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The microbiology of biomining: development and optimization of mineral-oxidizing microbial consortia

机译:生物化的微生物学:矿物氧化微生物联盟的开发和优化

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Biomining, the use of micro-organisms to recover precious and base metals from mineral ores and concentrates, has developed into a successful and expanding area of biotechnology. While careful considerations are made in the design and engineering of biomining operations, microbiological aspects have been subjected to far less scrutiny and control. Biomining processes employ microbial consortia that are dominated by acidophilic, autotrophic iron- or sulfur-oxidizing prokaryotes. Mineral biooxidation takes place in highly aerated, continuous-flow, stirred-tank reactors or in irrigated dump or heap reactors, both of which provide an open, non-sterile environment. Continuous-flow, stirred tanks are characterized by homogeneous and constant growth conditions where the selection is for rapid growth, and consequently tank consortia tend to be dominated by two or three species of micro-organisms. In contrast, heap reactors provide highly heterogeneous growth environments that change with the age of the heap, and these tend to be colonized by a much greater variety of micro-organisms. Heap micro-organisms grow as biofilms that are not subject to washout and the major challenge is to provide sufficient biodiversity for optimum performance throughout the life of a heap. This review discusses theoretical and pragmatic aspects of assembling microbial consortia to process different mineral ores and concentrates, and the challenges for using constructed consortia in non-sterile industrial-scale operations.
机译:生物化学,使用微生物来从矿物矿石和浓缩物中回收珍贵和碱金属,已经发展成为生物技术的成功和扩大领域。虽然在生物化作业的设计和工程方面进行了仔细考虑,但微生物方面已经受到更少的审查和控制。生物元化方法采用以嗜酸性,自养铁或硫氧化原核生物支配的微生物分子。矿物生物氧化在高度充气,连续流动,搅拌罐反应器或灌溉倾卸或堆反应器中进行,这两者都提供了开放的非无菌环境。连续流动的搅拌罐的特征在于均匀且恒定的生长条件,其中选择是为了快速生长的,因此坦克组成往往由两种或三种微生物占主导地位。相比之下,堆反应堆提供了高度异质的生长环境,随着堆的年龄而改变,这些环境往往是通过多种多样的微生物来殖民。堆微生物生长为不受冲洗的生物膜,并且主要挑战是为在堆中的寿命中提供足够的生物多样性以获得最佳性能。本综述探讨了组装微生物组织以处理不同矿物质和浓缩物的理论和务实方面,以及在非无菌工业规模操作中使用构建的联盟的挑战。

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