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首页> 外文期刊>Journal of natural gas science and engineering >Thermo-economic analysis of natural gas treatment process using triethanolamine (TEA) and diethanolamine (DEA) as gas sweeteners
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Thermo-economic analysis of natural gas treatment process using triethanolamine (TEA) and diethanolamine (DEA) as gas sweeteners

机译:三乙醇胺(TEA)和二乙醇胺(DEA)作为气体甜味剂的天然气处理过程的热经济分析

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摘要

The concept of thermo-economics was used to analyse natural gas process in a quest to find the most efficient process route to process natural gas from exergetic-economic performance view. This work was carried out to identify the most thermo-economic efficient absorbent in natural gas process using Aspen Hysys (R) as process simulator. Two different process configurations for natural gas processing (Diethanolamine (DEA) and Triethanolamine (TEA) amine solvent process) were assessed on the basis of exergetic and economic efficiency using similar feed rate and product specifications. The two processes were simulated using feed flow of 1245 kmol/h to produce a clean and treated natural gas with purity of 99% in the final product exit stream. The results of the simulation obtained were data generated for stream properties, heat duties, power requirement and equipment sizes required to carry out exergy and economic evaluation. Energy analysis showed that the two processes satisfied the principles of energy conservation but differs in the amount of energy required and produced. The overall exergetic efficiency and irreversibility of the two selected processes configurations using DEA (97.97%, 49.82 GJ/h) and TEA (98.91%, 21.26 GJ/h) absorbent were determined respectively. Exergy analysis of equipment reveals that amine contactor and regenerator are the major areas of exergy destruction and least efficient among all equipment. The economic analysis result shows that the two processes (DEA and TEA process) have similar payback period and rate of return on investment of 4 years and 26% respectively. The DEA process is favoured by higher net profit after tax of $ 2,927,993. Thermodynamic and economic analysis of both configurations shows TEA and DEA to have close or similar performance in many respect. Therefore, comparison and the use of thermo-economic performances as a discriminating factor between the two selected processes favours the selection of TEA process as the best alternative route to treat natural gas despite fast kinetics, low investment capital and high enthalpies of absorption that favours DEA process in achieving higher purity natural gas. (C) 2016 Elsevier B.V. All rights reserved.
机译:热经济学的概念被用于分析天然气工艺,以期从积极的经济绩效角度寻找最有效的工艺路线来加工天然气。这项工作是使用Aspen Hysys(R)作为过程模拟器来确定天然气过程中最热经济有效的吸收剂的。在能源效率和经济效率的基础上,使用相似的进料速率和产品规格,对天然气加工的两种不同工艺配置(二乙醇胺(DEA)和三乙醇胺(TEA)胺溶剂工艺)进行了评估。使用1245 kmol / h的进料流量对这两个过程进行了模拟,以生产出最终产品出口流中纯度为99%的清洁且经过处理的天然气。获得的模拟结果是为进行火用和经济评估所需的物流特性,热负荷,功率需求和设备尺寸生成的数据。能量分析表明,这两个过程满足节能原则,但所需和产生的能量数量不同。分别确定了使用DEA(97.97%,49.82 GJ / h)和TEA(98.91%,21.26 GJ / h)吸收剂的两个选定工艺配置的总体能效和不可逆性。设备的火用分析表明,胺接触器和再生器是火用破坏的主要领域,并且在所有设备中效率最低。经济分析结果表明,两个流程(DEA和TEA流程)的投资回收期相似,投资回报率分别为4年和26%。 DEA流程因较高的税后净利润2,927,993美元而受到青睐。两种配置的热力学和经济分析表明,TEA和DEA在许多方面具有接近或相似的性能。因此,尽管动力学快速,投资资本低,吸收焓高,这对选择DEA而言,比较和使用热经济性能作为两个选定工艺之间的区别因素有利于选择TEA工艺作为处理天然气的最佳替代方法。过程以实现更高纯度的天然气。 (C)2016 Elsevier B.V.保留所有权利。

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