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Recovery of Cobalt Powder and Tungsten Carbide from Cemented Carbide Scrap-Part II: Recovery of Submicron Cobalt Powder from the Leach Solution

机译:从硬质合金废料中回收钴粉和碳化钨-第二部分:从浸出液中回收亚微米钴粉

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摘要

In this study, it is aimed to treat cemented carbide scrap (hard metal WC-Co) by nitric acidic leaching, followed by the precipitating of cobalt hydroxide, and finally obtaining a submicron size pure cobalt metal powder by thermal breakdown, and the hydrogen reduction of this hydroxide in a horizontal tube furnace in one process step. A comparison of different precipitating reagents and optimization of the precipitation parameters are also conducted, along with a search for the possible existence of an environment-friendly and economic process. According to the results obtained, it is possible to dissolve cobalt with high efficiencies (min. 91.5 percent) via HNO_3 leaching of cemented carbide scrap. The optimum leaching conditions were found to be: < 90 mum, 25 deg C, 2 h, 0.5 M HNO_3, 900 rpm and 1/10 solid/liquid ratio. Moreover, it has been found that cobalt could be precipitated with an efficiency of > 98 percent in the form of hydroxide by addition of an alkaline reagent such as NaOH. Cobalt hydroxide is transformed into a pure cobalt powder (99.7 percent) by a thermal breakdown process (> 300 deg C, 0.5 h, with argon) and by a reduction with hydrogen (800 deg C) under controlled conditions in 1.5 h to yield a submicron cobalt powder. The metallic Co-powder obtained has a purity of 99.7 percent Co and BET specific surface area of 0.37 m~2/g.
机译:本研究旨在通过硝酸浸出处理硬质合金废料(硬质合金WC-Co),然后沉淀氢氧化钴,最后通过热分解和氢还原得到亚微米级的纯钴金属粉末。在一个工艺步骤中在卧式管式炉中制备氢氧化物。还进行了不同沉淀试剂的比较和沉淀参数的优化,并寻找可能存在的环境友好型经济方法。根据获得的结果,可以通过硬质合金废料的HNO_3浸出高效地溶解钴(最小为91.5%)。发现最佳浸出条件为:<90μm,25℃,2h,0.5M HNO 3,900rpm和1/10固/液比。而且,已经发现,通过加入碱性试剂例如NaOH,钴可以氢氧化物的形式以> 98%的效率沉淀出钴。通过热分解过程(> 300℃,0.5 h,用氩气)并通过在受控条件下用氢气还原(800℃)1.5 h,将氢氧化钴转变为纯钴粉(99.7%)。亚微米钴粉。得到的金属Co粉的Co纯度为99.7%,BET比表面积为0.37m 2 / g。

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