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An evaluation of steel scrap as a reducing agent in the galvanic stripping of iron from D2EHPA

机译:对废钢中D2EHPA的电脱铁中还原剂的评估

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摘要

A new process to remove iron from metallurgical process stream using solvent extraction techniques has been developed. The unique aspect of the process is the use of solid metal reductants directly in the organic phase, such as D2EHPA, as a means of selectively separating the undesired metal cation impurities. The process, called galvanic stripping, has been demonstrated on both beaker and bench scale continuous levels. Previous research focussed on using zinc or iron powders as the reducing agents. A recent study evaluated the use of steel scrap as a possible alternative that might enhance the process economics and product purity. A TBP modifier to the D2EHPA was also tested to determine the effect on process efficiency. The operating variables chosen for the study included reductant surface area, reaction time, diluents and ferric ion concentration in the organic. Once the pertinent parameters were identified by feasibility tests, an experimental design with statistical analysis was utilized to optimize overall process efficiency and iron removal.
机译:已经开发出一种使用溶剂萃取技术从冶金工艺流中去除铁的新工艺。该方法的独特方面是直接在有机相中使用固体金属还原剂(例如D2EHPA)作为选择性分离不需要的金属阳离子杂质的手段。在烧杯和台式规模的连续水平上均已证明了该方法,即所谓的电镀剥离。先前的研究集中在使用锌或铁粉作为还原剂。最近的一项研究评估了废钢的使用,这可能会提高工艺经济性和产品纯度。还测试了D2EHPA的TBP改性剂,以确定对过程效率的影响。研究中选择的操作变量包括还原剂表面积,反应时间,稀释剂和有机物中的铁离子浓度。一旦通过可行性测试确定了相关参数,就可以使用具有统计分析的实验设计来优化总体工艺效率和除铁效果。

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