LNG接收站热值调节过程的研究与经济评价

Shuting Wang, K. Huang, Xiaoshan Wang, Ning Liao, W. Yan, Quanbin Pei, Baoding Xia
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引用次数: 3

摘要

近年来,国际贸易中出现了大量的LNG来源,其成分也各不相同,含有超过10 mol %的轻烃成分(如乙烷和丙烷)。本文以我国某典型液化天然气接收站为例。针对上述LNG接收站原料中C2 +含量高造成的交换和经济问题,建议采用LH回收、注氮气、注液氮等方式调整产品热值。为了评估LNG接收站的利润,利用Aspen HYSYS对三种过程进行了模拟,实现了消耗分析。在此基础上,分析了三种方案的经济效益。结果表明,在容积测量系统下,加入液氮调节热值的接收端税后净利润比提取C2 +组分的接收端税后净利润高6.17%。在能源计量体制下,三种工艺的税后净利润较原计量模式分别提高8.96%、12.51%和12.47%。结果表明,在当前中国LNG产业链和经济形势下,本文提出的注液氮工艺是高压射流泵出口注液氮最有效、最经济的热值调节方式,具有最高的净利润和最低的消耗成本和资金成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study and Economic Evaluation on the Process of Calorific Value Adjustment in the LNG Receiving Terminal
In recent years, large quantities of LNG sources have occured in international trade, which have also presented themselves with vary compositions and contain more than 10 mol % light hydrocarbons components (such as ethane and propane).This paper takes a certain typical Chinese liquefied natural gas receiving terminal as an example. For the exchange and economic issues caused by high C2 + components in the feedstock of the above mentioned LNG terminal, an adjustion of the calorific value in products by adopting LH recovery, nitrogen gas injection and liquid nitrogen injection is advised. In order to evaluate profits in LNG receiving terminal, three kinds of processes have been simulated by using of the Aspen HYSYS to realize the consumption analysis. Further more, economic benefits of three schemes are analyzed based on energy measurements. It was shown that the after-tax net profit of the receiving terminal which adds liquid nitrogen to adjust calorific value is 6.17% higher than that which extracts C2 + components under the volume measurement system. Under the system of energy measurement, the after-tax net profit of three processes is respectively increased by 8.96%, 12.51% and 12.47% compared to the original measure modes. The results suggest that the proposed liquid nitrogen injection processes is the most effective one which injects at the exit of high-pressure efflux pump, and an economical way to adjust heat value, which has the highest net profit and the lowest consumption cost and capital cost in the current Chinese LNG industry chain and economic situation.
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