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从零废弃到闭环物料——通往循环经济之路(FromZeroWastetoMaterialClosedLoop:TheWayTowardsCircularEconomy)电子书

发展循环经济是建设环境友好型社会和实现可持续发展的重要途径。本书从废弃物基本的合规性管理出发,以废弃物的转化和利用为线索连到闭环物料,以不同行业零废弃的机遇和挑战来阐述循环经济这一重要的拐,同时指出了一条可行之路。本书从热力学、环境学、绿色设计、标准与认证、哲学与伦理学等多个角度探讨了零废弃和闭环物料,内容丰富,理论与实践并重,可供与清洁生产、循环经济相关企事业单位中从事环境管理工作的专业人员参考,也可供高等学校环境类、生态类专业师生参阅。

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作       者:杨剑明

出  版  社:化学工业出版社

出版时间:2022-08-01

字       数:53.1万

所属分类: 科技 > 工业技术 > 环境科学

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本书是《从零废弃到闭环物料——通往循环经济之路》的英文版,共分14章,从废弃物的来源、形态、种类始,介绍了其管理、转化和处理处置技术,在此基础上引了“零废弃”的理论与实践,并一步介绍了与零废弃相关的绿色设计、逆向物流和闭环物料。通过不同行业面临的零废弃机遇和挑战,阐述了循环经济这一重要发展概念,并从3个层面讨论了循环经济的标准与认证。后从哲学与环境伦理学的角度对零废弃做了简单解读。书后附有美国、欧洲及中国颁布的废弃物相关标准列表,供读者参考。本书内容丰富,涉及了零废弃的方方面面,语言流畅易懂,理论与实践并重。可供与清洁生产、循环经济相关企事业单位中从事环境管理工作的专业人员参考,也可供高等学校环境类、生态类专业师生参阅。<br/>【推荐语】<br/>发展循环经济是建设环境友好型社会和实现可持续发展的重要途径。本书从废弃物基本的合规性管理出发,以废弃物的转化和利用为线索连到闭环物料,以不同行业零废弃的机遇和挑战来阐述循环经济这一重要的拐,同时指出了一条可行之路。本书从热力学、环境学、绿色设计、标准与认证、哲学与伦理学等多个角度探讨了零废弃和闭环物料,内容丰富,理论与实践并重,可供与清洁生产、循环经济相关企事业单位中从事环境管理工作的专业人员参考,也可供高等学校环境类、生态类专业师生参阅。<br/>【作者】<br/>杨剑明,作为环境项目经理和环境科学家,先后供职于世界500强不同行业企业,从事环境管理和环境科学研究相关工作,同时具有重大工程建设项目经验。于华东理工大学获得环境工程学士学位、于法国国立米卢斯高等化学学院获得环境与安全工程硕士学位、于法国上阿尔萨斯大学风险与环境管理实验室获得环境化学博士学位。目前受聘于华东理工大学资源与环境工程学院作为工程硕士企业导师,并为该院硕士研究生教授相关专业课程。学术兼职包括全国电工电子产品与系统的环境标准化技术委员会(SAC/TC297)委员和中国环境诱变剂学会毒性测试与替代方法专业委员会委员等。<br/>
目录展开

