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北美炼油厂温室气体减排技术的技术经济评估。

Techno-Economic Evaluation of Technologies to Mitigate Greenhouse Gas Emissions at North American Refineries.

机构信息

Chemical and Petroleum Engineering Department, University of Calgary , 2500 University Drive NW, Calgary, Alberta Canada T2N1W4.

出版信息

Environ Sci Technol. 2017 Feb 7;51(3):1918-1928. doi: 10.1021/acs.est.6b04606. Epub 2017 Jan 18.

Abstract

A petroleum refinery model, Petroleum Refinery Life-cycle Inventory Model (PRELIM), that estimates energy use and CO emissions was modified to evaluate the environmental and economic performance of a set of technologies to reduce CO emissions at refineries. Cogeneration of heat and power (CHP), carbon capture at fluid catalytic cracker (FCC) and steam methane reformer (SMR) units, and alternative hydrogen production technologies were considered in the analysis. The results indicate that a 3-44% reduction in total annual refinery CO emissions (2-24% reductions in the CO emissions on a per barrel of crude oil processed) can be achieved in a medium conversion refinery that processes a typical U.S. crude slate obtained by using the technologies considered. A sensitivity analysis of the quality of input crude to a refinery, refinery configuration, and prices of natural gas and electricity revealed how the magnitude of possible CO emissions reductions and the economic performance of the mitigation technologies can vary under different conditions. The analysis can help inform decision making related to investment decisions and CO emissions policy in the refining sector.

摘要

一个石油精炼模型,石油精炼生命周期清单模型(Prelim),用于估算能源使用和 CO2 排放,该模型经过修改以评估一系列减少炼油厂 CO2 排放的技术的环境和经济性能。热电联产(CHP)、流化催化裂化(FCC)和蒸汽甲烷重整(SMR)装置的碳捕集以及替代制氢技术在分析中都被考虑在内。结果表明,在一个中等转化炼油厂中,使用所考虑的技术可以实现总炼油厂 CO2 排放减少 3-44%(每加工一桶原油的 CO2 排放量减少 2-24%)。对炼油厂输入原油质量、炼油厂配置以及天然气和电力价格的敏感性分析揭示了在不同条件下,可能的 CO2 减排量和缓解技术的经济性能的变化幅度。该分析可以帮助为炼油行业的投资决策和 CO2 排放政策提供信息。

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