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Carbon-intensive logistics and food security: structural vulnerability in global food imports

炭素集約的な物流と食料安全保障:世界の食料輸入における構造的脆弱性 (AI 翻訳)

Omar Abu Risha, Jifan Ren, Mohammed Ismail Alhussam, Mohamad Ali Alhussam, Mohammed Azam, Nour A. J. Azam

Frontiers in Sustainable Food Systems📚 査読済 / ジャーナル2026-06-12#サプライチェーンOrigin: Global経営インパクト: 調達リスク対象セクター: agriculture
DOI: 10.3389/fsufs.2026.1807915
原典: https://doi.org/10.3389/fsufs.2026.1807915

🤖 gxceed AI 要約

日本語

この研究は、国際的な食料貿易における輸送排出量と食料安全保障の関係を分析。動的パネルモデルを用いて169カ国を分析し、輸送排出量の高さが食料安全保障に負の影響を与えることを示す。特に輸入依存度の高い国でその影響が顕著であり、供給源の多様化が緩和効果を持つ。政策提言として低炭素海運回廊の開発や炭素価格制度の設計を提案。

English

This study examines the relationship between transport emissions from imported food and national food security. Using a dynamic panel model on 169 countries, it finds that higher transport emissions are negatively associated with food security, especially in import-dependent economies. Source diversification moderates but does not eliminate the adverse association. Policy implications include developing low-carbon shipping corridors and designing carbon pricing with safeguards for vulnerable importers.

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

日本は食料輸入依存度が高く、本論文の示す「炭素集約的な物流が食料安全保障を脅かす」知見は、日本のGX政策(特にGHG排出削減と食料安全保障の両立)に示唆を与える。SSBJ/有報ではScope3排出量の開示が進む中、輸入物流の脱炭素化が企業のリスク管理に直結する点が注目される。

In the global GX context

This paper highlights a tension between decarbonization of trade logistics and food security, relevant to global GX discussions on supply chain resilience and carbon pricing. It provides empirical evidence that carbon-intensive import logistics increase vulnerability, which should inform ISSB/CSRD disclosures on supply chain emissions and transition risk.

👥 読者別の含意

🔬研究者:The paper offers a novel empirical link between food trade emissions and food security using a global panel, useful for researchers studying supply chain sustainability and food systems.

🏢実務担当者:Companies in food import/retail can use findings to assess logistics-related climate risks and prioritize low-carbon shipping options.

🏛政策担当者:Policymakers should consider food security implications when designing carbon pricing on shipping and invest in low-carbon logistics infrastructure for vulnerable importers.

📄 Abstract(原文)

International food trade can underpin food availability, yet the carbon intensity of import logistics may signal greater exposure to disruption risks in food-import supply chains and weaken food security performance. This study examines whether transport emissions from imported food are associated with national food security and whether supply-chain structure conditions this relationship. Using bilateral food flows, we construct importer-year transport emissions through a ton-kilometer approach with mode-specific emission factors. A dynamic panel model, estimated using two-step System GMM, is applied to 169 countries to address persistence, unobserved heterogeneity, and endogeneity. Higher transport emissions are negatively associated with food security outcomes, with the sign remaining stable across specifications although statistical precision varies with the treatment of import scale. This association is particularly pronounced among highly import-dependent economies and is moderated by import-source diversification. Model-implied simulations indicate substantially larger declines in highly import-dependent economies than in low-dependence economies, while diversification attenuates, but does not eliminate, the adverse association. These heterogeneity patterns are consistent with an exposure interpretation: emissions proxy carbon-intensive import logistics that heighten exposure to cost and disruption shocks. The findings suggest that the logistics structure of food trade can constrain efforts to sustain food security under tightening decarbonization pressures. Policy priorities include developing low-carbon shipping corridors, designing carbon-pricing measures with safeguards for vulnerable importers, and strengthening sourcing diversification, route reliability, and logistics redundancy as integral components of sustainable supply-chain design.

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