Digitalizing Material Innovations for Net-Zero Applications
暫譯: 數位化材料創新以實現淨零應用
Iqbal, Faiz, Sardar, Suneela
- 出版商: CRC
- 出版日期: 2026-04-09
- 售價: $5,500
- 貴賓價: 9.5 折 $5,225
- 語言: 英文
- 頁數: 178
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 1032949031
- ISBN-13: 9781032949031
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相關分類:
材料科學 Meterials
海外代購書籍(需單獨結帳)
商品描述
Digitalizing Material Innovations for Net-Zero Applications navigates the critical intersection of advanced materials science, cutting-edge digital engineering, and global sustainability goals. It explores how digital tools are fundamentally transforming the way we innovate, develop, and deploy materials essential for achieving net-zero emissions across diverse sectors, from energy systems to smart cities and industrial processes.
Drawing on expert contributions, this book provides in-depth insights into key areas such as artificial intelligence-driven design of CO2 capture materials and membranes, strategies for decarbonizing the built environment, and the transformative potential of Power-to-X technologies. It addresses the growth potential and commercialization barriers for next-generation materials, offering practical solutions and real-world case studies, including the application of digital systems for sustainable manufacturing in MSMEs. This unique blend of material science and digital solutions offers a holistic perspective on accelerating decarbonization.
This resource is designed for industry professionals and experts working on the decarbonization agenda in the fields of materials processing, manufacturing, and industrial sustainability initiatives.
商品描述(中文翻譯)
《數位化材料創新以實現淨零應用》探討了先進材料科學、尖端數位工程與全球可持續發展目標之間的關鍵交集。它研究了數位工具如何根本改變我們創新、開發和部署對於實現淨零排放至關重要的材料的方式,涵蓋從能源系統到智慧城市及工業流程等多個領域。
本書借助專家的貢獻,深入探討了關鍵領域,如基於人工智慧的二氧化碳捕集材料和膜的設計、去碳化建築環境的策略,以及Power-to-X技術的變革潛力。它還討論了下一代材料的增長潛力和商業化障礙,提供實用的解決方案和真實案例研究,包括數位系統在中小企業可持續製造中的應用。這種材料科學與數位解決方案的獨特結合,提供了加速去碳化的整體視角。
本資源旨在為在材料加工、製造和工業可持續發展倡議領域從事去碳化議程的行業專業人士和專家提供支持。
作者簡介
Faiz Iqbal is a Senior Lecturer in Mechanical Engineering at the University of Lincoln, UK. His research focuses on smart manufacturing, Industry 4.0, and cyber-physical systems, with a particular emphasis on digital transformation for micro- and small-scale enterprises (MSMEs). He leads and co-leads several interdisciplinary research projects, including British Council and Innovate UK-funded initiatives on net-zero manufacturing, AI-based quality inspection, and sustainable automation. Dr. Iqbal holds a PhD in Manufacturing Automation from the Indian Institute of Technology Delhi. He has developed advanced automation frameworks and novel CNC-integrated finishing technologies, and his work on cyber-physical disinfectant manufacturing during the COVID-19 pandemic was nationally recognized in the UK with the COVID-19 Engineering Medal and a Scottish Knowledge Exchange Award nomination.
Suneela Sardar is a Senior Lecturer in Chemical Engineering at the University of Lincoln, UK, and a passionate Chemical Engineer dedicated to advancing sustainable energy technologies and mitigating environmental challenges. She completed her PhD in Chemical Engineering at the University of Leeds, UK. Dr. Sardar has also worked on many consultancy projects on flow behaviour of polymeric materials and surface modification of particles. As a Postdoctoral Research Fellow at the University of Leeds, she worked on sustainable minerals processing for the extraction of valuable materials to support the foundation industries. At Lancaster University, she worked in the radioactive lab to research the molten salts for nuclear energy applications and simulated their behaviour.
作者簡介(中文翻譯)
**Faiz Iqbal** 是英國林肯大學機械工程的高級講師。他的研究專注於智慧製造、工業4.0和網絡物理系統,特別強調微型和小型企業(MSMEs)的數位轉型。他領導和共同領導多個跨學科研究項目,包括英國文化協會和英國創新署資助的淨零製造、基於人工智慧的質量檢查和可持續自動化的倡議。Iqbal博士擁有德里印度理工學院的製造自動化博士學位。他開發了先進的自動化框架和新穎的CNC整合精加工技術,他在COVID-19疫情期間針對網絡物理消毒劑製造的研究在英國獲得了全國認可,並獲得了COVID-19工程獎章和蘇格蘭知識交流獎提名。
**Suneela Sardar** 是英國林肯大學化學工程的高級講師,並且是一位熱衷於推進可持續能源技術和減輕環境挑戰的化學工程師。她在英國利茲大學完成了化學工程的博士學位。Sardar博士還參與了許多有關聚合物材料流動行為和顆粒表面改性方面的顧問項目。作為利茲大學的博士後研究員,她專注於可持續礦物加工,以提取有價值的材料來支持基礎產業。在蘭卡斯特大學,她在放射性實驗室研究熔融鹽在核能應用中的行為並進行模擬。