中大學術數位典藏-NCU Institutional Repository:Item 987654321/109683
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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/109683


    Title: 先進氧化鋅奈米粒子/活性碳球吸附材料於半導體製程排放控制之應用;Advanced Nano-Structured Zno/Activated Carbon Bead Adsorbents for Semiconductor Manufacturing Emission Control
    Authors: 鄭明敏
    Contributors: 國立中央大學環境工程研究所
    Keywords: 全氟化合物;氧化鋅奈米粒子;活性碳球;吸附技術;密度泛函理論;分子動力學;Perfluorinated compounds;Zinc oxide nanoparticles;Activated carbon bead;Adsorption technology;Density Functional Theory;Molecular Dynamics.
    Date: 2026-07-23
    Issue Date: 2026-07-27 15:58:07 (UTC+8)
    Publisher: 國家科學及技術委員會(本會)
    Abstract: ;The proposed technology is expected to generate significant impacts across environmental, scientific, economic, and societal dimensions, thereby contributing to sustainable development and technological advancement. From an environmental perspective, the adsorption system provides an effective solution for removing perfluorinated compounds (PFCs), which possess high global warming potential and long atmospheric lifetimes. By capturing these gases, the system supports emission reduction strategies, promotes a circular carbon economy, and aligns with Taiwan’s net-zero emissions target by 2050. In terms of energy transition, the integration of adsorption-based treatment with catalytic or plasma technologies offers potential for advancing low-carbon processes and mitigating harmful emissions, thereby supporting cleaner industrial operations. From a scientific perspective, this research bridges environmental engineering, materials science, and computational modeling, contributing to a deeper understanding of adsorption mechanisms and fostering the development of innovative methodologies that combine experimental and simulation approaches. Economically, the technology provides a cost-effective and scalable solution for emission control, enhancing industrial efficiency and enabling integration into existing semiconductor and chemical manufacturing systems, while also offering opportunities for value-added applications. Finally, the societal impact is reflected in its contribution to climate change mitigation, promotion of sustainable engineering practices, and development of skilled human resources, supporting the cultivation of expertise necessary to address future environmental challenges.
    Relation: 財團法人國家實驗研究院科技政策研究與資訊中心
    Appears in Collections:[Graduate Institute of Environmental Engineering ] Research Project

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