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NTIS 바로가기Resources recycling = 자원리싸이클링, v.30 no.6, 2021년, pp.61 - 67
김승현 (강원대학교 신산업개발 T-EMS 융합학과) , 김영진 (한국석회석신소재연구소 연구개발실) , 서준형 (한국석회석신소재연구소 연구개발실) , 조진상 (한국석회석신소재연구소 연구개발실) , 조계홍 (한국석회석신소재연구소 연구개발실) , 이재령 (강원대학교 에너지.자원공학과)
This work investigated the cementation of iridium from iridium-containing hydrochloric acid leachate. Zinc powder was used as the reducing agent, and the effects of the stoichiometric ratio of Zn/Ir, initial Ir concentration, initial pH, reaction time, and ultrasound irradiation on iridium recovery ...
Kim, S.K. and Sohn, J.S., 2008 : Application of rhodium and iridium, Trend in Metals & Materials Engineering, 21(6), pp.37-45.
Son, I.J. and Sohn, H.S., 2021 : Smelting of platinum group metals and recycling of spent catalyst, J. of Korean Inst. of Resources Recycling, 30(3), pp.18-29.
Yakoumis, I., Panou, M., Moschovi, A.M., et al., 2021 : Recovery of platinum group metals spent automotive catalysts: a review, Cleaner Engineering and Technology, 3(100112), pp.1-11.
Umeda, H., Sasaki, A., Takahashi, K., et al., 2011 : Recovery and concentration of precious metals from strong acidic wastewater, Materials Transactions, 52(7), pp.1462-1470.
Lee, J.R. and Kim, Y.J., 2011 : Chemical dissolution of iridium powder using alkali fusion followed by high-temperature leaching, Materials Transactions, 52(11), pp. 2067-2070.
Choi, S.H., Nguyen, T.T., Yoo, K.K., 2018 : Ni cementation followed by magnetic separation for recovery of unreacted Zn from by-products of Zn smelting process, J. Korean Soc. Miner. Energy Resour. Eng., 55(2), pp.121-126.
Ahn, J.W., Ahn, J.G., Park. K.H., 2000 : A study of cementation of Cu, Ni, Co ions with Mn powders in chloride solution, J. of Korean Inst. of Resources Recycling, 9(3), pp.3-12.
Ahmed, I.M., El-Nadi, Y.A., Daud, J.A., 2011 : Cementation of copper from spent copper-pickle sulfate solution by zinc ash, Hydrometallurgy, 110, pp. 62-66.
Kim, D.H., Kim, Y.J., Lee, J.R., 2010 : Decomposition of ethylene vinyl acetate by using ultrasonic treatment, J. Korean Soc. Miner. Energy Resour. Eng., 47(5), pp.647-652.
Lee, M.J. and Oh, J.I., 2009 : Sonolysis of Trichloroethlene in the multi ultrasound irradiation reactor, J. Korean Soc. Environ. Eng., 31(10), pp.873-882.
Kim, E.K., Son, Y.G., Cui, M.C., et al., 2012 : The effect of irradiation distance/volume on sonochemical oxidation of arsenic, J. Korean Soc. Environ. Eng., 31(10), pp.873-882.
Aktas, S., 2008 : Silver recovery from silver-rich photographic processing solutions by copper, Canadian Metallurgical Quarterly., 47, pp.37-44.
Farahmand, F., Moradkhani, D., Safarzadeh, M.S., et al., 2009 : Optimization and kinetics of the cementation of lead with aluminum powder, Hydrometallugy, 98, pp.81-85.
Aktas, S., 2012 : Cementation of rhodium from waste chloride solutions using copper powder, International Journal of Mineral Processing, 114-117, pp.100-105.
Aktas, S., 2011 : Rhodium recovery from rhodium-containing waste rinsing water via cementation using zinc powder, Hydrometallurgy, 106, pp.71-75.
Papaiconomou, N,. Billard, I., Chainet, E., 2014 : Extraction of iridium(IV) from aqueous solutions using hydrophilic/hydrophobic ionic liquids, Royal Society of Chemistry, 4, pp.48260-48266.
Aurousseau, M., Pham, N. T., Ozil, P., 2004 : Effect of ultrasound on the electrochemical cementation of cadmium by zinc powder, Ultrasonic Sonochemistry, 11, pp.23-26.
Wang, Z., Chen, D., Chen, L., 2007 : Application of fluoride to enhance aluminum cementation of gold from acidic thiocyanate solution, Hydrometallurgy, 89, pp.196-206.
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