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Developed-developing world partnerships for sustainable development (1): An ecosystem services perspective

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  • Everard, Mark
  • Longhurst, James
  • Pontin, John
  • Stephenson, Wendy
  • Brooks, Joss

Abstract

Developing-developed world partnerships potentially present win-win opportunities for addressing climate-active gas emissions at lower cost whilst propelling developing nations on a lower-carbon trajectory, as carbon emissions, capture and storage are geographically independent. Expanded PES (payment for ecosystem service) principles provides a framework for assessing the transparency and efficacy of partnerships, tested on the model developed by The Converging World (TCW). The TCW partnership model currently links south-west England and Tamil Nadu, raising funds for wind turbines in India to avert emissions from conventional sources and reinvesting operating surpluses into restoration of tropical dry evergreen forest (TDEF). Over assumed 100-year progression to climax community, 123ha of restored TDEF sequesters a conservatively calculated 270,545,880 tCO2. This forest area is restored using operating surpluses from a 2.1MW turbine, which generates renewable energy over 20-year operating life conservatively calculated as averting 80,000 tCO2e compared to a conventional energy mix. Forest restoration funded from turbine generation surpluses represents a substantial ‘multiplier effect’, providing around 3000 times greater overall carbon reductions. Climate regulation is one of a linked set of ecosystem services, albeit a driving ‘anchor service’, that may be optimised to increase overall benefits to stakeholders and contribute to UN Sustainable Development Goals.

Suggested Citation

  • Everard, Mark & Longhurst, James & Pontin, John & Stephenson, Wendy & Brooks, Joss, 2017. "Developed-developing world partnerships for sustainable development (1): An ecosystem services perspective," Ecosystem Services, Elsevier, vol. 24(C), pages 241-252.
  • Handle: RePEc:eee:ecoser:v:24:y:2017:i:c:p:241-252
    DOI: 10.1016/j.ecoser.2016.09.020
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    References listed on IDEAS

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    1. Golpîra, Hêriş & Khan, Syed Abdul Rehman, 2019. "A multi-objective risk-based robust optimization approach to energy management in smart residential buildings under combined demand and supply uncertainty," Energy, Elsevier, vol. 170(C), pages 1113-1129.
    2. Everard, Mark & Longhurst, James & Pontin, John & Stephenson, Wendy & Brooks, Joss & Byrne, Molly, 2018. "Developed-developing world partnerships for sustainable development (3): Reducing carbon sequestration uncertainties in south Indian tropical dry evergreen forest," Ecosystem Services, Elsevier, vol. 32(PB), pages 173-181.
    3. Yan, Haiming & Yang, Huicai & Guo, Xiaonan & Zhao, Shuqin & Jiang, Qun'ou, 2022. "Payments for ecosystem services as an essential approach to improving ecosystem services: A review," Ecological Economics, Elsevier, vol. 201(C).
    4. Xiekui Zhang & Lijun Wu & Zefeng Zhang, 2024. "Does Air Quality Ecological Compensation Improve Total Factor Energy Efficiency?—A Quasi-Natural Experiment from 282 Cities in China," Sustainability, MDPI, vol. 16(14), pages 1-21, July.
    5. Valencia Torres, Angélica & Tiwari, Chetan & Atkinson, Samuel F., 2021. "Progress in ecosystem services research: A guide for scholars and practitioners," Ecosystem Services, Elsevier, vol. 49(C).
    6. Xu, Xibao & Jiang, Bo & Tan, Yan & Costanza, Robert & Yang, Guishan, 2018. "Lake-wetland ecosystem services modeling and valuation: Progress, gaps and future directions," Ecosystem Services, Elsevier, vol. 33(PA), pages 19-28.

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