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気候スマートな土地管理:温室効果ガス成果と採用への社会経済的経路

Climate‐smart land management: Greenhouse gas outcomes and social and economic pathways to adoption (原題)

K. Bartowitz, Janice M. Parks, D. Berardi, Julia Smith, K. Haltinner, A. Maas, Ashley P. Ballantyne, Laura Laumatia, Dewan Abdullah Al Rafi, E. Walsh, Dianne Baumann, Nick Koenig, Laurel M. Lynch, Tara W. Hudiburg

Plants, People, Planet📚 査読済 / ジャーナル2026-09-23#炭素会計Origin: Global経営インパクト: 調達リスク対象セクター: agriculture
DOI: 10.1002/ppp3.70277
原典: https://doi.org/10.1002/ppp3.70277
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🤖 gxceed AI 要約

日本語

約200件の実験研究を系統的にレビューし、農地・森林における気候スマート管理のGHG削減効果を評価。年作物では減耕起・水管理・有機資材が有効な一方、化学肥料や残渣保持は排出を増やす場合がある。多年生作物への転換が最大の削減効果を示し、森林施業の効果は小さい。実測可能な成果に支払いを紐づける制度設計の必要性を強調する。

English

A systematic review of ~200 experimental studies assesses GHG outcomes of climate-smart land management. Annual crop practices like reduced tillage and organic amendments show consistent mitigation, while chemical fertilizers and residue retention can raise emissions. Perennial conversion yields the largest gains; forest practices vary. The authors urge tying carbon payments to verified biogeochemical performance.

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

日本では農林業のGHG削減とJ-クレジット制度、食料・農林水産分野の脱炭素戦略に関連。SSBJ開示やScope 3算定における農業由来排出の評価にも示唆を与える。

In the global GX context

Relevant to global carbon farming and soil carbon crediting debates under CSRD, SBTi FLAG guidance, and voluntary carbon markets. Highlights the need for MRV-aligned payments, informing ISSB/TCFD land-sector disclosure.

👥 読者別の含意

🔬研究者:気候スマート農業の実証エビデンスのばらつきと、全体系GHG会計の必要性を理解できる。

🏢実務担当者:自社サプライチェーン上の農業由来排出削減策の選定と、カーボンクレジット調達の妥当性判断に活用可能。

🏛政策担当者:炭素支払いを実測成果に紐づける制度設計と、リーケージ回避のインセンティブ設計に示唆。

📄 Abstract(原文)

Climate change poses one of the greatest threats to natural and working lands, reducing the resilience of agricultural and forest productivity. Because land management is a leading source of greenhouse gas (GHG) emissions, climate‐smart management practices are being implemented to reduce net emissions while sustaining yields. However, their effectiveness varies across systems, scales, and contexts. Here, we provide a systematic review of nearly 200 experimental studies reporting GHG outcomes and discuss the economic and social factors that drive practitioner adoption or resistance. Our findings can inform policy decisions by identifying realistic management practices with demonstrated effectiveness. Climate‐smart land management is widely promoted as a strategy to reduce greenhouse gas (GHG) emissions. Yet, robust empirical evidence on their effectiveness remains poorly reported. This study synthesizes global measurements of net GHG outcomes across major land‐use types, focusing on treatments that directly reduce emissions or increase carbon stocks relative to business‐as‐usual (BAU) scenarios. Results reveal substantial variability across systems. Annual crop interventions show the most consistent mitigation benefits, particularly for reduced tillage, water management, and organic amendments. Practices using chemical fertilizers, or retaining or adding harvest residues often increased emissions. Perennial crops exhibited the largest responses, with conversion to perennial crops resulting in strong mitigation. Forest practices produced smaller changes compared to BAU: afforestation and vegetation diversification decreased emissions, whereas thinning and prescribed burning generally increased emissions. Practices labeled as “climate‐smart” may not consistently deliver GHG mitigation. These varied outcomes underscore the need for full‐system GHG accounting and policies that incentivize practices with demonstrated mitigation benefits. Aligning payments with biogeochemical evidence of GHG mitigation is critical in creating cost‐effective and credible carbon programs. Where mitigation outcomes can be measured and verified at relatively low cost, payments should be tied to realized performance. Pay‐for‐practice approaches should only be used when direct verification is prohibitively expensive. Greater attention to human behavioral responses and program incentives is needed to avoid unintended or perverse outcomes (e.g., leakage). Even biogeochemically effective practices will fail to be adopted without community acceptance, which requires partnership with communities and, for tribal nations, engagement grounded in tribal self‐determination.

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