ネットゼロの設計:インダストリー5.0、循環システム、深層脱炭素化を統合する枠組み
Architecting Net-Zero: An Integrated Framework Aligning Industry 5.0, Circular Systems, and Deep Decarbonization (原題)
(著者不明)
🤖 gxceed AI 要約
日本語
本レビューはPRISMAガイドラインに沿い、インダストリー5.0、10R循環フレームワーク、ESG要件、深層脱炭素技術を統合的に評価する。デジタルツインやAIは省エネ最適化に寄与するが、長期ネットゼロにはH2DRIやCCUSなど資本集約的な構造転換が必要と指摘。Scope1-3のGHG会計を基盤に、人間中心のサイバーフィジカルシステムと循環生態系、ESG検証を結合した新たな統合フレームワークを提案する。
English
This PRISMA-based review synthesizes literature on Industry 5.0, the 10R circular framework, ESG mandates, and deep decarbonization technologies. It argues that while digital twins and AI optimize energy efficiency, long-term net-zero requires capital-intensive pivots to H2DRI and CCUS. The authors propose an Integrated Framework for Green Manufacturing that couples human-centric cyber-physical systems with circular ecosystems and rigorous Scope 1-3 GHG accounting and ESG validation.
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
日本企業がSSBJ・有報でのScope3開示とGX投資を進める上で、デジタル効率化と構造的脱炭素化を橋渡しする統合視点は実務的示唆が大きい。特に製造業のカーボンニュートラル戦略立案に参照価値がある。
In the global GX context
As ISSB/SSBJ and CSRD push Scope 3 and transition-plan disclosure, this framework offers a conceptual bridge between digital efficiency tools and structural decarbonization for manufacturers. It speaks to the global need for integrated, verifiable net-zero roadmaps beyond siloed ESG reporting.
👥 読者別の含意
🔬研究者:デジタル化・循環性・化学的脱炭素を統合する分析枠組みの設計論として、脱炭素経路研究の新たな理論的視座を提供する。
🏢実務担当者:Scope1-3会計を軸に、AI最適化とH2DRI/CCUS投資を組み合わせた製造業のネットゼロ移行ロードマップ検討に活用できる。
🏛政策担当者:産業脱炭素政策において、デジタル投資と構造転換投資を一体的に促す枠組み設計の参考になる。
📄 Abstract(原文)
The global transition toward net-zero manufacturing is increasingly urgent as industrial sectors face mounting regulatory pressures and severe resource constraints. While isolated advances in digital optimization and renewable energy integration have been achieved, existing operational frameworks suffer from critical shortcomings. Predominantly, previous systems rely on siloed, fragmented methodologies that treat digitalization, circularity, and chemical decarbonization as separate operational tracks, leading to systemic inefficiencies. This review critically evaluates current green manufacturing pathways, systematically adhering to PRISMA guidelines to synthesize recent high-impact literature. The scope encompasses the expanded 10R circular framework, Industry 5.0, Environmental, Social, and Governance (ESG) mandates, and deep decarbonization technologies. A vital component of modern compliance is rigorous Scope 1, 2, and 3 Greenhouse Gas (GHG) accounting, which provides the mathematical foundation for tracking embedded carbon throughout the complex supply chain. Analysis indicates that while digital twins and Artificial Intelligence (AI) optimize immediate energy efficiency, long-term net-zero targets require capital-intensive structural pivots to technologies such as Hydrogen-based Direct Reduced Iron (H2DRI) and Carbon Capture, Utilization, and Storage (CCUS). To address the limitations of existing, fragmented models, this manuscript proposes a novel Integrated Framework for Green Manufacturing. By tightly coupling human-centric Industry 5.0 cyber-physical systems with advanced circular ecosystems and rigorous ESG validation, the framework offers a cohesive roadmap for industrial decarbonization. The unique contribution of this manuscript lies in mathematically and operationally bridging the gap between digital efficiency tools and structural chemical decarbonization, ensuring scalable, long-term planetary sustainability.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://doi.org/10.1007/s42824-026-00267-zfirst seen 2026-09-12 05:18:15 · last seen 2026-09-22 04:54:58
- crossref https://doi.org/10.1007/s42824-026-00267-zfirst seen 2026-09-16 05:35:42 · last seen 2026-09-22 05:44:47
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