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      Effect of Sulphide on Enhanced Biological Phosphorus Removal
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      Book

      Effect of Sulphide on Enhanced Biological Phosphorus Removal

      DOI link for Effect of Sulphide on Enhanced Biological Phosphorus Removal

      Effect of Sulphide on Enhanced Biological Phosphorus Removal book

      Effect of Sulphide on Enhanced Biological Phosphorus Removal

      DOI link for Effect of Sulphide on Enhanced Biological Phosphorus Removal

      Effect of Sulphide on Enhanced Biological Phosphorus Removal book

      ByFrancisco Javier Rubio Rincon
      Edition 1st Edition
      First Published 2017
      eBook Published 10 March 2017
      Pub. Location London
      Imprint CRC Press
      DOI https://doi.org/10.1201/9781315116136
      Pages 234
      eBook ISBN 9781315116136
      Subjects Engineering & Technology
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      Rubio Rincon, F.J. (2017). Effect of Sulphide on Enhanced Biological Phosphorus Removal (1st ed.). CRC Press. https://doi.org/10.1201/9781315116136

      ABSTRACT

      The enhanced biological removal of phosphorus (EBPR) is a popular process due to high removal efficiency, low operational costs, and the possibility of phosphorus recovery. Nevertheless, the stability of the EBPR depends on different factors such as: temperature, pH, and the presence of toxic compounds. While extensive studies have researched the effects of temperature and pH on EBPR systems, little is known about the effects of different toxic compounds on EBPR. For example, sulphide has shown to inhibit different microbial activities in the WWTP, but the knowledge about its effects on EBPR is limited. Whereas the sulphide generated in the sewage can cause a shock effect on EBPR, the continuously exposure to sulphide potentially generated in WWTP can cause the acclimatization and adaptation of the biomass.

      This research suggests that sulphate reducing bacteria can proliferate in WWTP, as they are reversibly inhibited by the recirculation of sludge through anaerobic-anoxic-oxic conditions. The research enhances the understanding of the effect of sulphide on the anaerobic-oxic metabolism of PAO. It suggests that the filamentous bacteria Thiothrix caldifontis could play an important role in the biological removal of phosphorus. It questions the ability of PAO to generate energy from nitrate respiration and its use for the anoxic phosphorus uptake. Thus, the results obtained in this research can be used to understand the stability of the EBPR process under anaerobic-anoxic-oxic conditions, especially when exposed to the presence of sulphide.

      TABLE OF CONTENTS

      chapter 1|16 pages

      Introduction

      chapter 2|26 pages

      Effect of electron acceptors on sulphate reduction activity at WWTP

      chapter 3|26 pages

      Sulphide effects on the physiology of Candidatus Accumulibacter phosphatis Type I

      chapter 4|34 pages

      Long-term effects of sulphide on the enhanced biological removal of phosphorus: The symbiotic role of Thiothrix caldifontis

      chapter 5|24 pages

      Cooperation between Competibacter sp. and Accumulibacter in denitrification and phosphate removal processes

      chapter 6|30 pages

      Absent anoxic activity of PAO I on nitrate under different long-term operational conditions

      chapter 7|10 pages

      Outlook and main conclusions

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