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- W3089366605 abstract "Abstract Methanol is an essential chemical building block for the synthesis of numerous industrial products, and has the potential of becoming an alternative fuel. In this study, a simulation of methanol production process was carried out using Aspen Plus software. The process involves two stages, namely syngas production through the dry reforming of methane (DRM) in a reformer reactor and the actual methanol production by the conversion of the syngas obtained. Plug reactor unit operation was employed for the conversion of syngas from the DRM reactor to methanol. Thereafter, the influence of various operating parameters including DRM temperature, plug reactor specification temperature, and pressure effects was studied via the model analysis tool. A rundown of the optimal conditions obtained are DRM temperature of 1050 °C for better conversion of feed and minimal carbon deposit, CH 4 /CO 2 ratio of 0.71, plug reactor constant temperature of 198 °C for optimum methanol yield (4600 kmol) for the given gaseous feed flow rates (5000 kmol/h methane and 7000 kmol/h CO 2 )." @default.
- W3089366605 created "2020-10-08" @default.
- W3089366605 creator A5021307116 @default.
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- W3089366605 date "2020-09-29" @default.
- W3089366605 modified "2023-10-02" @default.
- W3089366605 title "Process simulation for the production of methanol via CO<sub>2</sub> reforming of methane route" @default.
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- W3089366605 doi "https://doi.org/10.1515/cppm-2020-0049" @default.
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