School of Resource and Environmental Engineering, Wuhan University of Science and Technology, Wuhan 430081, China; Key Laboratory of Biometallurgy of Ministry of Education, Central South University, Changsha 410083, China.
School of Environmental Studies, China University of Geosciences, Wuhan 430074, China; Key Laboratory of Biometallurgy of Ministry of Education, Central South University, Changsha 410083, China.
Bioresour Technol. 2020 Jul;308:123273. doi: 10.1016/j.biortech.2020.123273. Epub 2020 Mar 30.
The interaction between microorganisms and minerals was a hot topic to reveal the transformation of key elements that affecting bioleaching efficiency. Three typical low-grade copper ores, the main copper-bearing components of which were primary sulfide, secondary sulfide and high-oxidative sulfide copper, were obtained from Dexing, Zijinshan and Luanshya copper mine, respectively. Meanwhile, six typical microorganisms were isolated from each of the three habitats, and assembled as communities based on their origins. Cross bioleaching was carried out under identical conditions. The leaching parameters showed that native strains played excellent roles in their corresponding ore bioleaching process, and community structure was greatly determined by mineral composition, indicating that domestication for longitudinal adaption was an effective way to improve microbial leaching performance. Leptospirillum ferriphilum and Acidithiobacillus ferrooxidans promoted copper release by shifting redox potential and pH of the leachate, respectively, indicating that microbial population regulation was another effective way to improve bioleaching efficiency.
微生物与矿物之间的相互作用是揭示影响生物浸出效率的关键元素转化的热门话题。从德兴、紫金山和卢安夏铜矿分别获得三种典型的低品位铜矿,其主要含铜矿物分别为原生硫化物、次生硫化物和高氧化硫化物铜。同时,从这三个生境中分别分离出六种典型的微生物,并根据其起源组合成群落。在相同条件下进行交叉生物浸出。浸出参数表明,土著菌株在其相应的矿石生物浸出过程中发挥了出色的作用,群落结构受矿物组成的极大影响,这表明纵向适应的驯化是提高微生物浸出性能的有效途径。趋磁螺菌和氧化亚铁硫杆菌通过改变浸出液的氧化还原电位和 pH 值来促进铜的释放,这表明微生物种群调节是提高生物浸出效率的另一种有效途径。