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炼油厂碳排放特征及催化裂化装置CO_2减排研究 被引量:8

Characteristics of carbon emission and CO_2 reduction for catalytic cracking unit in oil refinery enterprise
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摘要 调研分析了2012—2014年我国炼油厂的碳排放特征,运用物质流分析方法,建立了催化裂化装置系统的碳素流模型和评价指标体系。在此基础上,结合现场运行数据,分析了催化裂化装置的碳素流动,并运用数学规划方法对主要影响因素进行了优化分析。研究结果表明,直接排放是炼油厂碳排放的主要形式,催化裂化装置是石油炼制过程碳排放的主要装置,反应再生子系统是催化裂化装置的主要碳排放源,注入渣油量和加热炉燃烧效率是影响反应再生子系统的主要因素。 As is known,oil refinery enterprise is one of the main sources of CO_2 emissions. The CO_2 emission characteristics of oil refinery enterprise in China in 2012—2014 are analyzed. The carbon flow model and evaluation indicators are established based on Substance Flow Analysis( SFA). The factors affecting the carbon emission are analyzed by mathematical programming for the catalytic cracking unit( CCU). The results show that direct emission is the main form of carbon emissions in oil refinery enterprise. The biggest contributor is CCU. 91. 29% of CO_2 are released to the environment by the reaction-regeneration sub-system of CCU. The residue amount and combustion efficiency are the main factors affecting reaction-regeneration sub-system.
出处 《现代化工》 CAS CSCD 北大核心 2016年第5期138-141,共4页 Modern Chemical Industry
基金 国家自然科学基金项目(71373003) 辽宁省教育厅高等学校科学研究一般项目(L2014146)
关键词 碳素流分析 催化裂化装置 CO_2减排 炼油厂 碳平衡 carbon flow catalytic cracking unit carbon emission reduction oil refinery enterprise carbon balance
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  • 1侯露露,王海林.中国“第三次气候变化国家评估报告”在利马发布[N].人民日报,2014—12—08(22).
  • 2Jessen K,Kovsce A R, Franklin M O. Increasing CO2 storage in oil recovery [ J ]. Energy Conversion and Management, 2005,46 ( 2 ) : 293 -311.
  • 3Blume A M, Garrett T B, Goldhammer B P,et al. Securing fuel sup- ply and reducing GHG emissions[ J]. Petroleum Technology Quarter- ly,2008,46 (2) :303 - 311.
  • 4Xu W Q, Cao w J, Zhu T Y, et al. Material flow analysis of CO2 emissions from blast furnace and basic oxygen furnace steelmaking systems in China [ J ]. Steel Research International, 2015,86 ( 9 ) : 1063 - 1072.
  • 5Lgarashi Y, Daigo I, Matsuno Y ,et al. Dynamic material flow analysis for stainless steels in Japan reductions potential of CO2 emissions by promoting closed loop recycling of stainless steels [ J ]. ISIJ Interna- tional 2007,47 ( 5 ) :758 - 763.
  • 6Steinmann Z J N, Venkatesh A, Hauck M,et al. How to address data gaps in life cycle inventories:A case study on estimating CO2 emis- sions from coal-fired electricity plants on a global scale[J]. Environ- mental Science and Technology,2014,48 (9) :5282 - 5289.
  • 7Lin S J, Liu C H, Lewis C. CO2 emission muhiplier effects of Tai- wan' s electricity sector by input-output analysis [ J ]. Aerosol and Air Quality Research,2012,12 (2) : 180 - 190.
  • 8Huang C L,Vause J,Ma H W,et al. Using material/substance flow- analysis to support sustainable development assessment:A literature reviewand outlook [ J ]. Resour Conserv Recycl, 2012,68 : 104 - 116.
  • 9OECD, Measuring Material Flows and Resource Productivity [ Z ]. In: The OECDGuide,2008, vol. 1. OECD, Paris, France.

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