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基于LCA的钢铁联合企业CO_2排放影响因素分析
引用本文:黄志甲,丁晓,孙浩,刘思玥,刘颖昊,刘涛. 基于LCA的钢铁联合企业CO_2排放影响因素分析[J]. 环境科学学报, 2010, 30(2): 444-448
作者姓名:黄志甲  丁晓  孙浩  刘思玥  刘颖昊  刘涛
作者单位:安徽工业大学建筑工程学院,马鞍山,243002;宝山钢铁股份公司,上海,201900
基金项目:教育部科学技术研究重点项目(No.208061)
摘    要:钢铁企业是CO2排放大户,减少吨钢CO2排放是钢铁企业节约能源、保护环境、走可持续发展道路的必然要求.本研究旨在对钢铁企业产品生命周期清单研究的基础上,识别钢铁企业CO2排放的主要影响因素,提出针对性的减排建议.以某钢铁联合企业的产品生命周期清单模型为平台,同时利用TornadoChart工具,计算得到对企业CO2排放影响较大的因素,然后提出了相应的减排措施.结果表明,转炉流程对于钢铁企业的影响要大于电炉流程;对该企业CO2排放有重大影响和相关影响的因素有:高炉煤气(BFG)的CO2排放系数、连铸坯的钢水单耗、热轧的板坯单耗、转炉的铁水比.减少钢铁联合企业CO2排放的有效措施是采取捕集BFG中的CO2、降低转炉的铁水比、加强副产煤气的回收以及优化企业的产品生产结构.

关 键 词:生命周期清单  CO_2排放  影响因素  减排措施
收稿时间:2009-04-16
修稿时间:2009-08-27

Analysis of factors influencing CO2 emissions in an integrated steel works based on Life Cycle Analysis (LCA)
HUANG Zhiji,DING Xiao,SUN Hao,LIU Siyue,LIU Yinghao and LIU Tao. Analysis of factors influencing CO2 emissions in an integrated steel works based on Life Cycle Analysis (LCA)[J]. Acta Scientiae Circumstantiae, 2010, 30(2): 444-448
Authors:HUANG Zhiji  DING Xiao  SUN Hao  LIU Siyue  LIU Yinghao  LIU Tao
Affiliation:School of Civil Engineering, Anhui University of Technology, Maanshan 243002,School of Civil Engineering, Anhui University of Technology, Maanshan 243002,School of Civil Engineering, Anhui University of Technology, Maanshan 243002,School of Civil Engineering, Anhui University of Technology, Maanshan 243002,Baoshan Iron and Steel Co.Ltd., Shanghai 201900 and Baoshan Iron and Steel Co.Ltd., Shanghai 201900
Abstract:The amount of CO2 emission in steel works occupies a great share of the total industry CO2 emissions in China. Reducing CO2 emission in steel works is urgent for energy saving, environmental protection and sustainable development. This study aims at identifying the main factors resulting in CO2 emissions in steel works and proposing countermeasures based on the study of the life cycle inventory (LCI) of iron and steel products. A certain integrated steel works is taken as an example of LCI analysis by use of the Tornado Chart Tool. Through computations and analyses, it is found that the Electric Furnace Route has less environmental impact than that of the Basic Oxygen Furnace (BOF) Route. The top important CO2 emission factors of the factory are CO2 emission factor of Blast Furnace Gas (BFG), liquid steel consumption coefficient of continuous casting, continuous casting slab consumption coefficient of hot rolling and hot metal ratio of steelmaking. Corresponding effective measures for CO2 emission reduction such as removing CO2 contained in BFG, decreasing the hot metal ratio of BOF, recycling BFG, and optimizing the product structure are thus proposed.
Keywords:life cycle inventory   carbon dioxide emissions   influencing factors   reduction measures
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