Green Chemical Technology and Product Development

Author: Song Xiaolan Zhan Yixing
Publisher:
Publishing Date: 2005-04-01
Features: This book provides an overview of the origin and development of green chemistry, discusses research progress in various aspects of green chemical engineering technology, focuses on research achievements and development trends in green chemical product development, and elaborates in detail on green technologies, basic principles, process flows, main equipment, raw material formulations, control parameters, operation processes, safety production, environmental issues, as well as the basic properties, main applications, quality indicators, and analytical methods of nearly 100 chemical products. This book covers a wide range, is rich in content, contains a large amount of information, and is concisely narrated, making it suitable for science and technology workers in chemistry, chemical engineering, petroleum industry, pesticides, pharmaceuticals, and environmental protection, as well as leaders and management personnel in government departments, enterprises and institutions, and relevant personnel in small and medium-sized (township) enterprises. It can also be used as a reference for teachers and students in relevant majors of universities and colleges.
Introduction: This book provides an overview of the origin and development of green chemistry, discusses research progress in various aspects of green chemical engineering technology, focuses on research achievements and development trends in green chemical product development, and elaborates in detail on green technologies, basic principles, process flows, main equipment, raw material formulations, control parameters, operation processes, safety production, environmental issues, as well as the basic properties, main applications, quality indicators, and analytical methods of nearly 100 chemical products. This book covers a wide range, is rich in content, contains a large amount of information, and is concisely narrated, making it suitable for science and technology workers in chemistry, chemical engineering, petroleum industry, pesticides, pharmaceuticals, and environmental protection, as well as leaders and management personnel in government departments, enterprises and institutions, and relevant personnel in small and medium-sized (township) enterprises. It can also be used as a reference for teachers and students in relevant majors of universities and colleges.
Table of Contents:
Chapter 1 Introduction
1.1 Basic Concepts of Green Chemistry
1.1.1 Definition of Green Chemistry
1.1.2 Characteristics of Green Chemistry
1.2 Origin and Development of Green Chemistry
1.2.1 History of Chemical Industry Development
1.2.2 Emergence of Green Chemistry
1.2.3 Research Progress in Green Chemistry
1.3 Goals and Tasks of Green Chemistry
1.3.1 Research on New Chemical Reaction Processes
1.3.2 Green Transformation of Traditional Chemical Processes
1.3.3 Green Chemistry Issues in Energy and Clean Coal Chemistry Technology
1.3.4 Resource Recycling and Circular Use Technology
1.3.5 Comprehensive Utilization of Green Biochemical Engineering
1.4 Research Content of Green Chemistry
1.5 Typical Green Chemical Engineering Projects
1.5.1 Green Reactions
1.5.2 Green Reagents
1.6 Green Chemical Product Assessment
1.6.1 Assessment of Raw Materials
1.6.2 Assessment of Reaction Types
