Multi-Scale and Whole-Process Oriented Potential Analysis & Technical Evaluation of Industrial Pollution Reduction
- 1st Edition - May 1, 2027
- Latest edition
- Authors: Yuanyuan Sun, Lu Bai, Qi Qiao
- Language: English
Multi-Scale and Whole-Process Oriented Potential Analysis & Technical Evaluation of Industrial Pollution Reduction introduces innovative multi-scale models like SPECM and SD… Read more
Description
Description
Key features
Key features
- Addresses issues in industrial pollution reduction, including insufficient precision, lack of synergy, and low resolution of traditional production-process models
- Constructs multi-scale emission-reduction potential assessment models such as SPECM and SDM-BCPP, focusing on minimum pollution-generating benchmark modules to enable precise assessments at industrial, regional, and river-basin scales
- Systematically elucidates the collaborative mechanism of whole-process emission reduction, detailing synergies among source reduction, process reduction, and end-of-pipe treatment, and quantifying potential and effects through industry cases
- Integrates multi-objective optimization methods by incorporating emission-reduction potential, cost-effectiveness, and carbon reduction into a unified framework to generate feasible schemes
- Covers extensive case studies in key industries and regions, detailing model applications and providing operational paradigms for research, management, and enterprise practices
Readership
Readership
Table of contents
Table of contents
2. Mechanism of Collaborative Emission Reduction in the Whole Process of Industrial Production
3. Overview of the SPECM Model
4. Research on Pollution Reduction Potential in the Packaging and Printing Industry
5. Research on Water Pollutant Reduction Potential in the Sugar Manufacturing Industry
6. Whole-Life Cycle Pollution and Carbon Reduction Potential in the Cement Industry
7. Research on Basin Pollution Reduction Potential
8. Research on Regional Pollution Reduction Potential
9. Research on Technical Paths for Total Emission Reduction in Gansu Province During the "14th Five-Year Plan" Based on Potential Assessment
10. Summary and Outlook
Product details
Product details
- Edition: 1
- Latest edition
- Published: May 1, 2027
- Language: English
About the authors
About the authors
YS
Yuanyuan Sun
LB
Lu Bai
Dr. Bai Lu, a young elite in ecological and environmental protection, serves as a professor at the Chinese Research Academy of Environmental Sciences. Specialising in the prevention and control of industrial pollution, she uses industrial metabolism theory to study the mechanisms of material flow and the characteristics of pollutant emissions in industrial processes. Overcoming the limitations of traditional methods, which are overly subjective and imprecise, her innovative research identifies metabolic pathways, quantifies emissions and formulates regional reduction strategies. Dr Bai has earned seven provincial/ministerial science awards, as well as honours such as National Advanced Individual in Pollution Source Census and Outstanding Young Scientist.
Qi Qiao
Qiao Qi is a Second Grade Researcher, Chief Scientist of Chinese Research Academy of Environmental Sciences (CRAES), Doctoral Supervisor. She is an expert of the State Council Government Special Allowance and a national environmental protection professional and technical leader. Currently, she is the director of the Chinese Society of Environmental Sciences, the director of the Ecological Industry Branch of the Chinese Society of Environmental Sciences, the executive member of the Pollution Reduction and Carbon Reduction Collaborative Governance Committee of the Chinese Society of Environmental Sciences, and the executive director of the Industrial Ecological Economy and Technology Committee of the Chinese Society of Ecological Economics. She is mainly engaged in the research of cleaner production, eco-industry and industrial pollution source management. In the past five years, she has presided over more than twenty national and provincial key scientific research projects, authorized over ten invention patents, and won over ten provincial and ministerial science and technology awards.