Knowledge Agora



Similar Articles

Title Ecological network analysis of growing tomatoes in an urban rooftop greenhouse
ID_Doc 21530
Authors Piezer, K; Petit-Boix, A; Sanjuan-Delmás, D; Briese, E; Celik, L; Rieradevall, J; Gabarrell, X; Josa, A; Apul, D
Title Ecological network analysis of growing tomatoes in an urban rooftop greenhouse
Year 2019
Published
Abstract Urban agriculture has emerged as an alternative to conventional rural agriculture seeking to foster a sustainable circular economy in cities. When considering the feasibility of urban agriculture and planning for the future of food production and energy, it is important to understand the relationships between energy flows throughout the system, identify their strengths and weaknesses, and make suggestions to optimize the system. To address this need, we analyzed the energy flows for growing tomatoes at a rooftop greenhouse (RTG). We used life cycle assessment (LCA) to identify the flows within the supply chain. We further analyzed these flows using ecological network analysis (ENA), which allowed a comparison of the industrial system to natural systems. Going beyond LCA, ENA also allowed us to focus more on the relationships between components. Similar to existing ENA studies on urban metabolism, our results showed that the RTG does not mimic the perfect pyramidal structure found in natural ecosystems due to the system's dependency on fossil fuels throughout the supply chain and each industry's significant impact on wasted energy. However, it was discovered that the RTG has strong foundational relationships in its industries, demonstrating overall positive utility; this foundation can be improved by using more renewable energy and increasing the recycling rates throughout the supply chain, which will in turn improve the hierarchy of energy flows and overall energy consumption performance of the system. (C) 2018 Elsevier B.V. All rights reserved.
PDF http://manuscript.elsevier.com/S0048969718337446/pdf/S0048969718337446.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)
21900 Rufí-Salís, M; Petit-Boix, A; Villalba, G; Gabarrell, X; Leipold, S Combining LCA and circularity assessments in complex production systems: the case of urban agriculture(2021)
28128 Manríquez-Altamirano, A; Sierra-Pérez, J; Muñoz, P; Gabarrell, X Analysis of urban agriculture solid waste in the frame of circular economy: Case study of tomato crop in integrated rooftop greenhouse(2020)
15461 Weidner, T; Yang, AD The potential of urban agriculture in combination with organic waste valorization: Assessment of resource flows and emissions for two european cities(2020)
21189 Manríquez-Altamirano, A; Sierra-Pérez, J; Muñoz, P; Gabarrell, X Identifying potential applications for residual biomass from urban agriculture through eco-ideation: Tomato stems from rooftop greenhouses(2021)
20009 Pena, A; Rovira-Val, R; Mendoza, JMF Life cycle cost analysis of tomato production in innovative urban agriculture systems(2022)
13842 Li, LY; Li, X; Chong, C; Wang, CH; Wang, XN A decision support framework for the design and operation of sustainable urban farming systems(2020)
Scroll