Knowledge Agora



Similar Articles

Title Life Cycle Assessment of Nitrogen Circular Economy-Based NOx Treatment Technology
ID_Doc 28720
Authors Xue, MAQ; Lin, BL; Tsunemi, K; Minami, K; Nanba, T; Kawamoto, T
Title Life Cycle Assessment of Nitrogen Circular Economy-Based NOx Treatment Technology
Year 2021
Published Sustainability, 13.0, 14
Abstract Humans are significantly perturbing the global nitrogen cycle, leading to excess reactive nitrogen in the environment. Nitrogen oxides as a key reactive nitrogen species are mainly controlled by selective non-catalytic reduction and selective catalytic reduction. Converting nitrogen oxides to ammonia, defined as ReNOx, emerges as an alternative method under a disparate design concept. However, little is known about its overall environmental performance. In this study, we conducted for the first time a life cycle assessment of ReNOx. Compared with the eco-index in the condition of 200 degrees C with a conversion rate of 95%, it would increase substantially in the condition of 160 degrees C with a conversion rate of 80% and in the case without a sound NH3 treatment. Feedstock format change, adsorption material performance deterioration, and recovery rate decline would increase the eco-index by 8%, 12%, and 18%, respectively. The eco-index was decreased by 31% in the optimized scenario with a renewable energy source and an increased conversion rate. The environmental impacts were compared with traditional methods at impact, damage, and eco-index levels. Finally, the implications on process arrangement in the flue gas system, the externality for power generation, and the contribution to the nitrogen circular economy were examined. The results can serve as a reference for its developers to improve the technology from the environmental perspective.
PDF

Similar Articles

ID Score Article
28359 Kimura, T Utilization of Reactive Nitrogen Compounds for Nitrogen Circular Economy(2024)Chemical Record, 24.0, 8
3454 Serrano-Arévalo, TI; Padilla-Esquivel, CA; Hernández-Pérez, LG; Díaz-Alvarado, FA; Ramírez-Márquez, C; Ponce-Ortega, JM Green Ammonia Production: The Performance of Global Systems in Eco-Indicator 99 and Circular Economy Metrics(2024)Acs Sustainable Chemistry & Engineering, 12, 33
27559 van Zelm, R; da Motta, RDS; Lam, WY; Menkveld, W; Broeders, E Life cycle assessment of side stream removal and recovery of nitrogen from wastewater treatment plants(2020)Journal Of Industrial Ecology, 24.0, 4
7464 Karmann, C; Magrová, A; Jenicek, P; Bartácek, J; Kouba, V Advances in nitrogen removal and recovery technologies from reject water: Economic and environmental perspectives(2024)
6833 Spiller, M; Moretti, M; De Paepe, J; Vlaeminck, SE Environmental and economic sustainability of the nitrogen recovery paradigm: Evidence from a structured literature review(2022)
Scroll