Abstract
We present and develop alternative catalysts for biomass conversion and specifically lignin conversion into aromatics. Unlike the conventional CoMo and NiMo formulations, our catalysts can convert low-sulfur feedstocks. A set of five magnesia-alumina mixed oxides were screened in the hydrodealkylation of alkyl phenyl ethers as lignin model compounds. The typical selectivity to phenol is 30-75 %. Interestingly, we saw that the more basic the catalyst, the higher the selectivity for phenol. The results concur with the formation of phenoxide (PhO-) and RH3+ fragments on the catalyst surface. These can then react with H+ and H- species formed by the hydrogen dissociation on the MgO surface, giving phenol and hydrocarbons. We conclude that magnesia-alumina mixed oxides are attractive candidates for catalyzing lignin breakdown. These catalysts are highly stable, inexpensive, and readily available .© 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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Strassberger, Z., Tanase, S., & Rothenberg, G. (2011). Reductive dealkylation of anisole and phenetole: Towards practical lignin conversion. European Journal of Organic Chemistry, (27), 5246–5249. https://doi.org/10.1002/ejoc.201101015
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