Methanol to Acetic Acid¤
Introduction¤
Methanol carbonylation is a chemical reaction to produce acetic acid from methanol and a gaseous feed (CO). There are different processes to produce acetic acid depending on the used catalyst. For instance, the BP process uses a irridium catalyst while the Celanese process uses a rhodium catalyst.
ES Model Parameters¤
All the parameters concerning the Methanol Cabonylation are listed in the table below.
entry_key | value | unit | sets | source_reference |
---|---|---|---|---|
ACETIC_ACID (layer) | 1 | kt | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
ACETIC_ACID (layer) | 1 | - | old | Stadler, Zoe; Meier, Boris; Friedl, Markus; Damartzis, Theodoros; Moret, Stefano; Li, Xiang; Borasio, Marcello; Maréchal, François, (2019): "Carbon Flows in the Energy Transition Extension of the Project "Renewable Methane for Transport and Mobility"" |
CO2_A (layer) | 0.15027 | ktCO2_eq | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
METHANOL (layer) | -2.06612 | kt | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
METHANOL (layer) | -1.43 | - | old | Stadler, Zoe; Meier, Boris; Friedl, Markus; Damartzis, Theodoros; Moret, Stefano; Li, Xiang; Borasio, Marcello; Maréchal, François, (2019): "Carbon Flows in the Energy Transition Extension of the Project "Renewable Methane for Transport and Mobility"" |
c_inv | 710.9 | CHF/kW | old | Stadler, Zoe; Meier, Boris; Friedl, Markus; Damartzis, Theodoros; Moret, Stefano; Li, Xiang; Borasio, Marcello; Maréchal, François, (2019): "Carbon Flows in the Energy Transition Extension of the Project "Renewable Methane for Transport and Mobility"" |
c_inv | 749.93 | USD/kW | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
c_maint | 35.55 | CHF/kW/yr | old | Stadler, Zoe; Meier, Boris; Friedl, Markus; Damartzis, Theodoros; Moret, Stefano; Li, Xiang; Borasio, Marcello; Maréchal, François, (2019): "Carbon Flows in the Energy Transition Extension of the Project "Renewable Methane for Transport and Mobility"" |
c_maint | 37.5 | USD/(kW)/yr | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
c_p | 1 | - | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
gwp_constr | 0 | ktCO2_eq/(kW) | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
lifetime | 25 | y | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
ref_size | 23068.9 | kW | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
trl | 9 | - | GLO | Smejkal, Q.; Linke, D.; Baerns, M., (2005): "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation" |
References¤
Data Sources |
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Smejkal, Q.; Linke, D.; Baerns, M.. (2005). "Energetic and Economic Evaluation of the Production of Acetic Acid via Ethane Oxidation". Chemical Engineering and Processing: Process Intensification. https://doi.org/10.1016/j.cep.2004.06.004 ⧉ |
Stadler, Zoe; Meier, Boris; Friedl, Markus; Damartzis, Theodoros; Moret, Stefano; Li, Xiang; Borasio, Marcello; Maréchal, François. (2019). "Carbon Flows in the Energy Transition Extension of the Project "Renewable Methane for Transport and Mobility"" |