Citation: | CUI Zhi-feng, XU An-jun, SHANGGUAN Fang-qin. Low-carbon development strategy analysis of the domestic and foreign steel industry[J]. Chinese Journal of Engineering, 2022, 44(9): 1496-1506. doi: 10.13374/j.issn2095-9389.2022.01.05.003 |
[1] |
International Energy Agency. Global Energy Review 2020 [R/OL]. Report Online (2020-04-27) [2022-01-05].https://iea.blob.core.windows.net/assets/7e802f6a-0b30-4714-abb1-46f21a7a9530/Global_Energy_Review_2020.pdf
|
[2] |
趙雅敬. 鋼鐵企業碳排放成本核算與評價研究[學位論文]. 長沙: 中南大學, 2012
Zhao Y J. Study on Carbon Emission Cost Accounting and Evaluation of Iron and Steel Enterprises [Dissertation]. Changsha: Central South University, 2012
|
[3] |
World Steel Association. Climate change and the production of iron and steel [R/OL]. Report Online (2021-05-19) [2022-01-05].https://worldsteel.org/wp-content/uploads/Climate-change-and-the-production-of-iron-and-steel.pdf
|
[4] |
World Steel Association. Global crude steel output decreases by 0.9% in 2020 [R/OL]. Report Online (2021-01-26) [2022-01-05].https://www.worldsteel.org/media-centre/press-releases/2021/Global-crude-steel-output-decreases-by-0.9--in-2020.html
|
[5] |
International Energy Agency. Iron and steel technology roadmap [R/OL]. Report Online (2020-10-08) [2022-01-05].https://www.iea.org/reports/iron-and-steel-technology-roadmap
|
[6] |
World Steel Association. Sustainability Indicators 2021 Report [R/OL] Report Online (2021-11-13) [2022-01-05]https://worldsteel.org/wp-content/uploads/Sustainability-Indicators-2021-Report.pdf
|
[7] |
ArcelorMittal. Climate Action Report (2019) [R/OL]. Report Online (2019-05-29) [2022-01-05].https://storagearcelormittalprod.blob.core.windows.net/media/hs4nmyya/am_climateactionreport_1.pdf
|
[8] |
Nippon Steel Corporation. 2020 Sustainability Report [R/OL]. Report Online (2020-10-09) [2022-01-05].https://www.nipponsteel.com/common/secure/en/csr/report/nsc/pdf/report2020.pdf
|
[9] |
POSCO. POSCO Corporate Citizenship Report 2020 [R/OL]. Report Online (2021-06-04) [2022-01-05].https://www.posco.co.kr/docs/eng6/jsp/dn/irinfo/posco_report_2020.pdf
|
[10] |
中國鋼鐵股份有限公司. 2020年企業社會責任報告[R/OL]. 在線報道 (2021-05-11) [2022-01-05].https://www.csc.com.tw/csc/hr/e/hr-2020.pdf
China Steel Corporation. 2020 Corporate Social Responsibility Report [R/OL]. Report Online (2021-05-11) [2022-01-05]. https: //www. csc. com. tw/csc/hr/e/hr-2020.pdf
|
[11] |
Big River Steel. Corporate Social Responsibility Report (2019) [R/OL]. (2021-05-24) [2022-01-05].https://bigriversteel.com/wp-content/uploads/2021/05/BRS2106-CSR-Report-Update-052421-Final.pdf
|
[12] |
Energy Information Administration. How much carbon dioxide is produced per kilowatt-hour of U. S. electricity generation? [EB/OL]. Question Online (2021-11-04) [2022-01-05].https://www.eia.gov/tools/faqs/faq.php?id=74&t=11
