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An integrated urban metabolism and ecosystem service assessment: The case study of Lima, Peru

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  • Úrsula Cárdenas‐Mamani
  • Daniela Perrotti

Abstract

Against the backdrop of urbanization and its environmental impacts, this study expands urban metabolism research by integrating knowledge from the ecosystem service (ES) concept. A framework was put forward to capitalize on ES knowledge in metabolic studies and material flow analysis in particular while supporting dynamic analysis of ES supply and demand flows through factors such as pressure, state, and drivers. This framework is tested in the city of Lima, Peru, to evaluate six ESs and express their contribution in a standard economy‐wide material flow analysis of the city. Moreover, simulations were deployed to forecast spatiotemporal variations of resource flows and emissions until the year 2050. Findings indicate a gap between the city's ES demand and the availability of its local natural resources. Demand exceeds local supply ES flows in Lima, with the exception of surface water provision and cane‐mats for construction materials, representing 141% and 128% of the total supply, respectively. However, they are projected to reduce by the year 2050: 19% and 22% respectively. Carbon sequestration supply represents 0.01% of the total demand (carbon emissions). Peri‐urban agriculture production represents 4.3% of the total food consumption. Our findings offer a new perspective on the role of nature in cities and highlight the need to implement urban sustainability policies that can help overcome metabolic deficiencies while prioritizing resource efficiency, decarbonization, and conservation/generation of green infrastructure in the city.

Suggested Citation

  • Úrsula Cárdenas‐Mamani & Daniela Perrotti, 2024. "An integrated urban metabolism and ecosystem service assessment: The case study of Lima, Peru," Journal of Industrial Ecology, Yale University, vol. 28(6), pages 1567-1581, December.
  • Handle: RePEc:bla:inecol:v:28:y:2024:i:6:p:1567-1581
    DOI: 10.1111/jiec.13532
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    References listed on IDEAS

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    1. Vanesa Castán Broto & Adriana Allen & Elizabeth Rapoport, 2012. "Interdisciplinary Perspectives on Urban Metabolism," Journal of Industrial Ecology, Yale University, vol. 16(6), pages 851-861, December.
    2. Verena Göswein & Jonathan Krones & Giulia Celentano & John E. Fernández & Guillaume Habert, 2018. "Embodied GHGs in a Fast Growing City: Looking at the Evolution of a Dwelling Stock using Structural Element Breakdown and Policy Scenarios," Journal of Industrial Ecology, Yale University, vol. 22(6), pages 1339-1351, December.
    3. repec:plo:pone00:0188182 is not listed on IDEAS
    4. Stefan Pauliuk & Anders Arvesen & Konstantin Stadler & Edgar G. Hertwich, 2017. "Industrial ecology in integrated assessment models," Nature Climate Change, Nature, vol. 7(1), pages 13-20, January.
    5. Noelia S. Bedoya-Perales & Glenio Piran Dal’ Magro, 2021. "Quantification of Food Losses and Waste in Peru: A Mass Flow Analysis along the Food Supply Chain," Sustainability, MDPI, vol. 13(5), pages 1-15, March.
    6. Kim, Jungbin & Park, Kiho & Yang, Dae Ryook & Hong, Seungkwan, 2019. "A comprehensive review of energy consumption of seawater reverse osmosis desalination plants," Applied Energy, Elsevier, vol. 254(C).
    7. Thomas Elliot & Javier Babí Almenar & Samuel Niza & Vânia Proença & Benedetto Rugani, 2019. "Pathways to Modelling Ecosystem Services within an Urban Metabolism Framework," Sustainability, MDPI, vol. 11(10), pages 1-22, May.
    8. Wiedenhofer, Dominik & Fishman, Tomer & Lauk, Christian & Haas, Willi & Krausmann, Fridolin, 2019. "Integrating Material Stock Dynamics Into Economy-Wide Material Flow Accounting: Concepts, Modelling, and Global Application for 1900–2050," Ecological Economics, Elsevier, vol. 156(C), pages 121-133.
    9. Harrison, Paula A. & Dunford, Rob & Barton, David N. & Kelemen, Eszter & Martín-López, Berta & Norton, Lisa & Termansen, Mette & Saarikoski, Heli & Hendriks, Kees & Gómez-Baggethun, Erik & Czúcz, Báli, 2018. "Selecting methods for ecosystem service assessment: A decision tree approach," Ecosystem Services, Elsevier, vol. 29(PC), pages 481-498.
    10. Sun, Lu & Li, Hong & Dong, Liang & Fang, Kai & Ren, Jingzheng & Geng, Yong & Fujii, Minoru & Zhang, Wei & Zhang, Ning & Liu, Zhe, 2017. "Eco-benefits assessment on urban industrial symbiosis based on material flows analysis and emergy evaluation approach: A case of Liuzhou city, China," Resources, Conservation & Recycling, Elsevier, vol. 119(C), pages 78-88.
    11. Ilse M. Voskamp & Sven Stremke & Marc Spiller & Daniela Perrotti & Jan Peter Hoek & Huub H. M. Rijnaarts, 2017. "Enhanced Performance of the Eurostat Method for Comprehensive Assessment of Urban Metabolism: A Material Flow Analysis of Amsterdam," Journal of Industrial Ecology, Yale University, vol. 21(4), pages 887-902, August.
    12. Asterios Papageorgiou & Rajib Sinha & Björn Frostell & Cecilia Sundberg, 2020. "A new physical accounting model for material flows in urban systems with application to the Stockholm Royal Seaport District," Journal of Industrial Ecology, Yale University, vol. 24(3), pages 459-472, June.
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    1. Yingjie Gao & Yating Yang & Boyang Wu & Shengnan Zhao & Lingyun Fan, 2026. "Synergistic evolution and transition mechanism of urban resilience and efficiency in the Yangtze River Delta urban agglomeration, China," Humanities and Social Sciences Communications, Palgrave Macmillan, vol. 13(1), pages 1-19, December.

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