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Green Chemistry Approaches in Industrial Processes: A Systematic Review

工業プロセスにおけるグリーンケミストリーアプローチ:系統的レビュー (AI 翻訳)

J. Shepherd

International journal of applied and natural sciences📚 査読済 / ジャーナル2026-04-25#省エネOrigin: Global
DOI: 10.61424/ijans.v4i2.802
原典: https://doi.org/10.61424/ijans.v4i2.802

🤖 gxceed AI 要約

日本語

本系統的レビューは、製薬、石油化学、農業、材料製造などの分野におけるグリーンケミストリーの応用を評価。再生可能原料、無溶媒反応、エネルギー効率の向上、廃棄物最小化などの戦略により、有害廃棄物、エネルギー消費、温室効果ガス排出の削減が確認された一方、初期コストや規制障壁が課題として残る。

English

This systematic review evaluates green chemistry applications in pharmaceuticals, petrochemicals, agriculture, and materials manufacturing. Strategies such as renewable feedstocks, solvent-free reactions, energy efficiency, and waste minimization led to reductions in hazardous waste, energy use, and emissions, though high costs and regulatory barriers persist.

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

日本でも化学産業のグリーン化が進むが、本レビューは国際的な事例をまとめたもので、政策や技術の方向性の参考となる。

In the global GX context

This review provides a comprehensive overview of green chemistry applications across industries, relevant for global sustainability transitions and circular economy goals.

👥 読者別の含意

🔬研究者:Provides a synthesis of current green chemistry strategies and their effectiveness.

🏢実務担当者:Offers insights into practical green chemistry techniques that can reduce environmental footprint in industrial processes.

🏛政策担当者:Highlights regulatory and financial barriers that policy interventions could address.

📄 Abstract(原文)

The increasing environmental and health concerns associated with conventional industrial practices have accelerated the adoption of green chemistry principles as a sustainable alternative. This systematic review examines the application of green chemistry approaches in industrial processes, with the aim of evaluating their effectiveness in reducing environmental impact, enhancing resource efficiency, and promoting safer production methods. Relevant peer-reviewed articles published within the last two decades were systematically selected using established inclusion and exclusion criteria, focusing on key sectors such as pharmaceuticals, petrochemicals, agriculture, and materials manufacturing. The review highlights major green chemistry strategies, including the use of renewable feedstocks, solvent-free and catalyzed reactions, energy-efficient synthesis, waste minimization, and process intensification. Findings indicate that industries implementing these approaches have achieved significant reductions in hazardous waste generation, energy consumption, and greenhouse gas emissions, while maintaining or improving product yield and economic viability. Additionally, advancements in biocatalysis, nanotechnology, and process optimization have further enhanced the scalability and industrial applicability of green chemistry innovations. Despite these benefits, challenges such as high initial implementation costs, technological limitations, and regulatory barriers continue to hinder widespread adoption. The study concludes that integrating green chemistry principles into industrial processes is essential for achieving sustainable development goals, and it recommends increased investment in research, policy support, and industry–academia collaboration to accelerate the transition toward environmentally benign manufacturing systems.

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