摘要
Recovery of valuable metals from electroplating sludge by bioleaching has attracted growing attention. However, extraction efficiency of metals was generally rather low even at a low pulp density of 1%–2% owing to failing to find the most suitable bioleaching system. In this work, high Ni recovery yield from electroplating nickel slag at a pulp density of 10% was attained by determining the best bioleaching process. The results showed the sulfur-A.t system exhibited the greatest extraction efficiency among the three bioleaching systems tested. The dissolved concentration of Ni and leaching efficiency reached 5400 mg/l and 90%, respectively, after 9 days of contact. Furthermore, 100% of Ni extraction was obtained at a pulp density of 10% by the sulfur-A.t system through optimizing operational conditions. Acid dissolution by biogenic H2SO4 was the dominating mechanism for Ni leaching in the sulfur-A.t system. However, other unknown leaching mechanisms also occurred which resulted in 19% Ni extraction. A direct contact between the sludge and cells was necessary for efficient Ni release by the sulfur-A.t system.
源语言 | 英语 |
---|---|
页(从-至) | 179-184 |
页数 | 6 |
期刊 | Geomicrobiology Journal |
卷 | 33 |
期 | 3-4 |
DOI | |
出版状态 | 已出版 - 15 3月 2016 |