Abstract

Due to concerns regarding fossil greenhouse gas emissions, biogenic material such as forest residues is viewed nowadays as a valuable source of carbon atoms to produce syngas that can be used to synthesise biofuels such as methanol. A great challenge in using gasified biomass for methanol production is the large excess of carbon in the syngas, as compared to the H2 content. The water–gas shift (WGS) reaction is often used to add H2 and balance the syngas. CO2 is also produced by this reaction. Some of the CO2 has to be removed from the gaseous mixture, thus decreasing the process carbon yield and maintaining CO2 emissions. The WGS reaction also decreases the overall process heat output. This paper demonstrates the usefulness of using an extra source of renewable H2 from steam electrolysis instead of relying on the WGS reaction, for a much higher performance of syngas production from gasification of wood in a simple system with a fixed-bed gasifier. A commercial process simulation software is employed to predict that this approach will be more efficient (overall energy efficiency of about 67%) and productive (carbon conversion yield of about 75%) than relying on the WGS reaction. The outlook for this process that includes the use of the solid oxide electrolyser technology appears to be very promising because the electrolyser has the dual function of providing all of the supplemental H2 required for syngas balancing and all the O2 required for the production of a suitable hot raw syngas. This process is conducive to biomethanol production in dispersed, small plants using local biomass for end-users from the same geographical area, thus contributing to regional sustainability.

Highlights

  • Synthesis gas, commonly referred to as syngas, is a mixture that contains mainly hydrogen (H2), carbon monoxide (CO), and some carbon dioxide (CO2)

  • This syngas has the right composition to be used in methanol synthesis

  • With calculations based on mass and energy balance, along with stoichiometry and thermodynamic equilibrium calculations, such a tandem was shown to achieve superior carbon conversion yield (75%) and overall energy efficiency (67%)

Read more

Summary

Introduction

Commonly referred to as syngas, is a mixture that contains mainly hydrogen (H2), carbon monoxide (CO), and some carbon dioxide (CO2). When derived from solid fuels such as coal or wood, syngas may be called producer gas. Syngas is used for the production of a broad range of products, namely, hydrocarbon fuels such as gasoline, diesel, or commodity chemicals such as methanol. This alcohol is a basic commodity chemical used as a solvent, a starting material for a large spectrum of chemicals, and a liquid fuel that can be safely handled and stored. Methanol can be converted into dimethyl ether (DME), another basic chemical widely viewed as a substitute for diesel in internal compression engines

Objectives
Methods
Results
Conclusion

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.