Foght Julia M, Gieg Lisa M, Siddique Tariq
Department of Biological Sciences, University of Alberta, Edmonton, AB, Canada T6G 2E9.
Department of Biological Sciences, University of Calgary, Calgary, AB, Canada T2N 1N4.
FEMS Microbiol Ecol. 2017 May 1;93(5). doi: 10.1093/femsec/fix034.
Surface mining of enormous oil sands deposits in northeastern Alberta, Canada since 1967 has contributed greatly to Canada's economy but has also received negative international attention due largely to environmental concerns and challenges. Not only have microbes profoundly affected the composition and behavior of this petroleum resource over geological time, they currently influence the management of semi-solid tailings in oil sands tailings ponds (OSTPs) and tailings reclamation. Historically, microbial impacts on OSTPs were generally discounted, but next-generation sequencing and biogeochemical studies have revealed unexpectedly diverse indigenous communities and expanded our fundamental understanding of anaerobic microbial functions. OSTPs that experienced different processing and management histories have developed distinct microbial communities that influence the behavior and reclamation of the tailings stored therein. In particular, the interactions of Deltaproteobacteria and Firmicutes with methanogenic archaea impact greenhouse gas emissions, sulfur cycling, pore water toxicity, sediment biogeochemistry and densification, water usage and the trajectory of long-term mine waste reclamation. This review summarizes historical data; synthesizes current understanding of microbial diversity and activities in situ and in vitro; predicts microbial effects on tailings remediation and reclamation; and highlights knowledge gaps for future research.
自1967年以来,加拿大艾伯塔省东北部对巨大的油砂矿床进行露天开采,这极大地促进了加拿大的经济发展,但也因环境问题和挑战而受到国际社会的负面关注。微生物不仅在地质时期对这种石油资源的组成和特性产生了深远影响,目前还影响着油砂尾矿池(OSTP)中半固体尾矿的管理以及尾矿复垦。从历史上看,微生物对OSTP的影响通常被忽视,但新一代测序和生物地球化学研究揭示了出乎意料的多样本地群落,并扩展了我们对厌氧微生物功能的基本认识。经历了不同处理和管理历史的OSTP形成了独特的微生物群落,这些群落影响着其中储存的尾矿的特性和复垦。特别是,δ-变形菌纲和厚壁菌门与产甲烷古菌的相互作用会影响温室气体排放、硫循环、孔隙水毒性、沉积物生物地球化学和压实、用水以及长期矿山废弃物复垦的进程。本综述总结了历史数据;综合了目前对原位和体外微生物多样性及活动的理解;预测了微生物对尾矿修复和复垦的影响;并突出了未来研究的知识空白。