Knowledge Agora



Similar Articles

Title Combining LCA and circularity assessments in complex production systems: the case of urban agriculture
ID_Doc 21900
Authors Rufí-Salís, M; Petit-Boix, A; Villalba, G; Gabarrell, X; Leipold, S
Title Combining LCA and circularity assessments in complex production systems: the case of urban agriculture
Year 2021
Published
Abstract Local food production through urban agriculture (UA) is promoted as a means to make cities more sustainable. However, UA does not come free of environmental impacts. In this sense, optimizing urban resources through circular economy principles offers the opportunity to close loops and improve production systems, but an assessment of these systems through a combination of circularity and environmental tools is missing from the literature. The goal of our study is to analyse the environmental and circularity performance of applying circular strategies in UA systems. We use Life Cycle Assessment (LCA) and the Material Circularity Indicator (MCI) to assess the baseline scenario of a Mediterranean rooftop greenhouse and the application of 13 circular strategies. The results show that the MCI score for all strategies was biased by overweighting of the water subsystem in the mass balance. Based on this finding, we propose a series of modifications to the circularity assessment, calculating specific MCI scores for every subsystem before coupling them with environmental life cycle indicators. The outcome is a set of indicators that use the Linear Flow Index (LFI), where decreasing the values as much as possible will correspond to a decrease both in environmental impact and linearity of the system (the inverse of circularity). The use of these indicators provides a simple understanding of the circular and environmental performance of these systems while being fully adaptable. With these indicators, the uses of nutrient recirculation, struvite fertilizer or recycled materials were the best strategies to improve urban agriculture.
PDF

Similar Articles

ID Score Article
6393 Rufí-Salís, M; Petit-Boix, A; Villalba, G; Sanjuan-Delmás, D; Parada, F; Ercilla-Montserrat, M; Arcas-Pilz, V; Muñoz-Liesa, J; Rieradevall, J; Gabarrell, X Recirculating water and nutrients in urban agriculture: An opportunity towards environmental sustainability and water use efficiency?(2020)
943 Brändström, J; Saidani, M Comparison between circularity metrics and LCA: A case study on circular economy strategies(2022)
24806 Saadé, M; Erradhouani, B; Pawlak, S; Appendino, F; Peuportier, B; Roux, C Combining circular and LCA indicators for the early design of urban projects(2022)International Journal Of Life Cycle Assessment, 27, 1
5415 Katiyar, A; Gedam, VV The circular economy and fertilizer industry: a systematic review of principal measuring tool(2024)
3074 Harris, S; Martin, M; Diener, D Circularity for circularity's sake? Scoping review of assessment methods for environmental performance in the circular economy.(2021)
5516 Rodino, S; Pop, R; Sterie, C; Giuca, A; Dumitru, E Developing an Evaluation Framework for Circular Agriculture: A Pathway to Sustainable Farming(2023)Agriculture-Basel, 13, 11
16853 Rocchi, L; Paolotti, L; Cortina, C; Fagioli, FF; Boggia, A Measuring circularity: an application of modified Material Circularity Indicator to agricultural systems(2021)Agricultural And Food Economics, 9, 1
22556 H-Hargitai, R; Somogyi, V Impact of water as raw material on material circularity - A case study from the Hungarian food sector(2023)Heliyon, 9.0, 7
6163 Samani, P Synergies and gaps between circularity assessment and Life Cycle Assessment (LCA)(2023)
25341 Moller, H; Lyng, KA; Röös, E; Samsonstuen, S; Olsen, HF Circularity indicators and added value to traditional LCA impact categories: example of pig production(2024)International Journal Of Life Cycle Assessment, 29, 8
Scroll