インドの2都市における都市緑地の炭素貯留量と吸収ポテンシャルから見た持続可能性の展望
Sustainability Perspectives of Urban Green Spaces from Their Carbon Stocks and Sequestration Potential in Two Cities of India (原題)
Manish Ramaiah, Ram Avtar
🤖 gxceed AI 要約
日本語
インドのパナジとトゥムクルの都市緑地(UGS)における樹木、生垣、地被植物の炭素貯留・吸収量を初めて定量評価。樹木1本あたり年間55kgのCO2吸収を推定し、都市緑地全体で数千トンのCO2中和効果を示した。既報より高い吸収率を報告し、都市計画への活用を提案。
English
This study quantifies carbon stocks and sequestration in urban green spaces (UGS) in two Indian cities, Panaji and Tumkur. Based on field data from 4,010 trees, hedges, and groundcover, it estimates an average CO2 sequestration of 55 kg per tree per year, with total UGS offsetting emissions of thousands of residents. The findings highlight the significant role of UGS in climate mitigation and urban sustainability planning.
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、都市緑地の炭素吸収源としての価値は、カーボンニュートラル都市計画や自治体の気候変動適応策に貢献し得る。ただし、SSBJや有報などの企業開示への直接的な関連は薄く、むしろ都市計画や環境政策の基礎データとして有用。
In the global GX context
Globally, this study provides empirical evidence on the carbon sequestration potential of urban green spaces, which is relevant for nature-based solutions and climate mitigation strategies. It supports the integration of UGS into urban climate action plans and could inform reporting frameworks that include land-use and ecosystem services.
👥 読者別の含意
🔬研究者:Provides baseline data on UGS carbon sequestration in tropical cities, useful for comparative studies and modeling.
🏢実務担当者:Urban planners and sustainability teams can use these findings to justify investments in green infrastructure for carbon offsetting.
🏛政策担当者:Local governments can incorporate UGS carbon values into climate action plans and sustainability targets.
📄 Abstract(原文)
The assimilation capacity of the biosphere and the sustainability of the living resources are enhanced by the efficient and continued contribution of the vegetation from all ecoregions of the Earth. The urban greenery fulfills many regulatory ecosystem services (RES) as well. In this regard, the importance of urban green spaces (UGS) in helping to reduce the adverse impacts of overcrowding and changing climate is of pertinence. Lack of quantitative information from urban settings in different climatic regions seriously constrains the recognition of the important role UGS play in carbon storage and sequestration. To assess how the UGS is aiding the retention of carbon, which is photosynthetically assimilated into biomass and/or sequestered, relevant field parameters were collected from 4010 trees belonging to 34 different species, different hedge plants, and groundcover grasses spread in 24,991 m2 area in three parks of Panaji city, India. Standard methods were followed to derive carbon stock and sequestration rates by trees, hedge plants, and groundcover. Notwithstanding wide differences between tree species, the weighted mean of CO2 sequestered per tree averaged 55 kg y−1 (ca. 78.82 tons ha−1) in Panaji city. Accordingly, the CO2 sequestration potential of trees, in the UGS of Panaji (by 76,751 trees) and Tumkur (with an estimated 38,152 trees) cities, respectively, was 4221.31 tons y−1 ha−1 and 2098 tons ha−1 y−1 @ 55 kg tree−1 y−1. It is apparent from this first-time study that calculated tree carbon biomass and species-wise yearly carbon sequestration rates (CSRs) of 78.82 tons ha−1 y−1 and that of carbon production rates of 31.77 tons ha−1 y−1 are far higher than the previously reported CSR estimates variously from 1 to 8 tons ha−1 y−1 and carbon production rates 3.23 to 6.55 tons ha−1 y−1. The hedge row carbon biomass averaged 13.18 tons ha−1 and sequestration of 48.38 tons ha−1 y−1 CO2. Similarly, occupying over 42% of the UGS, the groundcover carbon biomass averaged 14.69 tons ha−1 with sequestration of 53.92 tons CO2 ha−1 y−1. Combined CSP of existing trees, groundcover, and hedge plants in Panaji and Tumkur city UGS apparently neutralize carbon footprint of over 4550 and 2200 Indians at an annual per capita emission of 1.94-ton. It is thus undeniable that in our global fight against climate change, the addition of inputs and data from studies like these can aid in planning mitigation measure as well as in fulfilling local/regional sustainability plans and needs.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3390/su18157789first seen 2026-08-23 04:38:21
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