|
[13] |
中國電力企業聯合會. 中電聯發布《中國電力行業年度發展報告2020》[R/OL]. 報告在線 (2020-06-12) [2022-01-05]. https://cec.org.cn/detail/index.html?3-284175
China Electricity Council. China Electricity Council Releases Annual Development Report of China's Electric Power Industry 2020 [R/OL]. Report Online (2020-06-12) [2022-01-05]. https://cec.org.cn/detail/index. html?3-284175
|
[14] |
薛慶國, 楊帆, 張欣欣, 等. 氧氣高爐的發展歷程及其在北京科技大學的研究進展. 工程科學學報, 2021, 43(12):1579
Xue Q G, Yang F, Zhang X X, et al. Development of an oxygen blast furnace and its research progress in University of Science and Technology Beijing. Chin J Eng, 2021, 43(12): 1579
|
[15] |
(張建良, 劉征建, 焦克新, 等. 煉鐵新技術及基礎理論研究進展. 工程科學學報, 2021, 43(12):1630
Zhang J L, Liu Z J, Jiao K X, et al. Progress of new technologies and fundamental theory about ironmaking. Chin J Eng, 2021, 43(12): 1630
|
[16] |
嚴珺潔. 超低二氧化碳排放煉鋼項目的進展與未來. 中國冶金, 2017, 27(2):6 doi: 10.13228/j.boyuan.issn1006-9356.20160169
Yan J J. Progress and future of ultra-low CO2 steel making program. China Metall, 2017, 27(2): 6 doi: 10.13228/j.boyuan.issn1006-9356.20160169
|
[17] |
王東彥. 超低碳煉鋼項目中的突破型煉鐵技術. 世界鋼鐵, 2011, 11(2):7 doi: 10.3969/j.issn.1672-9587.2011.02.002
Wang D Y. Breaking-through iron-making technologies in ULCOS project. World Iron Steel, 2011, 11(2): 7 doi: 10.3969/j.issn.1672-9587.2011.02.002
|
[18] |
胡俊鴿, 郭艷玲, 周文濤, 等. 美國低碳煉鐵新技術的進展及應用前景分析. 冶金管理, 2011(2):51
Hu J G, Guo Y L, Zhou W T, et al. Analysis of the progress and application prospects of new low-carbon ironmaking technology in the united states. China Steel Focus, 2011(2): 51
|
[19] |
張利娜, 李輝, 程琳, 等. 國外鋼鐵行業低碳技術發展概況. 冶金經濟與管理, 2018(5):30 doi: 10.3969/j.issn.1002-1779.2018.05.009
Zhang L N, Li H, Cheng L, et al. Overview of low-carbon technology development in foreign steel industry. Yejin Jingji Yu Guanli, 2018(5): 30 doi: 10.3969/j.issn.1002-1779.2018.05.009
|
[20] |
張建良, 李克江, 劉征建, 等. 氫冶金初探. 北京: 冶金工業出版社, 2021
Zhang J L, Li K J, Liu Z J, et al. Primary Exploration of Hydrogen Metallurgy. Beijing: Metallurgical Industry Press, 2021
|
[21] |
中電經緯. 中國主要制氫技術成本分析: 煤制氫優勢明顯 [EB/OL]. 搜狐網頁在線 (2021-02-29) [2022-01-05]. https://www.sohu.com/a/449697033_121028641
Zhong Dian Jing Wei. Cost analysis of China’s main hydrogen production technologies: Coal production has obvious advantages [EB/OL]. Sohu Website Online (2021-02-29) [2022-01-05]. https://www.sohu.com/a/449697033_121028641
|
[22] |
謝和平, 劉虹, 吳剛. 中國未來二氧化碳減排技術應向CCU方向發展. 中國能源, 2012, 34(10):15 doi: 10.3969/j.issn.1003-2355.2012.10.003
Xie H P, Liu H, Wu G. China’s carbon dioxide emissions technology should be developed in the direction of CCU. Energy China, 2012, 34(10): 15 doi: 10.3969/j.issn.1003-2355.2012.10.003
