Characteristics of iron-sulfur metabolism and acid-producing microorganisms in groundwater contaminated by acid mine drainage in closed coal mines

被引:0
作者
Huang, Yanchang [1 ]
Lu, Ping [1 ]
Zhang, Feng [2 ,3 ]
Chen, Hao [2 ,3 ]
Zhang, Wenliang [2 ,3 ]
Lin, Linlin [2 ,3 ]
Xu, Hepeng [2 ,3 ]
Ding, Haoran [1 ]
Cheng, Tianhang [1 ]
机构
[1] China Univ Min & Technol, Sch Environm & Spatial Informat, Xuzhou, Peoples R China
[2] Shandong Prov Lunan Geol & Explorat Inst, Shandong Prov Bur Geol & Mineral Resources Geol Br, Jining, Peoples R China
[3] Minist Nat Resources, Observat & Res Stn Shandong Yangzhuang Karst Ecosy, Beijing, Peoples R China
关键词
Acid mine drainage; Sulfur and iron metabolism; Acid-producing microorganisms; Microorganism functional; KARST COLLAPSE; ZAOZHUANG REGION; SEQUENCES; DIVERSITY; POLLUTION;
D O I
10.1016/j.gsd.2024.101372
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The generation of acid mine drainage (AMD) from mining activities poses significant challenges to humanity due to its intense pollution and difficult management. Despite the hostile conditions presented by AMD, a plethora of microorganisms thrive in this environment. In this study, we employ metagenomic techniques and microbial diversity analysis to systematically categorize microorganisms. Specifically, we identify Sulfur-iron metabolizing microorganisms associated with AMD, encompassing 6 phyla and 1149 genera. Functional predictions and pathogenicity analyses are conducted on this microbial community. Furthermore, we specifically emphasize the study of acid-producing microorganisms. This research marks the first discussion on the scope and structure of acid-producing microorganisms., comprising 1 phylum, 39 genera, and 1393 species. Our research outcomes comprehensively depict the microbial diversity in AMD, unveiling their influence on the physicochemical properties of AMD pollution. This study contributes valuable insights to addressing environmental challenges arising from AMD and aids in its remediation.
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页数:10
相关论文
共 47 条
[31]   A continuous pilot-scale system using coal-mine drainage sludge to treat acid mine drainage contaminated with high concentrations of Pb, Zn, and other heavy metals [J].
Cui, Mingcan ;
Jang, Min ;
Cho, Sang-Hyun ;
Khim, Jeehyeong ;
Cannon, Fred S. .
JOURNAL OF HAZARDOUS MATERIALS, 2012, 215 :122-128
[32]   PERFORMANCE CHARACTERISTICS OF SYNTHETIC ZEOLITE F9 IN TREATING HIGH IRON AND MANGANESE ACID MINE DRAINAGE [J].
Masukume, Mike ;
Onyango, Maurice S. ;
Maree, Johannes P. .
ENVIRONMENTAL ENGINEERING AND MANAGEMENT JOURNAL, 2017, 16 (10) :2255-2265
[33]   SIMPL: A Simplified Model-Based Program for the Analysis and Visualization of Groundwater Rebound in Abandoned Mines to Prevent Contamination of Water and Soils by Acid Mine Drainage [J].
Kim, Sung-Min ;
Choi, Yosoon .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2018, 15 (05)
[34]   An effective way to treat the iron-rich acid mine drainage from coal mining in Guizhou’s mountainous areas [J].
Lei Liu ;
Ben-hong Liu ;
Wei Li ;
Yi Zhang .
Journal of Mountain Science, 2020, 17 :1345-1359
[35]   An effective way to treat the iron-rich acid mine drainage from coal mining in Guizhou's mountainous areas [J].
LIU Lei ;
LIU Ben-hong ;
LI Wei ;
ZHANG Yi .
Journal of Mountain Science, 2020, 17 (06) :1345-1359
[36]   An effective way to treat the iron-rich acid mine drainage from coal mining in Guizhou's mountainous areas [J].
Liu, Lei ;
Liu, Ben-hong ;
Li, Wei ;
Zhang, Yi .
JOURNAL OF MOUNTAIN SCIENCE, 2020, 17 (06) :1345-1359
[37]   Removal of iron ions from water contaminated with acid mine drainage by geopolymer derived from rice husk ash and ceramic residue [J].
Wesler, Sabrina ;
de Brida, Isabel Conceicao ;
Geremias, Reginaldo ;
Bezerra de Menezes, Carlyle Torres ;
Pineda-Vasquez, Tatiana .
ENGENHARIA SANITARIA E AMBIENTAL, 2021, 26 (06) :1123-1133
[38]   Recognition of a biofilm at the sediment-water interface of an acid mine drainage-contaminated stream, and its role in controlling iron flux [J].
Boult, S ;
Johnson, N ;
Curtis, C .
HYDROLOGICAL PROCESSES, 1997, 11 (04) :391-399
[39]   Removal of iron and sulphate during acid mine drainage treatment using laboratory successive alkalinity producing system and its behavioural relationship [J].
Patel, Murlidhar ;
Jade, Ravi K. ;
Dewangan, Pankaj K. ;
Dash, Ashish K. ;
Kaushik, Anupam K. .
INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2022, 20 (06) :591-597
[40]   An integrated microbiological and electrochemical approach to determine distributions of Fe metabolism in acid mine drainage-induced "iron mound" sediments [J].
Leitholf, Andrew M. ;
Fretz, Chrystal E. ;
Mahanke, Raymond ;
Santangelo, Zachary ;
Senko, John M. .
PLOS ONE, 2019, 14 (03)