Technoproductive evaluation of the energyless microbial-integrated diffusion dialysis technique for acid mine drainage valorization

Author:

Hegab Hanaa M.1234,ElMekawy Ahmed5678ORCID,Saint Christopher91011412,Banat Fawzi131141516,Hasan Shadi W.131141516,Pant Deepak17181920ORCID

Affiliation:

1. Department of Chemical Engineering

2. Monash University

3. Clayton

4. Australia

5. Genetic Engineering and Biotechnology Research Institute

6. University of Sadat City (USC)

7. Sadat City

8. Egypt

9. Natural & Built Environments Research Centre

10. University of South Australia

11. Adelaide

12. Future Industries Institute

13. Center for Membrane and Advanced Water Technology (CMAT)

14. Khalifa University

15. Abu Dhabi

16. United Arab Emirates

17. Separation & Conversion Technologies

18. VITO – Flemish Institute for Technological Research

19. 2400 Mol

20. Belgium

Abstract

Acid mine drainage (AMD) presents severe ecological pollution challenges because of its extreme acidity and sulphate and toxic metal contents.

Funder

Department of Chemical Engineering, Monash University

Publisher

Royal Society of Chemistry (RSC)

Subject

Water Science and Technology,Environmental Engineering

Reference89 articles.

1. B. Dold , Basic Concepts in Environmental Geochemistry of Sulfidic Mine-Waste Management , Waste Management. InTech, 2010

2. Heavy metal removal mechanism of acid mine drainage in wetlands: A critical review

3. Acid mine drainage: Challenges and opportunities

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