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HYDROMETALLURGICAL TREATMENT OF E-SCRAP

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HYDROMETALLURGICAL TREATMENT OF E-SCRAP ( hydrometallurgical-treatment-e-scrap )

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Sergent R.H, Use of brominated hydantoins for gold leaching, Randol Gold Forum 88, Scottsdale, 1988, Arizona, Randol International Ltd., Golden, CO. Seymour D. et al., Rapid Oxidation of refractory gold-bearing ores by intense “flash chlorination” at Newmont Company, Precious Metals ’89, M.C.Jha and S.D. Hill (Eds.), Minerals, Metals, Materials, Nevada, 165-178. Schmid G. M. Chapter 15: Gold, Standard Potentials in Aqueous Solution, A.J. Bard, R. Parsons and J. Jordan (Eds.), International Union of Pure and Applied Chemistry, 1985, New York, 313- 319. Schlesinger, M.E.; King, M.J.; Sole, K.C.; Davenport, W.G. Extractive Metallurgy of Copper; Elsevier: Oxford, UK, 2011. Schluep M. et al. Recycling from E-waste to resources, Solving The E-waste Problem, United Nationals Environment Programme, 6, 2009. Schnebele E.K. Bromine, USGS, 2018. Shaeffer C.A. US Patent 267723, 1882. Step Initiative 2014. Solving the e-waste problem (Step) white paper: One global definition of E- waste, United Nation University, 2014, Bonn, Germany, 4. Syed, S. Recovery of gold from secondary sources—A review. Hydrometallurgy, 2012, 115–116, 30–51. Szalatkiewicz J. Metals content in printed circuit board waste, Polish Journal of Environmental Studies, Vol. 23, No. 6, 2014, 2365-2369. Thomas R. Practical Guide to ICP-MS: A tutorial for beginners (Third Edition), Boca Raton: CRC Press, 2013. Tuncuk A. et al. Aqueous metal recovery techniques from e-scrap: Hydrometallurgy in recycling, Minerals Engineering, 2012, 25, Issue 1, 28-37. USGS, bromine, 2002 and 2017. Vasile C. et al. Feedstock recycling from the printed circuit boards of used computers, Energy & Fuels, 22, 2008, 1658-1665. Veit, H.M. et al. Utilization of magnetic and electrostatic separation in the recycling of printed circuit boards scrap. Waste Management, 2005, 25, 67–74. Veit H. M. et al. Use of gravity separation in metals concentration from printed circuit boards scraps. REM: R. Esc. Minas, Ouro Preto, 2014, 67(1), 73-79. Vidyadhar A.; Das A. Enrichment implication of froth flotation kinetics in the separation and recovery of metal values from printed circuit boards. Separation and Purification Technology, 2013, 118, 305-312. Viñals et al. Kinetics of the aqueous chlorination of gold in suspended particles, Hydrometallurgy, 1995, Vol. 38, Issue 2, 125-147. 120

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