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Prospects for Biological Nitrogen Removal from Anaerobic Effluents during Mainstream Wastewater Treatment

机译:主流污水处理过程中厌氧废水生物脱氮的前景

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摘要

Growing interest in the anaerobic treatment of domestic wastewater requires a parallel focus on developing downstream technologies that address nitrogen pollution, especially for treatment systems located in eutrophication-impacted watersheds. Anaerobic effluents contain sulfide and hydrogen sulfide (a corrosive gas), dissolved methane (a potent greenhouse gas), ammonium, and residual organic carbon predominantly in the form of volatile fatty acids. Conventional approaches to nitrogen removal are energyand chemical-intensive and are not appropriate for application to anaerobic effluents. Innovative, energy efficient nitrogen removal processes are being developed and involve several novel chemotrophic processes. This review provides information about these processes, identifies how to control and retain the most desirable microorganisms, and considers the impact of reactor configuration on performance. Given the complexity of the technologies under development that remove nitrogen from anaerobically treated domestic wastewater, we conclude that computational models can support their development and that sensor-mediated controls are essential to achieving energy efficiency.
机译:对生活污水进行厌氧处理的兴趣日益浓厚,需要同时关注开发解决氮污染的下游技术,尤其是对富营养化影响的流域的处理系统。厌氧废水包含硫化物和硫化氢(一种腐蚀性气体),溶解的甲烷(一种强大的温室气体),铵和主要为挥发性脂肪酸形式的残留有机碳。常规的脱氮方法耗费能源和化学物质,不适用于厌氧废水。正在开发创新,节能的除氮工艺,其中涉及几种新颖的化学营养工艺。这篇综述提供了有关这些过程的信息,确定了如何控制和保留最理想的微生物,并考虑了反应器配置对性能的影响。考虑到正在开发的从厌氧处理的生活污水中去除氮的技术的复杂性,我们得出的结论是,计算模型可以支持其发展,并且传感器介导的控制对于实现能源效率至关重要。

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