1 A Brief History on Waste

2 Waste Morphology and Types

2.1 Off-Gas

2.2 Effluent

2.3 Rubbish

3 Thermodynamic Principle for Waste

4 Mass Balance and Unorganized Emission

4.1 Mass Balance

4.2 Unorganized Discharge

5 Waste Management

5.1 International Conventions

5.2 International Standards

5.2.1 ISO

5.2.2 IEC

5.2.3 ITU

5.3 National Laws and International Organization Laws

5.3.1 The United States

5.3.2 The European Union

5.3.3 China

5.4 National Standards and International Organization Standards

5.4.1 The United States

5.4.2 The European Union

5.4.3 China

5.5 Industry Standards and Local Standards

6 Waste Diversion

6.1 Diversion Strategy

6.2 Diversion Method

6.2.1 Landfill

6.2.2 Incineration

6.2.3 Elimination

6.2.4 Reuse

6.2.5 Reduction

6.2.6 Recycling

6.2.7 Aerobic Composting

6.2.8 Anaerobic Digestion

6.2.9 Biofuel

6.2.10 Repairing

6.2.11 Refurbishment

6.2.12 Remanufacturing

6.2.13 Conclusion

7 Waste Treatment and Disposal Technology

7.1 Chemical Waste

7.1.1 Inorganic Waste Compounds

7.1.2 Organic Waste Compounds

7.2 Construction Waste

7.2.1 Management of Construction Waste

7.2.2 Sources of Construction Waste

7.2.3 Common Disposal Methods of Recyclable Materials

7.2.4 Regulations and Examples of Construction Waste Recycling in Various Countries

7.2.4.1 Japan

7.3 Electronic Waste

7.3.1 The Hazardous Substances in E-Waste

7.3.2 Treatment Technology of E-Waste

7.4 Medical Waste

7.4.1 Types and Hazards of Medical Waste

7.4.2 Methods of Treatment and Disposal of Medical Waste

7.5 Kitchen Waste

7.5.1 Sources and Types of Kitchen Waste

7.5.2 Oil and Water Separation

7.5.3 Waste Water Treatment

7.5.4 Off-Gas Treatment

7.5.5 Solid Waste Treatment and Resource Recovery

7.6 Laboratory Waste

7.6.1 Laboratory Off-Gas

7.6.2 Laboratory Waste Water

7.6.3 Laboratory Solid Waste

7.7 Secondary Waste

7.7.1 Sources and Characteristics of Secondary Waste

7.7.2 Municipal Sludge

8 Zero Waste Theory and Practice

8.1 Chemical Industry

8.1.1 Green Chemistry

8.1.2 Treatment Process Selection

8.2 Machinery Industry

8.2.1 Industry Characteristics

8.2.2 Corresponding Measures

8.3 Automotive Industry

8.3.1 Source of Generation

8.3.2 Zero Waste Opportunities

8.4 Consumer Electronic Industry

8.4.1 Industry Characteristics

8.4.2 Sources and Streams

8.4.3 Stream Analysis

8.4.4 Zero Waste Practices

8.5 Retail Industry

8.5.1 Industry Characteristics

8.5.2 Zero Waste Practices

8.6 Grand Event

8.6.1 Characteristics of Grand Events and Their Waste Management

8.6.2 Organizational Operations and Zero Waste

8.6.3 Zero Waste Requirements at Different Stages

8.6.4 Zero Waste Case Studies

8.7 Property and City

8.7.1 Unit Property

8.7.2 Comprehensive Properties

8.7.3 Zero Waste Cities (Waste-Free Cities)

8.7.4 Nation-Wide Zero Waste

9 Zero Waste and Eco-Design

9.1 Eco-Design System

9.2 Design for Disassembly

9.2.1 Dismantlable Design Definition

9.2.2 Dismantlable Design Criteria

9.2.3 Dismantlable Design Evaluation

9.3 Design for Recyling

9.3.1 Process and Principle of Material Selection

9.3.2 Basic Requirements for Selection of Recyclable

9.3.3 General Methods for Selection of Recyclable Materials

9.3.4 Calculation Method of Recyclability Rate

9.4 Design for Maintenance/Repairing

9.4.1 Several Definitions of Repairing

9.4.2 Considerations in the Process of Repairable Design

9.5 Design for Remanufacturing

9.5.1 From A to A

9.5.2 From A to B

9.5.3 Calculation of Remanufacturing Rate

9.6 Conclusion

10 Reverse Logistics

10.1 Definition and Category

10.2 Waste Logistics

10.3 Logistics Cost

10.3.1 Cost Composition

10.3.2 Costing

10.3.3 Cost Analysis

10.3.4 Cost Management

10.4 Drive and Development

11 Material Closed Loop

11.1 Recycling and Closed Loop

11.2 Regulatory Supervision

11.3 Material Identification

11.3.1 Identification Procedures

11.3.2 Technical Regulation

11.3.3 Identification Standard

11.4 Economic Benefit and Environmental Benefit

11.5 Zero Waste, Carbon Neutral

12 On Circular Economy

12.1 Background and Support

12.2 Development Concept

12.3 Legal Difference

12.4 Innovation Model

12.4.1 Commercial Leasing

12.4.2 Sharing Economy

12.4.3 Cloud Technology

12.4.4 Blockchain Technology

13 Circular Economy Standard and Certification

13.1 Product Circularity

13.2 Facility Circularity

13.3 Corporate Circularity

14 Zero Waste Philosophy and Environmental Ethics

14.1 Zero Waste Philosophy

14.1.1 Taoism

14.1.2 Confucianism

14.1.3 Marxist Philosophy

14.2 Environmental Ethics

14.2.1 Environmental Ethics Principles

14.2.2 The Content of Environmental Ethics

14.2.3 Environmental Ethics and Environmental Legal

14.2.4 Case Studies

14.3 The Future of Humankind

Appendix

Epilogue

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