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持続可能な農業のためのカーボンファーミング:土壌炭素隔離、栄養管理、気候レジリエンスに関する批判的レビュー

Carbon Farming for Sustainable Agriculture: A Critical Review of Soil Carbon Sequestration, Nutrient Management and Climate Resilience (原題)

Suneel Kumar, Devesh Pathak, Navneet Kumar Mishra, Hariom Mishra, Prem Shanker, Raisen Pal

Archives of Current Research International📚 査読済 / ジャーナル2026-09-05#炭素会計対象セクター: agriculture
DOI: 10.9734/acri/2026/v26i92149
原典: https://doi.org/10.9734/acri/2026/v26i92149

🤖 gxceed AI 要約

日本語

本レビューは、カーボンファーミングを土壌炭素隔離・栄養管理・気候レジリエンスの統合的戦略として評価。被覆作物や有機物施用などは炭素便益が大きいが、効果は地域条件に依存し、炭素蓄積は有限で可逆的。追加性・永続性・測定プロトコルの厳格化が必要と結論。

English

This critical review evaluates carbon farming as an integrated strategy for soil carbon sequestration, nutrient management, and climate resilience. Practices like cover crops and organic amendments show carbon benefits, but outcomes vary by context. Carbon gains are finite and reversible, requiring rigorous accounting, additionality, and permanence protocols.

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、農地土壌への炭素貯留はみどりの食料システム戦略やJ-クレジット制度と関連し、カーボンファーミングの実践と認証の信頼性が課題。本レビューの厳格な算定要件は、国内の農地由来クレジットの質向上に示唆を与える。

In the global GX context

Globally, carbon farming is increasingly linked to carbon markets and climate policy. This review's emphasis on rigorous accounting, additionality, and permanence aligns with international standards like ISO 14064 and the Science Based Targets initiative's land sector guidance, informing credible agricultural climate action.

👥 読者別の含意

🔬研究者:Provides a comprehensive synthesis of evidence on soil carbon sequestration practices and their climate mitigation potential, highlighting research gaps and methodological challenges.

🏢実務担当者:Offers practical insights into which carbon farming practices are most effective and the importance of robust measurement and verification for credible carbon credits.

🏛政策担当者:Informs policy design for agricultural climate mitigation, emphasizing the need for conservative crediting and whole-system accounting to ensure environmental integrity.

📄 Abstract(原文)

Carbon farming has moved from a soil-management concept to a prominent climate-policy proposition, yet the agronomic value of building soil organic carbon and the credibility of soil carbon as a durable climate-removal pathway are not identical questions. This critical narrative review evaluates carbon farming as an integrated strategy for soil carbon sequestration, nutrient management and climate resilience. The literature was selected from accessible scholarly indexes and disciplinary databases, supplemented by citation chaining and authoritative source verification, with emphasis on field experiments, long-term trials, meta-analyses, mechanistic soil-carbon studies and work on measurement, reporting and verification. Evidence indicates that practices which increase carbon inputs, reduce avoidable carbon losses and improve biological nutrient cycling can rebuild depleted soil organic carbon, particularly where initial stocks are low and management constraints are substantial. Cover crops, diversified rotations, organic amendments, agroforestry and context-appropriate biochar generally show stronger or more interpretable carbon benefits than simple claims based on reduced tillage alone. Benefits for nutrient retention, aggregation, rooting conditions and yield stability are plausible and often observed, but vary with climate, soil texture and mineralogy, baseline fertility, water regime, residue availability and the duration of management. Carbon gains are finite, reversible and vulnerable to sampling artefacts; transferring manure or crop residues between locations can also create apparent project gains without equivalent net atmospheric removal. Credible carbon farming therefore requires whole-system greenhouse-gas accounting, explicit treatment of additionality and permanence, consistent soil-depth and bulk-density protocols, and conservative crediting. The strongest case for carbon farming is consequently not as a universal substitute for emissions reduction, but as a geographically targeted form of soil restoration that can deliver climate mitigation alongside agronomic and resilience co-benefits when carbon accounting is rigorous and nutrient trade-offs are managed.

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