References
Chapter 2 Development and Research Progress of Green Chemical Engineering Technology
2.1 Agenda 21 and Green Chemical Engineering
2.1.1 About Agenda 21
2.1.2 Green Chemistry and Chemical Engineering vs. Traditional Chemistry and Chemical Engineering
2.1.3 Role and Importance of Green Chemical Engineering in Implementing Agenda 21
2.2 Advances in Green Chemical Engineering Technology and Processes
2.2.1 Development of Green Chemistry and Technology
2.2.2 Basic Concepts of Green Chemistry
2.2.3 Advances in Green Chemical Engineering Technology and Clean Production Processes
2.3 Clean Production and Green Chemical Engineering
2.3.1 Overview
2.3.2 Clean Production Technology
2.3.3 Development and Implementation of Clean Production Projects
2.3.4 Means of Clean Production and Sustainable Development
2.3.5 Examples of Clean Production
2.4 New Catalytic Technology and Green Chemical Engineering
2.4.1 Overview
2.4.2 Green Chemistry and Chemical Engineering
2.4.3 New Catalytic Technology
2.5 Paint Environment and Green Chemical Engineering
2.5.1 Paints and Human Civilization
2.5.2 Human Paint Environment
2.5.3 Greening of Paint Environment
2.6 Pollution Prevention and Control of Waste Batteries and Green Chemical Engineering
2.6.1 Classification and Composition of Batteries
2.6.2 Production and Consumption of Batteries
2.6.3 Pollution of Waste Batteries to the Environment and Harm to Human Health
2.6.4 Significance of Classification Recycling and Reuse of Waste Batteries
2.6.5 Green Technology for Recycling and Harmless Treatment of Waste Batteries
2.6.6 Advances in Waste Battery Recycling and Reuse Abroad
2.6.7 Current Status of Waste Battery Recycling and Treatment in China
2.6.8 Problems in Pollution Prevention and Control of Waste Batteries in China
2.6.9 Countermeasures for Pollution Prevention and Control of Waste Batteries in China
2.7 Pollution Prevention and Control of Urban Waste and Green Chemical Engineering
2.7.1 Classification and Characteristics of Urban Waste
2.7.2 Composition of Urban Waste
2.7.3 Current Status of Urban Waste in China
2.7.4 Green Technology for Urban Waste Treatment
2.7.5 Current Status of Urban Waste Treatment at Home and Abroad
2.7.6 Other Resourceful Technologies for Urban Waste Treatment
2.7.7 Urban Pollution Prevention and Control and Sustainable Development
2.8 Food Hygiene and Green Chemical Engineering
2.8.1 Food Safety
2.8.2 Food Pollution
2.8.3 Hygiene of Food Additives
2.8.4 Hygiene of Food Containers and Packaging Materials
2.8.5 Food Hygiene Management
2.9 Ceramic Production and Green Chemical Engineering
2.9.1 Ceramic Production Process Flow
2.9.2 Raw Materials for Ceramic Production
2.9.3 Firing of Ceramics
2.9.4 Clean Production in Ceramic Industry
2.9.5 Green Inorganic Synthesis of Ceramic Materials
2.10 Water Treatment Chemicals and Green Chemical Engineering
2.10.1 Background of Water Treatment Chemicals Development
2.10.2 Basis for Water Treatment Chemicals Development
2.10.3 Research and Development Trends of Green Water Treatment Chemicals
References
Chapter 3 Development and Cases of Green Chemical Reagents
3.1 Overview
3.2 Principles and Technology of Green Chemical Reagents
3.2.1 Greening of Reaction Conditions and Medium for Synthetic Chemical Reagents
3.2.2 Green Technology for Separation and Purification of Chemical Reagents
