Bioremediation of acid mine drainage using sulfate-reducing bacteria – Complete Phd and Masters Thesis

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PHD Table of Content:

Chapter One: Introduction
1.1 Background of the Study
1.2 Statement of the Problem
1.3 Research Questions
1.4 Objectives of the Study
1.5 Significance of the Study
1.6 Limitation of Study
1.7 Scope of Study

Chapter Two: Literature Review
2.1 Introduction to Acid Mine Drainage
2.2 Bioremediation Techniques
2.3 Sulfate-Reducing Bacteria
2.4 Previous Studies on Bioremediation of Acid Mine Drainage

Chapter Three: Research Methodology
3.1 Research Design
3.2 Sampling Technique
3.3 Data Collection Methods
3.4 Data Analysis Techniques

Chapter Four: Discussion of Findings
4.1 Analysis of Data
4.2 Comparison with Previous Studies
4.3 Implications of Findings
4.4 Recommendations for Future Research

Chapter Five: Conclusion and Summary
5.1 Summary of Findings
5.2 Conclusions
5.3 Recommendations
5.4 Contribution to the Field

Overview on Bioremediation of Acid Mine Drainage using Sulfate-Reducing Bacteria:

Acid mine drainage (AMD) is a major environmental issue caused by the oxidation of sulfide minerals in mines, leading to the release of sulfuric acid and heavy metals into nearby water sources. Traditional remediation methods are often expensive and not sustainable in the long term. One potential solution is bioremediation, which utilizes microorganisms to degrade or sequester pollutants in the environment.

Sulfate-reducing bacteria (SRB) are a group of microorganisms that can use sulfate as a terminal electron acceptor in their metabolism, reducing it to sulfide. This process can help neutralize the acidity of AMD and precipitate heavy metals as metal sulfides, which are less soluble and less toxic to the environment.

Research on the bioremediation of AMD using SRB has shown promising results, with studies demonstrating the ability of these bacteria to reduce acidity, remove heavy metals, and improve water quality in mine-impacted areas. However, there are still gaps in our understanding of the mechanisms involved, the optimal conditions for bioremediation, and the long-term effectiveness of this approach.

This PhD project aims to contribute to the field by investigating the potential of using sulfate-reducing bacteria for the bioremediation of acid mine drainage. By examining the efficiency of different strains of SRB, optimizing growth conditions, and evaluating the sustainability of the process, this study seeks to provide valuable insights into the feasibility and effectiveness of bioremediation as a solution for AMD pollution.

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