Advanced Water Management Centre, The University of Queensland, St. Lucia, Brisbane, Queensland 4072, Australia.
Advanced Water Management Centre, The University of Queensland, St. Lucia, Brisbane, Queensland 4072, Australia.
Water Res. 2015 Dec 15;87:336-46. doi: 10.1016/j.watres.2015.09.049. Epub 2015 Oct 1.
Nitrous oxide (N2O) can be emitted from wastewater treatment contributing to its greenhouse gas footprint significantly. Mathematical modeling of N2O emissions is of great importance toward the understanding and reduction of the environmental impact of wastewater treatment systems. This article reviews the current status of the modeling of N2O emissions from wastewater treatment. The existing mathematical models describing all the known microbial pathways for N2O production are reviewed and discussed. These included N2O production by ammonia-oxidizing bacteria (AOB) through the hydroxylamine oxidation pathway and the AOB denitrification pathway, N2O production by heterotrophic denitrifiers through the denitrification pathway, and the integration of these pathways in single N2O models. The calibration and validation of these models using lab-scale and full-scale experimental data is also reviewed. We conclude that the mathematical modeling of N2O production, while is still being enhanced supported by new knowledge development, has reached a maturity that facilitates the estimation of site-specific N2O emissions and the development of mitigation strategies for a wastewater treatment plant taking into the specific design and operational conditions of the plant.
一氧化二氮(N2O)可以从污水处理厂排放,对其温室气体足迹有重大影响。N2O 排放的数学建模对于理解和减少污水处理系统的环境影响非常重要。本文综述了污水处理厂 N2O 排放的建模现状。综述并讨论了描述所有已知 N2O 产生微生物途径的现有数学模型。这些途径包括氨氧化菌(AOB)通过羟胺氧化途径和 AOB 反硝化途径产生 N2O、异养反硝化菌通过反硝化途径产生 N2O,以及这些途径在单个 N2O 模型中的整合。还综述了使用实验室规模和全规模实验数据对这些模型的校准和验证。我们的结论是,虽然 N2O 产生的数学建模仍在不断发展和完善,以支持新知识的发展,但它已经达到了一定的成熟度,可以根据特定的设计和运行条件,估算特定地点的 N2O 排放,并为污水处理厂制定缓解策略。