小规模高含氮天然气脱氮-液化工艺模拟分析  

Simulation analysis on small scale denitrification-liquefaction process for natural gas with high nitrogen content

在线阅读下载全文

作  者:俞徐林 YU Xu-lin(Sinopec Jianghan Petroleum Engineering&Design Co.,Ltd.,Wuhan 430223,China)

机构地区:[1]中石化江汉石油工程设计有限公司,湖北武汉430223

出  处:《现代化工》2024年第7期234-238,共5页Modern Chemical Industry

摘  要:对于含氮气约为10%、处理量为150 000 m^(3)/d的原料气,当采用常规工艺液化时,不可避免地存在能耗高与LNG储罐安全隐患大等问题。为此,提出脱甲烷塔的塔底加热精馏、塔顶气增压冷凝回流和塔顶气冷凝回流3种脱氮-液化工艺,旨在比选出经济高效、适应性强的脱氮-液化工艺。采用HYSYS软件模拟分析3种脱氮-液化工艺的LNG质量、产量、能耗、排放尾气甲烷含量以及原料气含氮量变化对其适应性,结果发现,塔顶气增压冷凝回流脱氮-液化工艺的甲烷收率最高,达到97.2%;单位能耗最低,达12.81 W/m^(3)原料气;经济效益最好,年收入增加2 076.78万元。因此,该工艺最适合研究原料气的脱氮液化,其分析方法可供类似规模的高含氮天然气脱氮液化工艺比选参考。As for feed natural gas with a nitrogen content of about 10%and a processing capacity of 150000 m^(3)·d^(-1),there are inevitably problems such as high energy consumption and serious risks at LNG storage tanks when it is liquefied through conventional process.Hence,three kinds of denitrification-liquefaction processes,including bottom heating rectification,top gas pressurization-condensation reflux,and top gas condensation reflux for demethanizer,are proposed to select an economical,efficient and adaptable one.HYSYS software and its related theories are adopted to simulate LNG quality,LNG output,energy consumption,methane content in exhaust gas and the adaptability to nitrogen content changes in feed gas for the three denitrification-liquefaction processes.It is found that the recovery rate of methane in the top gas pressurization-condensation reflux process is the highest,reaching 97.2%;its unit energy consumption is the lowest,being 12.81 W·m^(-3) raw gas;and its economic benefit is the best,increasing annual income by RMB 20.7678 million.Therefore,this process is the most suitable for the studied denitrification and liquefaction of feed natural gas.This analysis method can be used as reference to select the denitrification and liquefaction process for similar scale natural gas with high nitrogen content.

关 键 词:天然气液化 高含氮原料气 脱氮工艺 脱甲烷塔 凝液回流 

分 类 号:TE64[石油与天然气工程—油气加工工程]

 

参考文献:

正在载入数据...

 

二级参考文献:

正在载入数据...

 

耦合文献:

正在载入数据...

 

引证文献:

正在载入数据...

 

二级引证文献:

正在载入数据...

 

同被引文献:

正在载入数据...

 

相关期刊文献:

正在载入数据...

相关的主题
相关的作者对象
相关的机构对象