还原(数学)
材料科学
过程(计算)
生产(经济)
碳纤维
冶金
高效能源利用
工艺工程
环境科学
复合材料
计算机科学
工程类
经济
复合数
操作系统
电气工程
宏观经济学
数学
几何学
作者
Yuxing Yuan,Jingchao Sun,Lei Zhang,Su Yan,Tao Du,Hongming Na
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2024-11-05
卷期号:17 (22): 5410-5410
被引量:5
摘要
The coordinated optimization of energy conservation, efficiency improvement, and pollution reduction in the sintering production process is vital for the efficient and sustainable development of the sintering department. However, previous studies have shown shortcomings in the multi-objective collaborative optimization of sintering systems and the quantification of pollutant impacts. To address these, this paper proposes a multi-objective optimization method integrated with the NSGA-III algorithm and establishes an integrated system optimization model for sintered ore production and high-temperature waste heat recovery. The results demonstrate significant improvements: energy utilization efficiency increased by 0.67%, energy consumption decreased by 17.3 MJ/t, production costs were reduced by 11.45 CNY/t, and the emissions of CO2, SO2, and NOx were reduced by 0.464 kg/t, 0.034 kg/t, and 0.008 kg/t, respectively. Additionally, the study identified optimal configuration parameters and analyzed the quantitative impact of several key factors on multiple indicators. The results also show that reducing the water content of the mixture, decreasing the middling coal content in the fuel, and increasing the thickness of the material layer are effective strategies to reduce energy consumption and pollutant emissions in the sintering process. Overall, implementing these optimizations can bring significant economic and environmental benefits to the steel industry.
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