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Optimizing Acid Gas Removal From Natural Gas Using Amine Mixtures

机译:使用胺混合物从天然气中清除酸性气体

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Removal of Acid gases from natural gas is currently a global issue; apart from it important in meeting the customer’s contract specifications and for liquefaction process specification needs, it is also a measure for reduci the global CO2 emission. Natural gas process throughput rate is mainly based on the product specification control a the natural gas market drive for acid gas free products. Th paper considered the gas treatment implications of the product specification; in profile trend with process throughput. The aim of this study is to investigate the possibility of using different amine mixtures as absorbent solvent in natural gas treatment process; using HYSYS software program as the simulation tool. A base case of Acid gas removal process (Non-Amine mixture based) is simulated using HYSYS 3.2 process simulator to create a steady-state process. The simulation program is then used sensitized Amine mixture based process; through the modification of physical, thermodynamics and transport properties of the gas/amine process and also to develop an improved amine process that is environmental friendly. Simulation studies and analysis is carried out on an existi natural gas treatment plant. The simulation result shows t the application of amine mixture increases acid gases (C0 and H2S) pick-up in amine based solution with no corrosi effect. It also shows that regulating and increasing amine mixtures flow rate; encourages CO2 capturing capacity at low temperature, lowering the amine residence time in the stripper and reduces the tendency for CO2 emission.
机译:从天然气中除去酸性气体是目前是全球性问题;除了在满足客户的合同规范和液化过程规范需求方面,它还有一项重要的是,它也是Reduci全局二氧化碳排放的措施。天然气过程吞吐率主要基于产品规格控制A酸气体自由产品天然气市场驱动器。纸张考虑了产品规格的气体处理意义;在流程吞吐量的概况趋势中。本研究的目的是探讨使用不同胺混合物作为天然气处理过程中吸收溶剂的可能性;使用Hysys软件程序作为模拟工具。使用Hysys 3.2工艺模拟器模拟酸性气体去除过程(非胺混合物)的基本情况,以产生稳态过程。然后使用仿真程序的基于胺混合的方法;通过改进气体/胺过程的物理,热力学和运输性能,也可以开发一种环境友好的改进的胺过程。在存在的天然气处理厂进行了仿真研究和分析。仿真结果显示胺混合物的施加在基于胺基溶液中增加酸性气体(CO和H2S)拾取,没有腐蚀效应。它还表明,调节和增加胺混合物流量;促进CO2在低温下捕获容量,降低剥离器中的胺停留时间并降低CO2排放的趋势。

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