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『簡體書』Ionic Liquid in Process Intensification离子液体过程强化

書城自編碼: 4151708
分類:簡體書→大陸圖書→工業技術化學工業
作者: 张锁江 等 编著
國際書號(ISBN): 9787122478375
出版社: 化学工业出版社
出版日期: 2025-08-01

頁數/字數: /
書度/開本: 16开 釘裝: 精装

售價:HK$ 547.8

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內容簡介:
Ionic Liquid in Process Intensification explores the applications of ionic liquids for process intensification research;focuses on computational simulation methods of ionic liquids, their structural design, regulation, and interaction; describes process intensification reactions, separation, photo/ electrochemistry, and material synthesis related to ionic liquids. 來源:香港大書城megBookStore,http://www.megbook.com.hk
Ionic Liquid in Process Intensification’s combination of computational chemistry, physical chemistry, chemical engineering, materials science, and many other basic and applied disciplines makes it a key reference for scientists, technical personnel, teachers, and students in chemical engineering, chemistry, materials science, energy, and environment science.
關於作者:
张锁江,河南大学校长,中国科学院院士,中国科学院过程工程研究所研究员,中国化工学会副理事长,中国化工学会离子液体专业委员会主任。
1994年于浙江大学化学系获博士学位,之后进入北京化工大学作博士后,1995年获日本文部省奖学金与小岛和夫教授合作开展研究,1997年受聘于日本三菱化学公司,2001年到中国科学院过程工程研究所工作,2008年起先后任中国科学院过程工程研究所常务副所长、所长,2017年起任中国科学院大学化工学院院长,2019年起担任中国科学院绿色过程制造创新研究院筹备组组长。
主要从事离子液体与绿色过程研究,突破了离子液体规模制备、工艺创新和系统集成的难题,实现了多项绿色成套技术的工业应用。担任Green Energy and Environment(GEE)、《过程工程学报》主编,IEC Res、Green Chem等国际期刊编委。创办全国离子液体会议及亚太离子液体大会,并多次应邀做大会学术报告。获国家自然科学二等奖、中国科学院科技促进发展奖、侯德榜化工科技成就奖等。
目錄
1. Introduction 1
1.1 Brief introduction of ionic liquids and the understanding of nanomicrostructures 1
1.2 Nanostructure regulation and process intensification of ionic liquids 9
1.3 Conclusion and perspective 13
References 13
2. Interaction and interface of ionic liquids 15
2.1 Overview 15
2.2 Methods for simulating ionic liquid structures 16
2.3 Simulation study of ionic liquid structures in the interface 30
2.4 Simulation and regulation of two-dimensional ionic liquids 37
2.5 Prediction and control of ionic liquid structures 49
References 52
3. Ionic liquids intensify reaction process 57
3.1 Overview 57
3.2 Ionic liquids regulate homogeneous catalysis reaction 58
3.3 The multiphase reaction based on ionic liquids 63
3.4 Bioionic liquids: tunable microenvironment for biocatalysis 71
3.5 Ionic liquids intensified biomass conversion 79
References 90
4. Ionic liquids intensify separation process 97
4.1 Overview 97
4.2 Ionic liquids intensify gas separation 98
4.3 Application of ionic liquids in liquid2liquid extraction 108
4.4 Ionic liquids for protein and protein complex extraction 117
4.5 Membrane separation process with ionic liquids 128
References 135
5. Photo- and electrochemical process with ionic liquids 143
5.1 Overview 143
5.2 Photocatalytic and photoelectrocatalytic process with ionic liquids 144
5.3 Application of ionic liquids in solar cells 150
5.4 Ionic liquids intensify the electrochemistry process 159
5.5 Application of ionic liquids in new energy batteries 184
References 197
6. Synthesis of ionic liquid-based materials 203
6.1 Overview 203
6.2 Preparation of nanomaterials with ionic liquids 204
6.3 Ionic liquids intensify the synthesis of molecular sieve materials 225
6.4 Synthesis of ionic liquid-based metal organic complexes 229
6.5 Synthesis and application of polymerized ionic liquids 236
References 245
7. Future outlook 257
7.1 Structural characteristics and dynamic stability mechanism of ionic liquids 259
7.2 Action mechanism and regulation law of ionic liquids in process intensification 260
7.3 The development of the chemical process for ionic liquids 261
References 264
Index 265
內容試閱
Chemical industry is a significant industry that contributes to the national economic development and a typical high-energy consuming industry. Chemical process enhancement is an effective means to solve the contradiction between development and pollution brought by process industry. It is also an important measure for the sus- tainable development of chemical processes. At present, most chemical processes involve multiphase complex reactions and separation systems such as gas-liquid, liquid- liquid, and gas-liquid-solid. However, they are still limited to traditional static, offline, and macroscopic research modes, and cannot achieve in-depth analysis of reaction and transfer behavior at the micro level. There are many methods for intensifying chemical processes, among which medium strengthening is one of the most effective means. One of the important challenges facing scientists is to advance chemical research from the existing macro static level to the micro level, and achieve a fundamental break- through in traditional chemical processes.
Ionic liquid is a green medium composed of anions and cations, appears as a liq-uid at room temperature. It can serve as a medium to replace traditional organic sol-vents for chemical reactions and separation, achieving the greening of chemical processes. After decades of development, ionic liquid has now reached the stage of industrial practice, attracting high attention from academia and industry, and becoming an international scientific frontier and research hotspot for chemical process enhance- ment. Especially in recent years, the understanding of the scientific essence of ionic liquid structures has been continuously deepened, forming the scientific foundation for enhancing the chemical process of ionic liquids.
