剂萃取过程中作为潜在稀释剂的发展历史。氟化稀释剂首先在前苏联进行了研究,后来在美国和欧洲进行了研究。氟化稀释剂是一类可用作初级稀释剂或相改性剂的化合物。当萃取剂在传统烃稀释剂中的溶解度有限,需要极性稀释剂时,它们特别有用。氟化稀释剂的化学和物理特性适用于各种化合物。描述了其他特性,如氧化性和抗辐射溶解性。对氟化化合物进行了40多年的研究,并已在工业规模上用作俄罗斯铯和锶萃取的初级稀释剂,在美国用作工业规模铯萃取过程的相改性剂。比较了传统烃稀释剂与氯化稀释剂、氯化和氟稀释剂以及几种不同类型的氟稀释剂的优缺点。讨论了氟化稀释剂在溶剂萃取过程中应用的发展趋势。这篇文章应该为研究新的或改进的溶剂萃取工艺的研究人员提供帮助,传统的碳氢化合物稀释剂可能不合适。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.40
自引率
5.00%
发文量
15
审稿时长
8.4 months
期刊介绍: Solvent Extraction and Ion Exchange is an international journal that publishes original research papers, reviews, and notes that address all aspects of solvent extraction, ion exchange, and closely related methods involving, for example, liquid membranes, extraction chromatography, supercritical fluids, ionic liquids, microfluidics, and adsorption. We welcome submissions that look at: The underlying principles in solvent extraction and ion exchange; Solvent extraction and ion exchange process development; New materials or reagents, their syntheses and properties; Computational methods of molecular design and simulation; Advances in equipment, fluid dynamics, and engineering; Interfacial phenomena, kinetics, and coalescence; Spectroscopic and diffraction analysis of structure and dynamics; Host-guest chemistry, ion receptors, and molecular recognition.
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