Research map: From coal biodesulfurization to mine-soil remediation: a critical review of microbial sulfur transformation in coal-impacted environments

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  1. Effects of Abiotic Stress on Soil Microbiome · Nur Sabrina Natasha Abdul Rahman · 2021 · 286 citations · Cited by this paper
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  19. Review: Acid Mine Drainage (AMD) in Abandoned Coal Mines of Shanxi, China · Zhaoliang Wang · 2020 · 107 citations · Cited by this paper
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  23. Biotechnology of Microorganisms from Coal Environments: From Environmental Remediation to Energy Production · Nuraly Sh. Akimbekov · 2022 · 71 citations · Cited by this paper
  24. Acidophilic Iron- and Sulfur-Oxidizing Bacteria, Acidithiobacillus ferrooxidans , Drives Alkaline pH Neutralization and Mineral Weathering in Fe Ore Tailings · Qing Yi · 2021 · 69 citations · Cited by this paper
  25. Drainage waters affected by pyrite oxidation in a coal mine in Galicia (NW Spain): Composition and mineral stability · Carmen Monterroso · 1998 · 67 citations · Cited by this paper
  26. The approach of biodesulfurization for clean coal technologies: a review · Pınar Aytar Çelik · 2019 · 63 citations · Cited by this paper
  27. Biodesulfurization of high sulfur fat coal with indigenous and exotic microorganisms · Junpei Ye · 2018 · 57 citations · Cited by this paper
  28. Biodesulfurization of coal with Acidithiobacillus caldus and analysis of the interfacial interaction between cells and pyrite · Huan Jie He · 2012 · 56 citations · Cited by this paper
  29. Biodegradation of dibenzothiophene and its application in the production of clean coal · Srabani Mishra · 2016 · 56 citations · Cited by this paper
  30. Release characteristics of heavy metals in high-sulfur coal gangue: Influencing factors and kinetic behavior · Yingbo Dong · 2022 · 52 citations · Cited by this paper
  31. Significance of Microbial Communities and Interactions in Safeguarding Reactive Mine Tailings by Ecological Engineering · Iván Ñancucheo · 2011 · 48 citations · Cited by this paper
  32. Study on the effectiveness of sulfate-reducing bacteria to remove Pb(II) and Zn(II) in tailings and acid mine drainage · Yanrong Dong · 2024 · 46 citations · Cited by this paper
  33. Al and other critical metals co-extraction from coal gangue through delamination pretreatment and recycling strategies · Qizheng Qin · 2023 · 43 citations · Cited by this paper
  34. Properties of Sulfur Particles Formed in Biodesulfurization of Biogas · Annemerel Rozemarijn Mol · 2020 · 41 citations · Cited by this paper
  35. Coal Gangue Utilization: Applications, Challenges, and Sustainable Development Strategies · Yinghui Sun · 2025 · 40 citations · Cited by this paper
  36. Recovering iron and sulfate in the form of mineral from acid mine drainage by a bacteria-driven cyclic biomineralization system · Xiaomeng Wang · 2020 · 39 citations · Cited by this paper
  37. Biodesulfurization Induces Reprogramming of Sulfur Metabolism in Rhodococcus qingshengii IGTS8: Proteomics and Untargeted Metabolomics · Aurélie Hirschler · 2021 · 36 citations · Cited by this paper
  38. Biological treatment of saline-alkali soil by Sulfur-oxidizing bacteria · Shuochao Bao · 2016 · 35 citations · Cited by this paper
  39. Anaerobic Bioremediation of Acid Mine Drainage Using Sulphate-Reducing Bacteria: Current Status, Challenges, and Future Directions · Ditiro Mafane · 2025 · 35 citations · Cited by this paper

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