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Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data

Nitrous oxides (N(2)O) emissions contribute to climate change and stratospheric ozone depletion. Wastewater treatment is an important, yet likely underestimated, source of N(2)O emissions, as recent, long-term monitoring campaigns have demonstrated. However, the available data are insufficient to re...

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Autores principales: Gruber, Wenzel, von Känel, Luzia, Vogt, Liliane, Luck, Manuel, Biolley, Lucien, Feller, Kilian, Moosmann, Andrin, Krähenbühl, Nikita, Kipf, Marco, Loosli, Reto, Vogel, Michael, Morgenroth, Eberhard, Braun, Daniel, Joss, Adriano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8503907/
https://www.ncbi.nlm.nih.gov/pubmed/34661091
http://dx.doi.org/10.1016/j.wroa.2021.100122
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author Gruber, Wenzel
von Känel, Luzia
Vogt, Liliane
Luck, Manuel
Biolley, Lucien
Feller, Kilian
Moosmann, Andrin
Krähenbühl, Nikita
Kipf, Marco
Loosli, Reto
Vogel, Michael
Morgenroth, Eberhard
Braun, Daniel
Joss, Adriano
author_facet Gruber, Wenzel
von Känel, Luzia
Vogt, Liliane
Luck, Manuel
Biolley, Lucien
Feller, Kilian
Moosmann, Andrin
Krähenbühl, Nikita
Kipf, Marco
Loosli, Reto
Vogel, Michael
Morgenroth, Eberhard
Braun, Daniel
Joss, Adriano
author_sort Gruber, Wenzel
collection PubMed
description Nitrous oxides (N(2)O) emissions contribute to climate change and stratospheric ozone depletion. Wastewater treatment is an important, yet likely underestimated, source of N(2)O emissions, as recent, long-term monitoring campaigns have demonstrated. However, the available data are insufficient to representatively estimate countrywide emission due to the brevity of most monitoring campaigns. This study showed that the emission estimates can be significantly improved using an advanced approach based on multiple continuous, long-term monitoring campaigns. In monitoring studies on 14 full-scale wastewater treatment plants (WWTPs), we found a strong variability in the yearly emission factors (EFs) (0.1 to 8% of the incoming nitrogen load) which exhibited a good correlation with effluent nitrite. But countrywide data on nitrite effluent concentrations is very limited and unavailable for emission estimation in many countries. Hence, we propose a countrywide emission factor calculated from the weighted EFs of three WWTP categories (carbon removal, EF: 0.1–8%, nitrification only: 1.8%, and full nitrogen removal: 0.9%). However, EF of carbon removal WWTPs are still highly uncertain given the expected variability in performance. The newly developed approach allows representative, country-specific estimations of the N(2)O emissions from WWTP. Applied to Switzerland, the estimations result in an average EF of 0.9 to 3.6% and total emissions of 410 to 1690 tN(2)O-N/year, which corresponds to 0.3–1.4% of the total greenhouse gas emissions in Switzerland. Our results demonstrate that better data availability and an improved understanding of long-term monitoring campaigns is crucial to improve current emission estimations. Finally, our results confirm several measures to mitigate N(2)O emissions from wastewater treatment; year-round denitrification, limiting nitrite accumulation, and stringent control of sludge age in carbon removal plants.
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spelling pubmed-85039072021-10-15 Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data Gruber, Wenzel von Känel, Luzia Vogt, Liliane Luck, Manuel Biolley, Lucien Feller, Kilian Moosmann, Andrin Krähenbühl, Nikita Kipf, Marco Loosli, Reto Vogel, Michael Morgenroth, Eberhard Braun, Daniel Joss, Adriano Water Res X Full Paper Nitrous oxides (N(2)O) emissions contribute to climate change and stratospheric ozone depletion. Wastewater treatment is an important, yet likely underestimated, source of N(2)O emissions, as recent, long-term monitoring campaigns have demonstrated. However, the available data are insufficient to representatively estimate countrywide emission due to the brevity of most monitoring campaigns. This study showed that the emission estimates can be significantly improved using an advanced approach based on multiple continuous, long-term monitoring campaigns. In monitoring studies on 14 full-scale wastewater treatment plants (WWTPs), we found a strong variability in the yearly emission factors (EFs) (0.1 to 8% of the incoming nitrogen load) which exhibited a good correlation with effluent nitrite. But countrywide data on nitrite effluent concentrations is very limited and unavailable for emission estimation in many countries. Hence, we propose a countrywide emission factor calculated from the weighted EFs of three WWTP categories (carbon removal, EF: 0.1–8%, nitrification only: 1.8%, and full nitrogen removal: 0.9%). However, EF of carbon removal WWTPs are still highly uncertain given the expected variability in performance. The newly developed approach allows representative, country-specific estimations of the N(2)O emissions from WWTP. Applied to Switzerland, the estimations result in an average EF of 0.9 to 3.6% and total emissions of 410 to 1690 tN(2)O-N/year, which corresponds to 0.3–1.4% of the total greenhouse gas emissions in Switzerland. Our results demonstrate that better data availability and an improved understanding of long-term monitoring campaigns is crucial to improve current emission estimations. Finally, our results confirm several measures to mitigate N(2)O emissions from wastewater treatment; year-round denitrification, limiting nitrite accumulation, and stringent control of sludge age in carbon removal plants. Elsevier 2021-09-30 /pmc/articles/PMC8503907/ /pubmed/34661091 http://dx.doi.org/10.1016/j.wroa.2021.100122 Text en © 2021 The Authors. Published by Elsevier Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Full Paper
Gruber, Wenzel
von Känel, Luzia
Vogt, Liliane
Luck, Manuel
Biolley, Lucien
Feller, Kilian
Moosmann, Andrin
Krähenbühl, Nikita
Kipf, Marco
Loosli, Reto
Vogel, Michael
Morgenroth, Eberhard
Braun, Daniel
Joss, Adriano
Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data
title Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data
title_full Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data
title_fullStr Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data
title_full_unstemmed Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data
title_short Estimation of countrywide N(2)O emissions from wastewater treatment in Switzerland using long-term monitoring data
title_sort estimation of countrywide n(2)o emissions from wastewater treatment in switzerland using long-term monitoring data
topic Full Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8503907/
https://www.ncbi.nlm.nih.gov/pubmed/34661091
http://dx.doi.org/10.1016/j.wroa.2021.100122
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