电镀污泥的处理处置技术与研究现状(5)
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【摘要】[28] LI C C, XIE F C, MA Y, et heavy metals extraction and recovery from hazardous electroplating sludge waste via ultrasonically enhanced two-stage acid leaching [J].Journal of Hazardous Materials, 2
[28] LI C C, XIE F C, MA Y, et heavy metals extraction and recovery from hazardous electroplating sludge waste via ultrasonically enhanced two-stage acid leaching [J].Journal of Hazardous Materials, 2010, 178 (1/2/3): 823-833.
[29] SILVA J E, SOARES D, PAIVA A P, et behaviour of a galvanic sludge in sulphuric acid and ammoniacal media [J].Journal of Hazardous Materials,2005, 121 (1/2/3): 195-202.
[30] ZHOU W B, ZHANG L J, PENG J, et utilization of electroplating sludge by bioleaching with a moderately thermophilic consortium: a pilot study [J].Chemosphere, 2019, 232: 345-355.
[31] AMRANE C, BOUHIDEL K diffusion dialysis precipitation-cementation for selective recovery of leaching chemicals and metal values from electroplating sludge [J].Hydrometallurgy, 2018, 177: 34-40.
[32] YAN K, LIU Z L, LI Z L, et separation of chromium from sulphuric acid leaching solutions of mixed electroplating sludge using phosphate precipitation [J].Hydrometallurgy, 2019, 186: 42-49.
[33] ZHUANG Z Y, XU X J, WANG Y J, et of nanowaste via fast crystal growth: with recycling of nano-SnO2from electroplating sludge as a study case [J].Journal of Hazardous Materials, 2012, 211/212: 414-419.
[34] 钟雪虎, 焦芬, 覃文庆, 等.电镀污泥处理与处置方法概述[J].电镀与涂饰, 2017, 36 (17): 948-953.
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