This book focuses on the chemical process of intensifying the ionic liquid structure. Starting from the interaction and interface of ionic liquids, it elaborates on the pro- cesses of strengthening reactions and separation, photo and electrochemical processes with ionic liquids, synthesis of ionic liquid-based materials, and so on. On the basis of original, further introduces the latest research achievements at home and abroad, analyzes and discusses them with some typical examples. It is a comprehensive monograph that introduces the structure control and process intensification of ionic liquids.
This book was organized and written by academician Suojiang Zhang of the Institute of Process Engineering, Chinese Academy of Sciences (CAS), and proposed the writing idea and outline. This book is divided into seven chapters, and the authors who participated in this book are as follows:
Chapter 1 Introduction
Sections 1-3 Suojiang Zhang, Institute of Process Engineering, CAS
Yao Li, Institute of Process Engineering, CAS
Chapter 2 Interaction and interface of ionic liquids
Section 1 Hongyan He, Institute of Process Engineering, CAS
Section 2 Zhiping Liu, Beijing University of Chemical Technology
Sections 3-4 Hongyan He, Institute of Process Engineering, CAS
Yanlei Wang, Institute of Process Engineering, CAS
Weilu Ding, Institute of Process Engineering, CAS
Section 5 Zhiping Liu, Beijing University of Chemical Technology
Chapter 3 Ionic liquids intensify reaction process
Section 1 Jiayu Xin, Institute of Process Engineering, CAS
Sections 2-3 Juan Zhang, Hebei University of Science and Technology
Section 4 Yuhong Huang, Institute of Process Engineering, CAS
Xuan Zhang, Institute of Process Engineering, CAS
Boxia Guo, Institute of Process Engineering, CAS
Section 5 Ying Kang, Liaoning University
Dawei Fang, Liaoning University
Chapter 4 Ionic liquids intensify separation process
Section 1 Junfeng Wang, Institute of Process Engineering, CAS
Section 2 Shaojuan Zeng, Institute of Process Engineering, CAS
Section 3 Hui Wang, Institute of Process Engineering, CAS
Jing Wang, Sino Danish Center, University of Chinese Academy of Sciences/Institute of Process Engineering, CAS
Bingtong Chen, Institute of Process Engineering, CAS
Section 4 Shiying Zheng, Dalian Institute of Chemical Physics, CAS
Qun Zhao, Dalian Institute of Chemical Physics, CAS
Baofeng Zhao, Dalian Institute of Chemical Physics, CAS
Lihua Zhang, Dalian Institute of Chemical Physics, CAS
Yukui Zhang, Dalian Institute of Chemical Physics, CAS
Section 5 Junfeng Wang, Institute of Process Engineering, CAS
Shangqing Chen, Institute of Process Engineering, CAS
Chapter 5 Photo- and electrochemical process with ionic liquids
Section 1 Yongmei Chen, Beijing University of Chemical Technology
Section 2 Lijun Han, Institute of Process Engineering, CAS
Section 3 Qingqing Miao, Institute of Process Engineering, CAS
Aamir Saeed, Institute of Process Engineering, CAS
Section 4 Yongmei Chen, Beijing University of Chemical Technology
Haomin Jiang, Beijing University of Chemical Technology
Section 5 Weiwei Qian, Institute of Process Engineering, CAS
Bing Xue, Institute of Process Engineering, CAS
Chapter 6 Synthesis of ionic liquid-based materials
Section 1 Yibo Wang, Beijing Technology and Business University
Section 2 Yibo Wang, Beijing Technology and Business University
Xingwang Gao, Cancer Hospital Chinese Academy of Medical Sciences,Shenzhen Center
Section 3 Tao Zhang, Institute of Process Engineering, CAS
Section 4 Xingwang Gao, Cancer Hospital Chinese Academy of Medical Sciences,Shenzhen Center
Yibo Wang, Beijing Technology and Business University
Section 5 Tao Dong, Institute of Process Engineering, CAS
Xinyue Liu, Institute of Process Engineering, CAS
Chapter 7 Future outlook
Sections 1-3 Xiaoqian Yao, Institute of Process Engineering, CAS
Chunyan Shi, Institute of Process Engineering, CAS
Zongxu Wang, Huizhou Institute of Green Energy and Advanced Materials
This book provides a new perspective for in-depth research on the behavioral pat- terns and regulatory mechanisms of chemical process intensification, as well as new research ideas and methods for the correlation between different scales from the microscopic world of molecular engineering to the macroscopic world of chemical engineering. This book covers many fundamental and applied disciplines such as computational chemistry, physical chemistry, chemical engineering, materials science, and biology. It is a research achievement that crosses multiple disciplines. The research in this book is expected to greatly enhance the theoretical depth and international influence of chemical process intensification, and provide technological support for transforming traditional chemical processes.
We would like to express our gratitude to all those who participated in the compi- lation and proofreading of this book! Due to the limited level and knowledge of the authors, we kindly ask readers to give us their feedback!
Suojiang Zhang

 

 

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