Effect of Sulphide on Enhanced Biological Phosphorus Removal By Francisco Javier Rubio Rincon (informative)

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Javier Rubio Rincon
Table of Contents in Effect of Sulphide on Enhanced Biological Phosphorus Removal By Francisco Javier Rubio Rincon
Table of Contents
Abbreviations
Summary
Samenvatting
Introduction
The interplay between sulphide and enhanced biological phosphorus removal (EBPR) processes has garnered significant attention due to its profound implications for wastewater treatment efficiency. In recent years, the growing concern over phosphorus pollution has prompted intensive research into sustainable and efficient removal techniques. One promising approach is EBPR, which relies on specific microbial consortia capable of accumulating phosphorus within their cells. However, the presence of sulphide in wastewater systems has been observed to influence these processes, sometimes in detrimental ways. This book, authored by Francisco Javier Rubio Rincon, meticulously explores the effects of sulphide on EBPR, offering valuable insights into the biochemical and operational challenges posed by sulphide interference.
The research presented in this book is pivotal for environmental engineers, wastewater treatment professionals, and researchers focused on optimizing phosphorus removal processes. Sulphide, typically arising from anaerobic processes and industrial discharges, can disrupt the metabolic pathways of phosphorus-accumulating organisms (PAOs), leading to reduced phosphorus uptake and even process failure. By understanding the underlying mechanisms of sulphide interaction, this work not only highlights the challenges but also proposes strategies to mitigate the adverse effects, ensuring stable and efficient EBPR performance.
Through comprehensive experimental data and theoretical analysis, this book addresses key questions regarding sulphide’s impact on microbial communities involved in phosphorus removal. It also delves into how varying concentrations of sulphide, environmental conditions, and reactor configurations can influence the dynamics of EBPR systems. Moreover, it proposes innovative approaches to manage sulphide concentrations within acceptable limits, safeguarding the integrity of biological treatment processes.
Francisco Javier Rubio Rincon’s work serves as a critical resource for advancing knowledge in the field of wastewater management. It underscores the importance of interdisciplinary approaches, combining microbiology, process engineering, and environmental science to address one of the most pressing challenges in modern wastewater treatment. Readers will find not only a thorough examination of sulphide-related issues but also practical guidance for implementing EBPR systems resilient to sulphide contamination. This book ultimately contributes to the sustainable management of water resources, aligning with global efforts to minimize nutrient pollution and protect aquatic ecosystems.
1.1. Background
1.2. Scope of the thesis
1.3. Literature Review
1.4. Problem statement and objectives
1.5. Research approach
1.6. Outline
Effect of electron acceptors on sulphate reduction activity at WWTP
2.1. Highlights
2.2. Abstract
2.3. Introduction
2.4. Material and methods
2.5. Results
2.6. Discussion
2.7. Conclusion
Sulphide effects on the physiology of Candidatus Accumulibacter phosphatis
Type I
3.1. Highlights
3.2. Abstract
3.3. Introduction
3.4. Materials and methods
3.5. Results
3.6. Discussion
3.7. Conclusions
Long-term effects of sulphide on the enhanced biological removal of
phosphorus: The symbiotic role of Thiothrix caldifontis
4.1. Highlights
4.2. Graphical Abstract
4.3. Abstract
4.3. Introduction
4.4. Materials and methods
4.5. Results
4.6. Discussion
4.7. Conclusions
Cooperation between Competibacter sp. and Accumulibacter in denitrification
and phosphate removal processes
5.1. Highlights
5.2. Abstract
5.3. Introduction
5.4. Materials and Methods
5.5. Results
5.6. Discussion
5.7. Conclusions
Absent anoxic activity of PAO I on nitrate under different long-term
operational conditions
6.1. Highlights
6.2. Abstract
6.3. Introduction
6.4. Material and methods
6.5. Results
6.6. Discussion
6.7. Conclusions
Outlook and main conclusions
7.1. General conclusions
7.2. Specific conclusions
7.3. Evaluation and outlook
References
Annex
Effect of electron acceptors on sulphate reduction activity at WWTP
Long-term effects of sulphide on the enhanced biological removal of phosphorus: The role
of Thiothrix caldifontis
Cooperation between Competibacter sp. and Accumulibacter in denitrification and
phosphate removal processes
Absent anoxic activity of PAO I on nitrate under different long-term operational conditions
About the author
Acknowledgements
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