Artikel

Development and Validation of a Laboratory‐Scale Methanol Synthesis Mini‐Plant and Digital Twin Simulation

27.05.2025

Von Wiley-VCH zur Verfügung gestellt

A methanol mini-plant and its digital twin were developed to study flexible feedstocks, reactant recycling, and product condensation. Experimental results show good agreement with simulations, allowing systematic investigation of process parameters. Tests with biomass-derived syngas demonstrated the feasibility of industrial CO x sources.


Abstract

The utilization of CO2 is becoming increasingly important for replacing fossil resources in the chemical industry. Methanol synthesis from CO2 and H2 can play a key role in providing a renewable base chemical. To develop full process concepts, a methanol mini-plant was set up, accompanied by a digital twin to investigate flexible feedstocks and the recycling of unconverted reactants, including product condensation. Experimental results showed good agreement with the digital twin, using recent kinetic models enabling systematic investigation of process parameters and their influence on in-loop gas composition to identify optimal reaction and feed gas conditions. Experiments with syngas from biomass gasification were conducted to assess the feasibility of industrially relevant CO x sources.

Verwandte Artikel
Development and Validation of a Laboratory‐Scale Methanol Synthesis Mini‐Plant and Digital Twin Simulation
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Development and Validation of a Laboratory‐Scale Methanol Synthesis Mini‐Plant and Digital Twin Simulation
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Development and Validation of a Laboratory‐Scale Methanol Synthesis Mini‐Plant and Digital Twin Simulation
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Development and Validation of a Laboratory‐Scale Methanol Synthesis Mini‐Plant and Digital Twin Simulation
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Development and Validation of a Laboratory‐Scale Methanol Synthesis Mini‐Plant and Digital Twin Simulation
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