Optimizing land cover planning for carbon neutrality: Policy insights from scenario-based vegetation carbon sink assessment in the Guangdong–Hong Kong–Macao Greater Bay Area, China
カーボンニュートラルに向けた土地被覆計画の最適化:中国広東・香港・マカオ大湾区におけるシナリオベースの植生炭素吸収源評価による政策洞察 (AI 翻訳)
Youyue Wen, Zhichao Chen, Saoman Cai, Jie Yang
🤖 gxceed AI 要約
日本語
本研究は、中国の広東・香港・マカオ大湾区を対象に、4つのシナリオ(経済優先、カーボンニュートラル優先、持続可能開発、自然開発)下での土地被覆変化と植生炭素吸収量の動態を評価した。多目的計画法とカーボンニュートラル効果マトリックスを用いた枠組みにより、持続可能開発シナリオが経済的利益と炭素吸収のバランスを取る最適解であることを示した。政策立案者に具体的な土地被覆計画の指針を提供する。
English
This study evaluates vegetation carbon sink dynamics under four land cover scenarios (economic development first, carbon neutrality first, sustainable development, natural development) in the Guangdong-Hong Kong-Macao Greater Bay Area. Using a framework integrating Multi-Objective Programming and a Carbon Neutrality Effect matrix, it finds that the sustainable development scenario offers a viable balance between economic growth and carbon sink enhancement, with minimal carbon loss. The findings provide actionable insights for land cover planning to support carbon neutrality.
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
中国の大湾区を対象とした研究だが、都市化と炭素吸収源の両立は日本の国土計画や都市緑化政策にも示唆を与える。SSBJやカーボンニュートラル戦略における土地利用の位置づけにも関連する。
In the global GX context
This study provides a framework for balancing economic development and carbon sinks through land cover optimization. Globally, it contributes to discussions on nature-based solutions and integrated land-use planning for carbon neutrality, relevant to TCFD/ISSB's consideration of natural capital.
👥 読者別の含意
🔬研究者:This study offers a quantitative framework for assessing vegetation carbon sink dynamics under land cover scenarios, relevant for researchers working on carbon accounting and land-use modeling.
🏢実務担当者:Corporate sustainability teams can use the scenario-based approach to evaluate land-use impacts on carbon footprints and inform nature-based offset strategies.
🏛政策担当者:Policymakers can leverage the Carbon Neutrality Effect matrix and scenario analysis to design land cover policies that align economic growth with carbon neutrality targets.
📄 Abstract(原文)
Mitigating national climate change requires achieving carbon neutrality, necessitating innovative land cover strategies that reconcile economic development with enhanced carbon sinks, particularly in rapidly urbanizing megaregions such as the Guangdong–Hong Kong–Macao Greater Bay Area (GBA) in China. This study developed a novel assessment framework that integrates Multi-Objective Programming (MOP) land cover simulations with a Carbon Neutrality Effect (CNE) matrix and a neighborhood proxy method. This framework provides a quantitative evaluation of vegetation carbon sink dynamics resulting from land cover transitions during 2020–2060 under four scenarios: economic development first (ED), carbon neutrality first (EC), sustainable development (EDC), and natural development (EN). Model validation achieved high accuracy (Kappa coefficient=0.77, Overall Accuracy (OA)=0.84). Projected land cover changes revealed distinct transition patterns. Specifically, under the ED and EN scenarios, land cover changes will dominate by the expansion of urban area at the losses of grassland and crop land; under the EC scenario, the new forested land is primarily from crop land and grassland; and under the EDC scenario, urban area and forested land will achieve simultaneous expansion. Moreover, this study found the net vegetation carbon losses of 51.43×10 10 and 274.54×10 10 g C under the ED and EN scenarios, respectively, undermining carbon neutrality. In contrast, there will be a significant net carbon gain (64.52×10 10 g C) under the EC scenario. Crucially, the EDC scenario demonstrates a viable balance, minimizing vegetation carbon loss (7.00×10 10 g C) while substantially enhancing both socioeconomic benefit (1.34×10 12 CNY/a) and vegetation carbon sink benefit (0.15×10 12 CNY/a). This study underscores the critical role of optimized land cover planning in fostering synergistic economic growth and carbon neutrality. The findings provide actionable insights for the implementation of ‘Dual Carbon’ strategy in the GBA and serve as a valuable reference for sustainable land management in climate-vulnerable coastal megacities worldwide.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1016/j.regsus.2026.100368first seen 2026-07-22 04:58:49
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