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Agroforestry Standards for Regenerative Agriculture

Author

Listed:
  • Craig R. Elevitch

    (Agroforestry Net, 76-5921 Mamalahoa Hwy, #5, Holualoa, HI 96725, USA)

  • D. Niki Mazaroli

    (Strategy Research Science, Ventura, CA 93003, USA)

  • Diane Ragone

    (Breadfruit Institute, National Tropical Botanical Garden, 3530 Papalina Road, Kalaheo, HI 96741, USA)

Abstract

Agroforestry is increasingly being recognized as a holistic food production system that can have numerous significant environmental, economic, and social benefits. This growing recognition is paralleled in the USA by the budding interest in regenerative agriculture and motivation to certify regenerative practices. Current efforts to develop a regenerative agriculture certification offer an opportunity to consider agroforestry’s role in furthering regenerative goals. To understand this opportunity, we first examine how agroforestry practices can advance regenerative agriculture’s five core environmental concerns: soil fertility and health, water quality, biodiversity, ecosystem health, and carbon sequestration. Next, we review a subset of certification programs, standards, guidelines, and associated scientific literature to understand existing efforts to standardize agroforestry. We determine that development of an agroforestry standard alongside current efforts to certify regenerative agriculture offers an opportunity to leverage common goals and strengths of each. Additionally, we determine that there is a lack of standards with measurable criteria available for agroforestry, particularly in temperate locations. Lastly, we propose a framework and general, measurable criteria for an agroforestry standard that could potentially be implemented as a standalone standard or built into existing agriculture, forestry, or resource conservation certification programs.

Suggested Citation

  • Craig R. Elevitch & D. Niki Mazaroli & Diane Ragone, 2018. "Agroforestry Standards for Regenerative Agriculture," Sustainability, MDPI, vol. 10(9), pages 1-21, September.
  • Handle: RePEc:gam:jsusta:v:10:y:2018:i:9:p:3337-:d:170571
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    References listed on IDEAS

    as
    1. Matthew Heron Wilson & Sarah Taylor Lovell, 2016. "Agroforestry—The Next Step in Sustainable and Resilient Agriculture," Sustainability, MDPI, vol. 8(6), pages 1-15, June.
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    Cited by:

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    2. Luján Soto, Raquel & Cuéllar Padilla, Mamen & de Vente, Joris, 2020. "Participatory selection of soil quality indicators for monitoring the impacts of regenerative agriculture on ecosystem services," Ecosystem Services, Elsevier, vol. 45(C).
    3. Kelly R. Wilson & Robert L. Myers & Mary K. Hendrickson & Emily A. Heaton, 2022. "Different Stakeholders’ Conceptualizations and Perspectives of Regenerative Agriculture Reveals More Consensus Than Discord," Sustainability, MDPI, vol. 14(22), pages 1-14, November.
    4. Elevitch, Craig R. & Johnson, C. Richard, 2020. "A procedure for ranking parameter importance for estimation in predictive mechanistic models," Ecological Modelling, Elsevier, vol. 419(C).
    5. Tom O’Donoghue & Budiman Minasny & Alex McBratney, 2022. "Regenerative Agriculture and Its Potential to Improve Farmscape Function," Sustainability, MDPI, vol. 14(10), pages 1-25, May.
    6. Jana Krčmářová & Lukáš Kala & Alica Brendzová & Tomáš Chabada, 2021. "Building Agroforestry Policy Bottom-Up: Knowledge of Czech Farmers on Trees in Farmland," Land, MDPI, vol. 10(3), pages 1-18, March.
    7. André Eduardo Biscaia Lacerda & Ana Lúcia Hanisch & Evelyn Roberta Nimmo, 2020. "Leveraging Traditional Agroforestry Practices to Support Sustainable and Agrobiodiverse Landscapes in Southern Brazil," Land, MDPI, vol. 9(6), pages 1-19, June.
    8. repec:caa:jnlage:v:preprint:id:281-2023-agricecon is not listed on IDEAS
    9. Achokh, Yuri R., 2020. "Improvement of the economic efficiency of protective forest plantations in the agricultural sector of the Russian Federation," Economic Consultant, Roman I. Ostapenko, vol. 29(1), pages 39-48.
    10. Jha, Srijna & Kaechele, Harald & Sieber, Stefan, 2021. "Factors influencing the adoption of agroforestry by smallholder farmer households in Tanzania: Case studies from Morogoro and Dodoma," Land Use Policy, Elsevier, vol. 103(C).
    11. Dong Chen & Kangning Xiong & Juan Zhang, 2022. "Progress on the Integrity Protection in the Natural World Heritage Site and Agroforestry Development in the Buffer Zone: An Implications for the World Heritage Karst," IJERPH, MDPI, vol. 19(24), pages 1-18, December.
    12. Yudha Kristanto & Suria Tarigan & Tania June & Bambang Sulistyantara & Pini Wijayanti, 2024. "Indirect use value of improved soil health as natural capital that supports essential ecosystem services: A case study of cacao agroforestry," Agricultural Economics, Czech Academy of Agricultural Sciences, vol. 70(3), pages 137-154.
    13. Rhyllary Coelho e Silva & Ricardo de Siqueira Camargo & Gabriel da Silva Medina & Mariana Gatti & Eva Sevigne-Itoiz & Lorenzo Di Lucia & Onesmus N. Mwabonje, 2022. "Fashion Market Niches for Organic Agroforestry Cotton: Market Potential for Promoting Sustainable Supply Chains," Sustainability, MDPI, vol. 15(1), pages 1-17, December.
    14. Schreefel, L. & van Zanten, H.H.E. & Groot, J.C.J. & Timler, C.J. & Zwetsloot, M.J. & Schrijver, A. Pas & Creamer, R.E. & Schulte, R.P.O. & de Boer, I.J.M., 2022. "Tailor-made solutions for regenerative agriculture in the Netherlands," Agricultural Systems, Elsevier, vol. 203(C).

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