4.7 Article

Life cycle assessment of comparing different nutrient recovery systems from municipal wastewater: A path towards self-reliance and sustainability

Journal

JOURNAL OF CLEANER PRODUCTION
Volume 410, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2023.137331

Keywords

Wastewater treatment; Nutrient recovery; Life cycle assessment; Circular economy

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Nutrient recovery systems can mitigate the negative effects of N and P in wastewater and reduce eutrophication. This study compared the lifecycle assessment of four nutrient recovery systems and sewage treatment plant using SimaPro (V9.3). The findings showed that a fuel cell with a single-pot wastewater treatment system can act as a negative emission system with a reduced carbon footprint. This research also concluded that single-pot systems perform better for the environment than add-on systems, suggesting the potential benefits of microalgae in a single-pot system.
Nutrient recovery systems can help to mitigate the negative effects of N and P in WW (wastewater), which when not recovered causes eutrophication in aquatic ecosystems. Using SimaPro (V9.3), the lifecycle assessment (LCA) of four nutrient recovery systems and sewage treatment plant (STP) were compared in this study. The findings showed that a fuel cell with a single-pot WW treatment system can function as a negative emission system with a global warming potential (GWP) of-234 gCO2 Eq./m3 of WW. Nutrient recovery reduces carbon footprint by 56-98% when compared to traditional fertilizers like diammonium phosphate (DAP) and urea. One of the main conclusions of this research was that single-pot systems perform better for the environment than add-on systems, which suggests that microalgae could perform better for the environment in a single-pot system. Recovering nutrients from WW not only improves self-reliance in the economy by decrementing the fertilizer import but also saves the environment.

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