Multi-Scale and Whole-Process Oriented Potential Analysis & Technical Evaluation of Industrial Pollution Reduction introduces innovative multi-scale models like SPECM and SDM-BCPP, focusing on precise, collaborative emission reduction strategies across industrial, regional, and basin levels. The book systematically explores the mechanisms of whole-process emission reduction, integrating source control, process optimization, and end-of-pipe treatment, supported by practical case studies in industries such as packaging, printing, sugar manufacturing, and cement, as well as regional applications in the Liaohe River Basin and Gansu. It emphasizes multi-objective optimization, balancing emission reduction, cost-effectiveness, and carbon mitigation to generate actionable schemes. The detailed content spans research progress, model applications, and technical pathways for achieving sustainable industrial development, providing valuable insights for researchers, policymakers, and industry practitioners.
- 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