Recovered fertilizers (RFs), in the form of digestate and digestate-derived ammonium sulfate, were produced from organic wastes by thermophilic anaerobic digestion (AD) at full scale. RFs were then used for crop production (maize), substituting synthetic mineral fertilizers (SFs). Environmental impacts due to both RF and SF production and use were studied by a life cycle assessment (LCA) approach using, as much as possible, data directly measured at full scale. The functional unit chosen was referred to as the fertilization of 1 ha of maize, as this paper intends to investigate the impacts of the use of RF (Scenario RF) for crop fertilization compared to that of SF (Scenario SF). Scenario RF showed better environmental performances than the system encompassing the production and use of urea and synthetic fertilizers (Scenario SF). In particular, for the Scenario RF, 11 of the 18 categories showed a lower impact than the Scenario SF, and 3 of the categories (ionizing radiation, fossil resource scarcity, and water consumption) showed net negative impacts in Scenario RF, getting the benefits from the credit for renewable energy production by AD. The LCA approach also allowed proposing precautions able to reduce further fertilizer impacts, resulting in total negative impacts in using RF for crop production. Anaerobic digestion represents the key to propose a sustainable approach in producing renewable fertilizers, thanks to both energy production and the modification that occurs to waste during a biological process, leaving a substrate (digestate) with high amending and fertilizing properties.

Environmental performance in the production and use of recovered fertilizers from organic wastes treated by anaerobic digestion vs. synthetic mineral fertilizers / H. Axel, G. D'Imporzano, M. Zilio, A. Pigoli, B. Rizzi, E. Meers, O. Schouman, M. Schepis, F. Barone, A. Giordano, F. Adani. - In: ACS SUSTAINABLE CHEMISTRY & ENGINEERING. - ISSN 2168-0485. - 10:2(2022 Jan 17), pp. 986-997. [10.1021/acssuschemeng.1c07028]

Environmental performance in the production and use of recovered fertilizers from organic wastes treated by anaerobic digestion vs. synthetic mineral fertilizers

H. Axel
Primo
;
G. D'Imporzano
Secondo
;
M. Zilio;A. Pigoli;B. Rizzi;F. Adani
Ultimo
2022

Abstract

Recovered fertilizers (RFs), in the form of digestate and digestate-derived ammonium sulfate, were produced from organic wastes by thermophilic anaerobic digestion (AD) at full scale. RFs were then used for crop production (maize), substituting synthetic mineral fertilizers (SFs). Environmental impacts due to both RF and SF production and use were studied by a life cycle assessment (LCA) approach using, as much as possible, data directly measured at full scale. The functional unit chosen was referred to as the fertilization of 1 ha of maize, as this paper intends to investigate the impacts of the use of RF (Scenario RF) for crop fertilization compared to that of SF (Scenario SF). Scenario RF showed better environmental performances than the system encompassing the production and use of urea and synthetic fertilizers (Scenario SF). In particular, for the Scenario RF, 11 of the 18 categories showed a lower impact than the Scenario SF, and 3 of the categories (ionizing radiation, fossil resource scarcity, and water consumption) showed net negative impacts in Scenario RF, getting the benefits from the credit for renewable energy production by AD. The LCA approach also allowed proposing precautions able to reduce further fertilizer impacts, resulting in total negative impacts in using RF for crop production. Anaerobic digestion represents the key to propose a sustainable approach in producing renewable fertilizers, thanks to both energy production and the modification that occurs to waste during a biological process, leaving a substrate (digestate) with high amending and fertilizing properties.
English
ammonium sulfate, anaerobic digestion, environmental impacts, life cycle assessment (LCA), digestate, recovered fertilizers;
Settore AGR/13 - Chimica Agraria
Articolo
Esperti anonimi
Pubblicazione scientifica
   Systemic large scale eco-innovation to advance circular economy and mineral recovery from organic waste in Europe
   SYSTEMIC
   EUROPEAN COMMISSION
   H2020
   730400

   Transition towards a more carbon and nutrient efficient agriculture in Europe (Nutri2Cycle)
   Nutri2Cycle
   EUROPEAN COMMISSION
   H2020
   773682
17-gen-2022
7-gen-2022
American Chemical Society (ACS)
10
2
986
997
12
Pubblicato
Periodico con rilevanza internazionale
manual
Aderisco
info:eu-repo/semantics/article
Environmental performance in the production and use of recovered fertilizers from organic wastes treated by anaerobic digestion vs. synthetic mineral fertilizers / H. Axel, G. D'Imporzano, M. Zilio, A. Pigoli, B. Rizzi, E. Meers, O. Schouman, M. Schepis, F. Barone, A. Giordano, F. Adani. - In: ACS SUSTAINABLE CHEMISTRY & ENGINEERING. - ISSN 2168-0485. - 10:2(2022 Jan 17), pp. 986-997. [10.1021/acssuschemeng.1c07028]
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262
Article (author)
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H. Axel, G. D'Imporzano, M. Zilio, A. Pigoli, B. Rizzi, E. Meers, O. Schouman, M. Schepis, F. Barone, A. Giordano, F. Adani
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/895865
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