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Comparing the Carbon Storage Potential of Naturally Regenerated Tea Trees with Default New Zealand Carbon Look-Up Tables: A Case Study

Author

Listed:
  • Thomas Wilson

    (School of Agriculture and Environment, Massey University, Palmerston North, Private Bag 11222, New Zealand)

  • Miles Grafton

    (School of Agriculture and Environment, Massey University, Palmerston North, Private Bag 11222, New Zealand)

  • Matthew Irwin

    (School of Agriculture and Environment, Massey University, Palmerston North, Private Bag 11222, New Zealand)

Abstract

The New Zealand Emissions Trading Scheme allows landowners to be remunerated for the carbon sequestration capabilities of eligible forests established post 1990. For afforested areas of 100 hectares or fewer, carbon sequestration is estimated with the use of default carbon look-up tables administered by the Ministry for Primary Industries. However, a disparity exists between exotic pines ( Pinus radiata ), where carbon sequestration predictions are regionally differentiated, and native species, where carbon sequestration estimations are neither distinguished by species or locality. This paper aims to highlight this inequality by comparing the calculated carbon storage of endemic tree species with the ‘Indigenous Forest’ category in the carbon look-up tables. The carbon storage of 12-year-old naturally regenerated tea trees ( Leptospermum scoparium and Kunzea ericoides ) was calculated using allometric measurements and compared to the look-up tables. The results suggest that carbon look-up tables underestimate the carbon sequestration of native tea trees by 81.8%. A bimodal data distribution suggests that carbon sequestration is heavily dependent on light interception levels. It is recommended that carbon sequestration data for specific native species in different environments are collected and integrated into such tables.

Suggested Citation

  • Thomas Wilson & Miles Grafton & Matthew Irwin, 2023. "Comparing the Carbon Storage Potential of Naturally Regenerated Tea Trees with Default New Zealand Carbon Look-Up Tables: A Case Study," Agriculture, MDPI, vol. 13(4), pages 1-12, April.
  • Handle: RePEc:gam:jagris:v:13:y:2023:i:4:p:856-:d:1122024
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    References listed on IDEAS

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    1. Suzi Kerr & Judd Ormsby & Dominic White, 2021. "Delinking the New Zealand Emissions Trading Scheme from the Kyoto Protocol: comparing theory with practice," Climate Policy, Taylor & Francis Journals, vol. 21(6), pages 792-803, July.
    2. Mario A. Fernandez & Adam J. Daigneault, 2018. "Money Does Grow On Trees: Impacts Of The Paris Agreement On The New Zealand Economy," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 9(03), pages 1-23, August.
    3. Yue Wang & Basil Sharp & Stephen Poletti & Kyung-Min Nam, 2022. "Economic and land use impacts of net zero-emission target in New Zealand," International Journal of Urban Sciences, Taylor & Francis Journals, vol. 26(2), pages 291-308, April.
    4. Manley, Bruce & Maclaren, Piers, 2012. "Potential impact of carbon trading on forest management in New Zealand," Forest Policy and Economics, Elsevier, vol. 24(C), pages 35-40.
    5. Pedersen, Rune Østergaard & Skovsgaard, Jens Peter, 2009. "Impact of bias in predicted height on tree volume estimation: A case-study of intrinsic nonlinearity," Ecological Modelling, Elsevier, vol. 220(20), pages 2656-2664.
    6. Suzi Kerr & Simon Anastasiadis & Alex Olssen & William Power & Levente Tímár & Wei Zhang, 2012. "Spatial and Temporal Responses to an Emissions Trading System Covering Agriculture and Forestry: Simulation Results from New Zealand," Working Papers 12_10, Motu Economic and Public Policy Research.
    7. Catherine Leining & Suzi Kerr & Bronwyn Bruce-Brand, 2020. "The New Zealand Emissions Trading Scheme: critical review and future outlook for three design innovations," Climate Policy, Taylor & Francis Journals, vol. 20(2), pages 246-264, February.
    8. Thomas Carver & Suzi Kerr, 2017. "Facilitating Carbon Offsets from Native Forests," Working Papers 17_01, Motu Economic and Public Policy Research.
    9. Evison, David, 2017. "The New Zealand forestry sector's experience in providing carbon sequestration services under the New Zealand Emissions Trading Scheme, 2008 to 2012," Forest Policy and Economics, Elsevier, vol. 75(C), pages 89-94.
    10. Diaz-Rainey, Ivan & Tulloch, Daniel J., 2018. "Carbon pricing and system linking: Lessons from the New Zealand Emissions Trading Scheme," Energy Economics, Elsevier, vol. 73(C), pages 66-79.
    11. West, Thales A.P. & Monge, Juan J. & Dowling, Les J. & Wakelin, Steve J. & Gibbs, Holly K., 2020. "Promotion of afforestation in New Zealand’s marginal agricultural lands through payments for environmental services," Ecosystem Services, Elsevier, vol. 46(C).
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