3.3 Cases of Green Chemical Reagents Development
3.3.1 Alcohol
3.3.2 n-Butanol
3.3.3 Tri-n-butyl Acetate Citrate
3.3.4 Urea Peroxide
3.3.5 Dimethyl Carbonate
3.3.6 Isobutanol
3.3.7 Adipic Acid
3.3.8 Aniline
3.4 Domestic and International Development Trends of Green Chemical Reagents
References
Chapter 4 Development and Cases of Green Food Additives
4.1 Overview
4.1.1 Definition and Characteristics of Green Food Additives
4.1.2 Current Research Status of Green Food Additives
4.1.3 Significance of Green Food Additives Development
4.1.4 Content and Means of Green Food Additives Development
4.1.5 Principles of Green Food Additives Development
4.1.6 Principles of Using Green Food Additives
4.2 Principles and Technology of Greening Food Additives
4.2.1 Principles of Greening Food Additives
4.2.2 Technology of Greening Food Additives
4.3 Cases of Green Food Additives Development
4.3.1 Eugenol
4.3.2 Azafran
4.3.3 Propyl Gallate
4.3.4 Calcium Lactate
4.3.5 Calcium Gluconate
4.3.6 Zinc Gluconate
4.3.7 Capsanthin
4.3.8 Calcium Lactate Tablets
4.3.9 Pine Needle Bioactive Substances
4.3.10 Sorghum Red
4.3.11 Black Bean Red
4.3.12 Alginate
4.3.13 Fresh Raspberry Juice
4.3.14 Pine Oil Acetic Acid
4.3.15 Green Food Additives Development Trends at Home and Abroad
References
Chapter 5 Development and Cases of Green Coatings
5.1 Overview
5.2 Principles and Technology of Green Coatings
5.2.1 High-Solid Content Solvent-Based (Oil-Based) Coatings
5.2.2 Water-Based Coatings
5.2.3 Powder Coatings
5.2.4 Liquid Solvent-Free Coatings
5.3 Cases of Green Coatings Development
5.3.1 Solvent-Based (Oil-Based) Coatings
5.3.1.1 White Thick Paint
5.3.1.2 Red Thick Paint
5.3.1.3 Blue Thick Paint
5.3.1.4 Black Thick Paint
5.3.1.5 Lead-Free Yellow Thick Paint
5.3.1.6 White Oil-Based
5.3.1.7 Gray Oil-Based
5.3.1.8 Red Oil-Based
5.3.1.9 Blue Oil-Based
5.3.1.10 Black Oil-Based
5.3.1.11 Lead-Free Yellow Oil-Based
5.3.1.12 Lead-Free Green Oil-Based
5.3.1.13 Red Lead Oil-Based Anti-Corrosion Paint
5.3.1.14 Iron Red Oil-Based Anti-Corrosion Paint
5.3.1.15 Iron Black Oil-Based
5.3.1.16 Shellac Clear Lacquer
5.3.1.17 Linseed Oil Clear Lacquer
5.3.1.18 Flaxseed Oil Clear Lacquer
5.3.1.19 Oxidized Clear Lacquer
5.3.1.20 Violet Oil Clear Lacquer
5.3.1.21 Violet Shellac Clear Lacquer
5.3.1.22 Polymerized Drying Oil
5.3.2 Water-Based Coatings
5.3.2.1 Water-Based Fireproof Coatings
5.3.2.2 Water-Based Rust-Resistant Anti-Corrosion Coatings
5.3.2.3 Green Water-Based Luminescent Coatings
5.3.2.4 Yellow Water-Based Luminescent Coatings
5.3.2.5 Orange-Red Water-Based Fluorescent Coatings
5.3.2.6 Violet Lacquer Fruit Coatings
5.3.2.7 New PVAc Latex Paint
5.3.2.8 White Acrylic Latex Exterior Paint
5.3.2.9 White Phenolic Latex Interior Paint
5.3.2.10 Light Green Polyacrylic Latex Interior Paint
5.3.2.11 Water-Based Anti-Corrosion Paint
5.3.2.12 Gray Water-Based Acrylic Putty
5.3.3 Powder Coatings
5.3.3.1 Thermoplastic Blue Polyethylene Powder Coatings
5.3.3.2 Thermoplastic Military Green Polypropylene Powder Coatings
5.3.3.3 Thermoset White Epoxy Powder Coatings
5.3.3.4 Thermoset White Epoxy-Polyester Powder Coatings
5.3.3.5 Thermoset Light Green Epoxy-Polyester Powder Coatings
5.3.3.6 Thermoset Light Violet Epoxy-Polyester Powder Coatings
5.3.4 UV Cured Coatings
5.3.4.1 UV Cured Coatings for Coated Paper Products
5.3.4.2 UV Cured Coatings for Bamboo and Wood Products Protection
