2016 AIChE Annual Meeting
(323e) Chemical Looping –Oxidative Dehydrogenation for the Green Production of Ethylene
Authors
We propose a chemical-looping ODH (CL-ODH) approach that can address these issues. In this scheme, a metal oxide based redox catalyst provides oxygen for the ODH reaction from its lattice. The oxygen depleted redox catalyst is subsequently oxidized in air, regenerating the catalyst and releasing the heat needed for the process. In this work we show proof of concept and characterization data for a model CL-ODH redox catalyst. Additionally, we report the results of a process modeling study based upon preliminary reaction data. It is shown that an active CL-ODH catalyst can be made based upon a doped Mg6MnO8 system. Simulations indicate that CL-ODH has the potential to reduce CO2 and NOx emissions by over 80%, and that system is projected to be more energy efficient than steam cracking even when the fuel value of byproducts is considered.