|
[23] |
段茂盛, 龐韜. 碳排放權交易體系的基本要素. 中國人口·資源與環境, 2013, 23(3):110 doi: 10.3969/j.issn.1002-2104.2013.03.018
Duan M S, Pang T. Basic elements of emission trading scheme. China Popul Resour Environ, 2013, 23(3): 110 doi: 10.3969/j.issn.1002-2104.2013.03.018
|
[24] |
酈秀萍, 上官方欽, 周繼程, 等. 鋼鐵制造流程中碳素流運行與碳減排途徑. 北京: 冶金工業出版社, 2020
Li X P, ShangGuan F Q, Zhou J C, et al. Carboniferous Flow Operation and CO2 Emission Reduction in Steel Manufacturing Process. Beijing: Metallurgical Industry Press, 2020
|
[25] |
Emissions-EUETS. EU ETS Product Benchmarks [EB/OL]. Website Online (2013-09-15) [2022-01-05].https://www.emissions-euets.com/product-benchmarks
|
[26] |
International Energy Agency. CO2 Emissions from fuel combustion 2019 highlights [R/OL]. Report Online (2019-11-23) [2022-01-05]. https://iea.blob.core.windows.net/assets/eb3b2e8d-28e0-47fd-a8ba-160f7ed42bc3/CO2_Emissions_from_Fuel_Combustion_2019_Highlights.pdf
|
[27] |
International Energy Agency. Material efficiency in clean energy transitions [R/OL]. Report Online (2019-03-22) [2022-01-05].https://www.iea.org/reports/material-efficiency-in-clean-energy-transitions
|
[28] |
上官方欽, 張春霞, 酈秀萍, 等. 鋼鐵企業CO2排放計算方法及其應用探討 // 2011年全國冶金節能減排與低碳技術發展研討會文集. 唐山, 2011: 6
ShangGuan F Q, Zhang C X, Li X P, et al. Discussion on the CO2 emission calculation method & its application in the steel plants // Proceedings of the 2011 National Metallurgical Energy Conservation, Emission Reduction and Low-Carbon Technology Development Seminar. Tangshan, 2011: 6
|
[29] |
國家統計局能源統計司. 中國能源統計年鑒(2018). 北京: 中國統計出版社, 2019
Department of Energy Statistics, National Bureau of Statistics. China Energy Statistical Yearbook (2018). Beijing: China Statistics Press, 2019
|
[30] |
上官方欽, 劉正東, 殷瑞鈺. 鋼鐵行業“碳達峰”“碳中和”實施路徑研究. 中國冶金, 2021, 31(9):15 doi: 10.13228/j.boyuan.issn1006-9356.20210393
Shangguan F Q, Liu Z D, Yin R Y. Study on implementation path of “carbon peak” and “carbon neutrality” in steel industry in China. China Metall, 2021, 31(9): 15 doi: 10.13228/j.boyuan.issn1006-9356.20210393
|
[31] |
楊婷. 國外鋼鐵工業低碳技術發展與我國減排CO2策略. 中國鋼鐵業, 2011(6):12 doi: 10.3969/j.issn.1672-5115.2011.06.003
Yang T. The development of low-carbon technology in the iron and steel industry abroad and China's CO2 emission reduction strategy. China Steel, 2011(6): 12 doi: 10.3969/j.issn.1672-5115.2011.06.003
|
[32] |
上官方欽. 全廢鋼電爐流程優化研究——城市鋼廠與鋼鐵工業脫碳化[學位論文]. 北京: 鋼鐵研究總院, 2021
Shangguan F Q. Study on the Optimization of Full Scrap EAF Process—City Steel Plants & Decarbonization of Steel Industry [Dissertation]. Beijing: Central Iron & Steel Research Institute, 2021
|
[33] |
殷瑞鈺. 冶金流程工程學. 北京: 冶金工業出版社, 2004
Yin R Y. Metallurgical Process Engineering. Beijing: Metallurgical Industry Press, 2004
|