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煤制天然气装置低位余热利用方案探讨
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作者 王亚龙 李永亭 翟勇 《中氮肥》 CAS 2024年第6期9-12,34,共5页
伊犁新天煤化工有限责任公司20×10^(8)m^(3)/a煤制天然气装置主生产工艺为碎煤加压气化、宽温耐硫部分变换、林德低温甲醇洗、戴维甲烷化工艺等,装置中部分低位余热(介质)直接采用循环水冷却或排放处理而未得到有效利用。为此,对... 伊犁新天煤化工有限责任公司20×10^(8)m^(3)/a煤制天然气装置主生产工艺为碎煤加压气化、宽温耐硫部分变换、林德低温甲醇洗、戴维甲烷化工艺等,装置中部分低位余热(介质)直接采用循环水冷却或排放处理而未得到有效利用。为此,对空分装置、气化系统及变换系统、煤气水分离系统、酚回收系统、低温甲醇洗系统、甲烷化系统、公用工程系统低位余热利用情况进行系统性梳理,得出满负荷生产时未回收利用的低位余热高达1409.5 GJ/h,宜实施ORC低位余热发电技改(优选五氟丙烷作为有机工质),其发电功率可达39153.4 kW,经济效益与环保效益俱佳。目前,ORC低位余热发电技改已列为新天煤化节能改造项目,其可行性研究报告已编制完成,计划择机分步实施。 展开更多
关键词 煤制天然气装置 循环水冷却器 低位余热品类 ORC低位余热发电 可行性分析 有机工质选择 经济效益
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Proposal and analysis of a coupled power generation system for natural gas pressure reduction stations
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作者 LI Cheng-hao ZHENG Si-yang +2 位作者 CHEN Xing-yu LI Jie ZENG Zhi-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期608-620,共13页
With the increased use of natural gas,it is valuable to study energy recovery ratio in the natural gas pressure reduction stations(PRSs).This paper focused on recovering the energy in PRSs as well as low-grade waste h... With the increased use of natural gas,it is valuable to study energy recovery ratio in the natural gas pressure reduction stations(PRSs).This paper focused on recovering the energy in PRSs as well as low-grade waste heat by a coupled power generation system(CPGS).The CPGS integrates a natural gas expansion(NGE)subsystem and an organic Rankine cycle(ORC)subsystem driven by low-temperature waste heat.Firstly,a comparative analysis is carried out between the separated natural gas expansion system and the separated ORC system.Then,the effects of heat source conditions,upstream pressure of natural gas and the isentropic efficiency of the natural gas expander are investigated.At last,working fluids selection is conducted with respect to two different pressure ranges of natural gas.The results show that there is an optimal temperature and mass flow rate of the heat source that maximizes the system exergy efficiency.With the increase of the upstream pressure of natural gas,the net power output and waste heat recovery factor increase while the system exergy efficiency has an optimal point.Furthermore,the isentropic efficiency of the natural gas expander has a great influence on the net power output of the system. 展开更多
关键词 natural gas energy recovery organic Rankine cycle(ORC) working fluids selection
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