Direct conversion of bio-ethanol to isobutene on nanosized Zn xZryOz mixed oxides with balanced acid - Base sites

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Abstract

We report the design and synthesis of nanosized ZnxZr yOz mixed oxides for direct and high-yield conversion of bio-ethanol to isobutene (83%). ZnO is addded to ZrO2 to selectively passivate zirconia's strong Lewis acidic sites and weaken Brönsted acidic sites, while simultaneously introducing basicity. As a result, the undesired reactions of bio-ethanol dehydration and acetone polymerization/coking are suppressed. Instead, a surface basic site-catalyzed ethanol dehydrogenation to acetaldehyde, acetaldehyde to acetone conversion via a complex pathway including aldol-condensation/dehydrogenation, and a Brönsted acidic site-catalyzed acetone-to-isobutene reaction pathway dominates on the nanosized Zn xZryOz mixed oxide catalyst, leading to a highly selective process for direct conversion of bio-ethanol to isobutene. © 2011 American Chemical Society.

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Sun, J., Zhu, K., Gao, F., Wang, C., Liu, J., Peden, C. H. F., & Wang, Y. (2011). Direct conversion of bio-ethanol to isobutene on nanosized Zn xZryOz mixed oxides with balanced acid - Base sites. Journal of the American Chemical Society, 133(29), 11096–11099. https://doi.org/10.1021/ja204235v

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