ネットゼロ未来のためのグリーンケミカルエンジニアリング:循環経済原則と持続可能なプロセス設計の統合
Green Chemical Engineering for a Net-Zero Future: Integrating Circular Economy Principles with a Sustainable Process Design (原題)
Sukhendu Dey, Megha Santra, Apurba Ratan Ghosh, Kamalesh Sen
🤖 gxceed AI 要約
日本語
本論文は、化学製造の脱炭素化に向けて、循環経済原則と低炭素プロセス技術を統合した枠組みを提示する。バイオマスやCO2回収などの代替炭素源、プロセス強化、電化、CCUS、グリーン水素、デジタル化(機械学習、デジタルツイン)を評価し、LCAとTEAの重要性を強調。技術的ボトルネックと実装課題を整理し、研究者・産業界・政策立案者への示唆を提供する。
English
This perspective provides an integrated framework linking circular economy principles and low-carbon process engineering for carbon-neutral chemical manufacturing. It evaluates alternative carbon sources (biomass, captured CO2), process intensification, electrification, CCUS, green hydrogen, and digitalization (ML, digital twins), emphasizing LCA and TEA. It identifies bottlenecks and implementation challenges, offering actionable insights for researchers, industry, and policymakers.
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
日本の化学産業はGX(グリーントランスフォーメーション)推進が急務であり、本論文の統合的ロードマップは、SSBJ開示やカーボンニュートラル目標に対応するための技術選択や投資判断に示唆を与える。特に、CCUSやグリーン水素の実装は、日本のエネルギー政策や産業競争力に直結する。
In the global GX context
Globally, this paper aligns with ISSB/CSRD disclosure requirements by providing a framework for assessing low-carbon technologies in chemical manufacturing. It supports transition finance decisions by linking circular economy and decarbonization strategies, relevant for investors and regulators focusing on climate risk and sustainable production.
👥 読者別の含意
🔬研究者:Provides a unified framework integrating CE and low-carbon technologies, useful for identifying research gaps in chemical process decarbonization.
🏢実務担当者:Offers actionable insights for selecting and implementing low-carbon process technologies and circular feedstocks in chemical manufacturing.
🏛政策担当者:Highlights policy priorities for accelerating industrial decarbonization, including support for CCUS, green hydrogen, and digitalization.
📄 Abstract(原文)
Abstract The growing urgency to achieve climate neutrality and resource-efficient industrial development has positioned green and low-carbon chemical engineering at the center of global sustainability efforts. Although significant advances have been made in circular economy (CE) strategies, renewable feedstocks, carbon management, and process decarbonization, these developments are often examined independently, resulting in a fragmented understanding of their collective potential for sustainable chemical manufacturing. This perspective addresses this gap by providing an integrated assessment of CE principles and low-carbon process engineering strategies that support the transition from conventional linear production systems to circular and carbon-neutral manufacturing frameworks. The perspective examines key CE approaches, including material circularity, industrial symbiosis, resource recovery, and circular product design, alongside challenges related to technological maturity, economic feasibility, and industrial implementation. Recent advances in renewable and circular feedstocks, including biomass, agroindustrial residues, plastic waste, captured CO2, and waste gases, are critically evaluated as alternative carbon resources. Low-carbon process design strategies such as process intensification, electrification, heat integration, and hybrid thermal-electrochemical systems are assessed with respect to their decarbonization potential, scalability, and industrial relevance. The perspective further analyzes developments in green catalysis, photocatalysis, electrocatalysis, biocatalysis, sustainable separation technologies, and circular bioprocessing systems. Particular emphasis is placed on carbon capture, utilization, and storage (CCUS), green hydrogen integration, renewable energy deployment, and digitalization through machine learning, digital twins, and real-time process optimization. The complementary roles of life-cycle assessment (LCA) and techno-economic analysis (TEA) are also discussed as essential tools for evaluating environmental and economic sustainability. Unlike previous perspectives that focus on individual technological domains, this Perspective provides a unified framework linking circular economy principles, low-carbon technologies, carbon management, and digital intelligence within a single roadmap for carbon-neutral chemical manufacturing. The synthesis identifies critical technological bottlenecks, implementation challenges, and future research priorities while highlighting opportunities for cross-sector integration and industrial deployment. The findings provide actionable insights for researchers, industry practitioners, and policymakers seeking to accelerate the transition toward resilient, resource-efficient, and low-carbon chemical production systems.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1021/acssusresmgt.6c00440first seen 2026-09-07 04:43:20
- semanticscholar https://doi.org/10.1021/acssusresmgt.6c00440first seen 2026-09-11 05:36:04 · last seen 2026-09-22 05:05:26
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