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首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >Characterisation and treatment of spent deposited sludge of transformer oil (DSTO) by acid leaching and solvent extraction
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Characterisation and treatment of spent deposited sludge of transformer oil (DSTO) by acid leaching and solvent extraction

机译:酸性浸出和溶剂萃取对变压器油(DSTO)废沉积污泥的表征及处理

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摘要

The characterisation of spent transformer oil to determine its fitness for re-refining as well as the recovery of metals by hydrometallurgical treatment in chloride medium has been investigated. The leaching experiments on the spent material showed that its dissolution increases with leachant concentration performed at 75°C. Leaching studies showed that at optimal conditions, the dissolution reached 93% by 1.0 mol L~(-1) HCI solution within 120 min at 75°C The solvent extraction of copper by bis(2,2,4-trimethylpentyl) phosphinic acid (CYANEX?272) in kerosene from a pregnant solution of aqueous spent deposited sludge of transformer oil containing 1243.4 mg L~(-1) Cu~(++), 389.2 mg L~(-1) Fe~(++/+++), 110.7mgL~(-1) Ca~(++) and 235 mg L~(-1) Al~(+++) was studied. The results for the solvent extraction give an extraction efficiency of 91.77% total copper acquired via 0.2 mol L~(-1) CYANEX?272 in kerosene at 27 ± 2°C within 25 min at pH 4.0. A 0.1 mol L~(-1) HCI solution was found to be sufficient for the stripping of about 94.77% copper from the loaded organic phase. The Fourier transform-infrared spectroscopic analysis of the loaded organic phase supports the stripping experiment as there was no Cu metal ion present in the separated organic phase.
机译:研究了废富变压器油的表征,以确定其重新精炼的适应性以及通过氯化氢介质在氯化物培养基中进行氢冶金处理的回收。花费材料上的浸出实验表明,其溶解随在75℃下进行的呼吸浓度增加。浸出研究表明,在最佳条件下,在75℃下溶解在120分钟内达到1.0mol L〜(-1)HCl溶液在75℃下通过双(2,2,4-三甲基戊基)膦酸(来自甲磺的蛋白质,从含有1243.4mg L〜(-1)Cu〜(++),389.2mg L〜(-1)Fe〜(++ / ++的溶液+),110.7mgl〜(-1)Ca〜(++)和235mg L〜(-1)Al〜(+++)。溶剂萃取的结果为通过0.2mol L〜(-1)Cyanexα272在27±2℃下在pH 4.0的25分钟内在煤油中获得91.77%的总铜的提取效率。发现0.1mol L〜(-1)HCl溶液足以从负载有机相中剥离约94.77%的铜。负载有机相的傅里叶变换红外光谱分析支持剥离实验,因为在分离的有机相中没有存在Cu金属离子。

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