High-carbon primary forests as conservation targets in Ontario, Canada
カナダ・オンタリオ州における保全対象としての高炭素原生林 (AI 翻訳)
Peter Potapov, Svetlana Turubanova, Peter A. Quinby, Alexey Yaroshenko, John Brandt, Andrés Hernández-Serna, Alexandra Tyukavina, Elizabeth Goldman, Nancy Harris
🤖 gxceed AI 要約
日本語
本研究は、カナダ・オンタリオ州の高炭素原生林(HCPF)を特定・監視する運用マッピングツールを提示。2020年のHCPF面積は2840万haで、全森林の80.7%を占めるが、産業伐採区域内では29.7%に低下。HCPFの炭素蓄積密度は断片化・撹乱林より7%(産業林域では18%)高い。2021~2025年にHCPF面積は3.5%減少し、伐採の加速が確認された。
English
This study presents an operational mapping tool to identify and monitor high-carbon primary forests (HCPF) in Ontario, Canada. In 2020, HCPF covered 28.4 Mha, comprising 80.7% of forests outside industrial timber concessions but only 29.7% within industrial forests. HCPF carbon stock density was 7% (18% in industrial region) higher than fragmented forests. From 2021-2025, HCPF area decreased by 3.5%, with logging acceleration observed.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では森林吸収源のJ-クレジット制度や生物多様性保全が進む中、本手法は原生林の炭素ストック評価・モニタリングに応用可能。特に、伐採と炭素貯留のトレードオフを定量的に示す点が、国内の森林経営政策に示唆を与える。
In the global GX context
This paper contributes to global forest carbon accounting and the Kunming-Montréal Global Biodiversity Framework (Target 3). The HCPF mapping method offers a replicable approach for identifying high-carbon primary forests, supporting climate mitigation and biodiversity conservation policies worldwide.
👥 読者別の含意
🔬研究者:Provides a validated methodology for mapping high-carbon primary forests using remote sensing, useful for carbon stock and fragmentation studies.
🏢実務担当者:Forestry and conservation organizations can adopt this tool to prioritize protection and monitor carbon-rich primary forests.
🏛政策担当者:Highlights the need to protect primary forests for carbon storage and biodiversity, informing national conservation strategies.
📄 Abstract(原文)
Ontario’s forests are changing rapidly under the pressure of industrial logging, coupled with the effects of climate change, which is facilitating increased wildfires. The reduction of mature and old-growth forests negatively affects ecosystem functions, including wildlife habitat suitability and long-term carbon storage. Here, we present an operational mapping tool to identify and monitor the extent of high-carbon primary forests (HCPF) to support their protection and track progress toward the Kunming-Montréal Global Biodiversity Framework’s Target 3. We define HCPF as mature and old-growth, naturally regenerated forests that have not experienced tree canopy disturbance over the past 50 years and are located within unfragmented landscape patches with a minimum area of 1,000 ha. By integrating existing maps, satellite-based products, and detailed manual image interpretation, we mapped 28.4 Mha of HCPF in Ontario for 2020. HCPF comprised 80.7% of all forests outside industrial timber concessions, whereas within private and industrial forests, their percentage was much lower (29.7%). They represented less than 2% of all forests within the Mixedwood Plains ecozone of southern Ontario. The HCPF vegetation carbon stock density is higher than that of fragmented and recently disturbed forests by 7% within the entire province, and by 18% within the region of industrial forestry. Ontario’s unfragmented landscapes contain more than 72% of the total soil organic carbon stock of the province, illustrating their importance for long-term carbon storage. Unfragmented landscapes are essential for the survival of Ontario’s woodland caribou populations; however, their percentage within most caribou population ranges was below the management threshold of 65% and continued to decline. From 2021 to 2025, Ontario’s HCPF area decreased by 3.5% (0.2 Mha/yr) due to wildfires and logging. Within the region of industrial forestry, the proportion of 2021–2025 logging within HCPF exceeded that in non-HCPF forests, and the annual logging area within HCPF increased by 55%. This acceleration of logging and associated road construction illustrates that HCPF, as opposed to secondary forests, continue to be the major source of timber in Ontario. The HCPF method provides the tools and data required to accurately assess and monitor mature and old-growth primary forests, and to develop effective conservation strategies and policies at the provincial and national levels. As demonstrated for Ontario, the HCPF method can be applied to all provinces to facilitate the protection of some of the last remaining primary forests in Canada.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3389/ffgc.2026.1871841first seen 2026-07-30 05:22:27
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