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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >The process design and simulation for the methanol production on the FPSO (floating production, storage and off-loading) system
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The process design and simulation for the methanol production on the FPSO (floating production, storage and off-loading) system

机译:甲醇的工艺设计和仿真生产单(浮式生产,存储和卸载)系统

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A process for methanol production from 100 MM scfd of stranded gas and CO2 is proposed and simulated using a commercial process simulator, PRO/II v.9.1, for a FPSO (floating production, storage, off-loading) system. The process consists of Steam-CO2 Reforming (SCR), methanol synthesis, a Reverse Water-Gas Shift (RWGS) reaction and ancillar-ies with recycle streams to SCR and RWGS. All reactors were simulated using the Gibbs reactor model. Also, the Plug Flow Reactor (PFR) model with reaction rate equations was used for the methanol reactor and the result was compared to the Gibbs reactor model. To maximize the use of the carbon source in stranded gas and CO2 while avoiding an undesirable increase in process size, the optimum recycle ratios were calculated with a satisfying constraint, a steam-to-carbon ratio >1 in the SCR. In the proposed Methanol-FPSO process the RWGS reactor can maximize CO2 utilization and case studies were performed to analyze the influence of RWGS.
机译:甲醇生产过程从100 MM税金链提出了天然气和二氧化碳和模拟使用一个商业过程模拟器,PRO / IIv.9.1,生产储油轮(浮式生产储油卸,卸载)系统。Steam-CO2改革(SCR),甲醇合成反向和水气交换(RWGS)反应ancillar-ies可控硅和循环流RWGS。反应器模型。模型被用于反应速率方程甲醇反应器和结果比较吉布斯反应器模型。链的碳源气体和二氧化碳同时避免不良的增加过程大小,最优回收比率计算与steam-to-carbon满足约束在可控硅比> 1。Methanol-FPSO过程RWGS反应堆最大化利用二氧化碳和案例研究执行分析RWGS的影响。

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