首页> 外文会议>European Symposium on Environmental Biotechnology(ESEB 2004); 20040425-20040428; Oostende; BE >Biological nitrogen and phosphorus removal - processes of amazing diversity and complexity
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Biological nitrogen and phosphorus removal - processes of amazing diversity and complexity

机译:生物脱氮除磷-惊人的多样性和复杂性

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Nitrogen and phosphorus removal from wastewater is now considered an essential element of the protection of our waterways. Biological nutrient removal processes are generally the most efficient and cost-effective solution to achieve this. While the principles of these processes are well known, intriguing and valuable details are being discovered with the recent advances in bio-process engineering and microbial sciences. Phosphorus accumulating organisms have only been identified in recent years, and there are now competing glycogen accumulating organisms being found in biological phosphorus removal systems. These can possibly explain the reasons for the variable phosphorus removal performance of certain systems, and can help in the development of more stable and higher performing processes. Detailed investigations of the traditional nitrification-denitrification systems, but also of novel developments for nitrogen removal, reveal a more complex and diverse range of processes involved in these transformations. Increasingly, linked phosphorus and nitrogen removal processes are being developed, creating further opportunities to optimise the technologies. However, this might also bring certain risks such as the potential to produce the greenhouse-gas nitrous oxide (N_2O) rather than nitrogen gas as the final denitrification product. A range of recent developments in these areas is covered in this paper.
机译:现在,废水中的氮和磷去除被认为是保护我们水道的基本要素。生物营养去除过程通常是实现这一目标的最有效和最具成本效益的解决方案。尽管这些过程的原理众所周知,但是随着生物过程工程和微生物科学的最新发展,人们发现了有趣且有价值的细节。磷累积生物只是在最近几年才被发现,现在在生物除磷系统中发现了竞争性的糖原累积生物。这些可能可以解释某些系统除磷性能变化的原因,并有助于开发更稳定,性能更高的工艺。对传统硝化-反硝化系统的详细研究以及脱氮的新进展,都揭示了这些转化过程涉及的过程更加复杂多样。越来越多地开发了相关的磷和氮去除工艺,这为优化技术创造了更多机会。但是,这也可能带来某些风险,例如可能产生温室气体一氧化二氮(N_2O)而不是最终反硝化产物的氮气。本文涵盖了这些领域的一系列最新发展。

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