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ENERGETICS OF ENHANCED BIOLOGICAL PHOSPHORUS AND NITROGEN REMOVAL PROCESSES

机译:增强生物磷和脱氮过程的能量学

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Recent advances by researchers with in vivo NMR spectroscopy using labelled isotopes of carbon and phosphorus have elucidated some of the biochemical pathways involved in enhanced biological phosphorus and nitrogen removal processes. This has permitted a greater understanding of carbon and phosphorus cycling within cellular processes.All microbiological processes associated with energy transformations are dependent on enzyme induction. The enhanced phosphorus removal apparatus in certain organisms is dependent on the environmental conditions in order to induce the necessary enzymes. Enzyme expression has been linked to redox potential, which itself is a function of the culture medium and the bioenergetic condition of the cells. Redox balance is coupled to several pathways in the metabolic network of microorganisms. Changes to the redox potential result in shifts in the metabolic pathway utilisation.In the past, nitrification and denitrification have been thought to be strictly aerobic and anoxic processes respectively. Mounting evidence has demonstrated that this classical view of nitrification and denitrification is no longer valid and that other processes can occur such as simultaneous nitrification and denitrification and aerobic denitrification. Enzyme induction plays a very important role in these processes.Attempts have been made in this paper to elucidate the energetics of anaerobic phosphorus release based on cellular composition and various other plant operating parameters. Energetics of the denitrification process including anoxic dephosphatation, aerobic denitrification, with potential reduction in aerobic treatment requirements, are also explored.
机译:研究人员在体内NMR光谱学中使用碳和磷标记同位素的最新进展阐明了与增强生物除磷和除氮过程有关的某些生化途径。这使人们对细胞过程中碳和磷的循环有了更深入的了解。 与能量转化相关的所有微生物过程都依赖于酶的诱导。在某些生物中增强的除磷设备取决于环境条件,以诱导必需的酶。酶的表达与氧化还原电位有关,氧化还原电位本身是培养基和细胞生物能状况的函数。氧化还原平衡与微生物代谢网络中的几种途径有关。氧化还原电位的改变导致代谢途径利用的改变。 过去,硝化和反硝化分别被认为是严格的好氧和缺氧过程。越来越多的证据表明,传统的硝化和反硝化观点不再有效,并且可能发生其他过程,例如同时硝化和反硝化以及有氧反硝化。酶诱导在这些过程中起着非常重要的作用。 本文已尝试阐明基于细胞组成和各种其他植物运行参数的厌氧磷释放的能量。还研究了反硝化过程的能量,包括缺氧脱磷,好氧反硝化,并有可能减少好氧处理的要求。

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