5.4 Green Coatings Development Trends at Home and Abroad
References
Chapter 6 Development and Cases of Green Adhesives
6.1 Overview
6.2 Principles and Technology of Green Adhesives
6.3 Cases of Green Adhesives Development
6.3.1 Rosin Unsaturation Polyester
6.3.1.1 Green Technology
6.3.1.2 Manufacturing Method
6.3.1.3 Safety Production
6.3.1.4 Environmental Protection
6.3.1.5 Product Quality
6.3.1.6 Analytical Method
6.3.2 Polyurethane Adhesive XK-908
6.3.2.1 Green Technology
6.3.2.2 Manufacturing Method
6.3.2.3 Safety Production
6.3.2.4 Environmental Protection
6.3.2.5 Product Quality
6.3.2.6 Analytical Method
6.3.3 Two-Component Formaldehyde-Free Wood Adhesive
6.3.3.1 Green Technology
6.3.3.2 Manufacturing Method
6.3.3.3 Safety Production
6.3.3.4 Environmental Protection
6.3.3.5 Product Quality
6.3.3.6 Analytical Method
6.3.4 Modified PS Adhesive
6.3.4.1 Green Technology
6.3.4.2 Manufacturing Method
6.3.4.3 Safety Production
6.3.4.4 Environmental Protection
6.3.4.5 Product Quality
6.3.4.6 Analytical Method
6.3.5 Water-Based Plastic Adhesive
6.3.5.1 Green Technology
6.3.5.2 Manufacturing Method
6.3.5.3 Safety Production
6.3.5.4 Environmental Protection
6.3.5.5 Product Quality
6.3.6 Carpet Adhesive
6.3.6.1 Green Technology
6.3.6.2 Manufacturing Method
6.3.6.3 Safety Production
6.3.6.4 Environmental Protection
6.3.6.5 Product Quality
6.3.6.6 Analytical Method
6.4 Development Trends of Green Adhesives
References
Chapter 7 Development and Cases of Other Green Chemical Products
7.1 Daily Chemical Products
7.1.1 Overview
7.1.2 Principles and Technology of Greening Daily Chemical Products
7.1.3 Cases of Daily Chemical Products Development
7.1.3.1 Water-Based Metal Cleaner
7.1.3.2 Plant Gypsum Retarder
7.1.3.3 Safe Oxygen Generator
7.1.3.4 Invisible Glove Preparation
7.1.3.5 Waterproof Skin Protective Agent
7.1.3.6 Water-Saving Dust-Proof Agent
7.1.3.7 Alkyl Polyglucoside (APG)
7.1.3.8 Environmentally Friendly Metal Cleaner
7.1.3.9 Phosphate-Free Softening Laundry Detergent
7.1.3.10 Aloe Vera Protein Soap
7.1.3.11 Sterilizing and Disinfecting Shower Gel
7.1.3.12 Green Pharmaceutical Cosmetics
7.1.3.13 Lipase Catalytic Synthesis of Monoglycerides
7.1.3.14 Multinuclear Chromium Aluminum Tanning Agent
7.1.3.15 Polyvinyl Alcohol
7.2 Agricultural Chemicals
7.2.1 Overview
7.2.2 Principles and Technology of Greening Agricultural Chemicals
7.2.3 Cases of Green Agricultural Chemicals Development
7.2.3.1 Household Sanitary Insecticide
7.2.3.2 Flower Preservation Agent
7.2.3.3 Grain Bird-Feeding Deterrent
7.2.3.4 Crop Frost Protection Agent
7.2.3.5 Abamectin
7.2.3.6 Jinggangmycin
7.2.3.7 Glyphosate
7.3 Water Treatment Chemicals
7.3.1 Overview
7.3.2 Principles and Technology of Greening Water Treatment Chemicals
7.3.3 Cases of Green Water Treatment Chemicals Development
7.3.3.1 Polyepisuccinic Acid (PESA)
7.3.3.2 Polyaspartic Acid (PASP)
7.3.3.3 Bioflocculant NOC-15
7.3.3.4 Molybdate
References
Appendix I Environmental Protection Law of the People's Republic of China
Appendix II Air Pollution Prevention and Control Law of the People's Republic of China
Appendix III Water Pollution Prevention and Control Law of the People's Republic of China
Appendix IV Solid Waste Pollution Prevention and Control Law of the People's Republic of China
Appendix V Food Hygiene Law of the People's Republic of China

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