Life cycle assessment and optimization of an iron making system with a combined cycle power plant: a case study from China

作者: Ting Li , Pedro M. Castro , Zhimin Lv

DOI: 10.1007/S10098-016-1306-9

关键词:

摘要: In the steel industry, iron making system deals with large quantities of materials and energy so it can play a critical role in reducing emissions production costs. More specifically, excess by-product gases should be used for electricity generation; otherwise, they lead to pollution. A life cycle analysis is performed compare environmental impact an combined power plant (CCPP), producing same amount coal plant. The results Chinese show 33% reduction conservation emission potential CCPP system, which thus more environmentally friendly. mathematical programming formulation then proposed optimal scheduling. It incorporates key technological constraints sensitive hourly changing prices. outcome 19% increase revenue from sales compared schedule that does not dynamically adjust price profile. also avoided completely. paper ends sensitivity evaluate changes product demand, gas storage capacity, cost.

参考文章(28)
Pedro M. Castro, Iiro Harjunkoski, Ignacio E. Grossmann, Optimal scheduling of continuous plants with energy constraints Computers & Chemical Engineering. ,vol. 35, pp. 372- 387 ,(2011) , 10.1016/J.COMPCHEMENG.2010.05.008
Christos T. Maravelias, Peter Bongers, Pedro M. Castro, Sebastian Engell, Ignacio E. Grossmann, John Hooker, Carlos Méndez, Guido Sand, John Wassick, Iiro Harjunkoski, Scope for industrial applications of production scheduling models and solution methods Computers & Chemical Engineering. ,vol. 62, pp. 161- 193 ,(2014) , 10.1016/J.COMPCHEMENG.2013.12.001
Arnoldus Lambertus Dipu, Junichi Ryu, Yukitaka Kato, Carbon Dioxide Electrolysis for a Carbon-recycling Iron-making System Isij International. ,vol. 52, pp. 1427- 1432 ,(2012) , 10.2355/ISIJINTERNATIONAL.52.1427
Hui Zhang, Liang Dong, Huiquan Li, Tsuyoshi Fujita, Satoshi Ohnishi, Qing Tang, Analysis of low-carbon industrial symbiosis technology for carbon mitigation in a Chinese iron/steel industrial park: A case study with carbon flow analysis Energy Policy. ,vol. 61, pp. 1400- 1411 ,(2013) , 10.1016/J.ENPOL.2013.05.066
Yang Wei-hua, Xu Tao, Li Wei, Chen Guang, Jia Li-yue, Guo Yue-jiao, Waste Gases Utilization and Power Generation in Iron and Steel Works intelligent information technology application. pp. 246- 249 ,(2009) , 10.1109/IITAW.2009.107
P. Castro, H. Matos, A.P.F.D. Barbosa-Póvoa, Dynamic modelling and scheduling of an industrial batch system Computers & Chemical Engineering. ,vol. 26, pp. 671- 686 ,(2002) , 10.1016/S0098-1354(01)00792-X
Gulnur Maden Olmez, Filiz B. Dilek, Tanju Karanfil, Ulku Yetis, The environmental impacts of iron and steel industry: a life cycle assessment study Journal of Cleaner Production. ,vol. 130, pp. 195- 201 ,(2016) , 10.1016/J.JCLEPRO.2015.09.139
Valter B de Oliveira Junior, João G Coelho Pena, José L Félix Salles, None, An improved plant-wide multiperiod optimization model of a byproduct gas supply system in the iron and steel-making process Applied Energy. ,vol. 164, pp. 462- 474 ,(2016) , 10.1016/J.APENERGY.2015.11.043
P. C. de Carvalho Pinto, T. R. da Silva, F. M. Linhares, F. V. de Andrade, M. M. de Oliveira Carvalho, G. M. de Lima, A integrated route for CO 2 capture in the steel industry and its conversion into CaCO 3 using fundamentals of Solvay process Clean Technologies and Environmental Policy. ,vol. 18, pp. 1123- 1139 ,(2016) , 10.1007/S10098-016-1105-3
Pedro M. Castro, Ignacio E. Grossmann, Global Optimal Scheduling of Crude Oil Blending Operations with RTN Continuous-time and Multiparametric Disaggregation Industrial & Engineering Chemistry Research. ,vol. 53, pp. 15127- 15145 ,(2014) , 10.1021/IE503002K