有機フレームワーク(MOF/COF)を用いた吸着による炭素回収
Carbon capturing via adsorption using functionalized Organic Frameworks (MOFs/COFs) (原題)
Dinesh Verma, Rajesh Vanshpati, Mithilesh Kumar Jha, Anurag Kumar Tiwari, Sachin Kumar
🤖 gxceed AI 要約
日本語
本レビューは、MOF、COF、深共晶溶媒(DES)を用いたCO2回収技術の最近の進歩を概説する。これらの材料の多孔性、化学的安定性、低揮発性などの利点を強調し、捕捉メカニズム、構造-特性関係、性能傾向を分析する。次世代材料の合理的設計に向けた道筋と将来の研究方向を提案する。
English
This review summarizes recent advances in CO2 capture using MOFs, COFs, and deep eutectic solvents (DES). It highlights their advantages such as porosity, chemical stability, and low volatility, and analyzes capture mechanisms, structure-property relationships, and performance trends. It proposes pathways for rational design of next-generation materials and future research directions.
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
日本のカーボンニュートラル目標やCCS/CCUS戦略に関連するが、具体的な政策連動は薄い。材料開発の基礎情報として、日本の研究機関や企業の材料選定に参考になる。
In the global GX context
Relevant to global CCUS deployment and net-zero targets, but lacks direct policy or industrial application. Provides foundational knowledge for materials selection in carbon capture projects.
👥 読者別の含意
🔬研究者:材料科学やCCUS研究者は、MOF/COF/DESの最新動向と性能比較の概要を得られる。
🏢実務担当者:炭素回収技術の導入を検討する企業は、材料選定の基礎知識として活用できる。
📄 Abstract(原文)
Consecutive increases in CO2 concentrations have triggered global warming and climate change. To prevent the detrimental impacts of climate change, CO2 capturing technologies must be implemented to meet the net-zero CO2 emissions target sooner. In this context, advanced materials such as metallic organic frameworks (MOFs), covalent organic frameworks (COFs), and deep eutectic solvents (DES) have emerged as pivotal materials for enhancing the efficiency, sustainability, and economic viability of CO2 capture technologies. MOFs and COFs are highly porous materials with strong chemical bonds that adsorb gases from the air. DES is formed by mixing a halide salt acting as a hydrogen bond acceptor HBA) and a hydrogen bond donor (HBD) component, including amines, amides, and alcohols, which have tunable properties. These materials demonstrate significant promise for applications due to their diversified advantages, including cost-effectiveness, low volatility, high thermal and chemical stability, and incombustibility. This review provides a critical overview of recent progress in MOFs/COFs and DESs-based CO2 capturing systems with an emphasis on capturing mechanisms, structure-property relationships, and performance trends. Potential capturing pathways are discussed to pave the way for the rational design of next-generation materials. Emerging trends and future research directions are also proposed to foster continued innovation in this critical domain.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1080/01496395.2026.2720114first seen 2026-08-22 04:56:10
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