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Microwave-Assisted Lignin Wet Peroxide Oxidation to C4 Dicarboxylic Acids.


ABSTRACT: Innovative methodologies, such as microwave-assisted reaction, can help to valorize lignin with higher productivity and better energy efficiency. In this work, microwave heating was tested in the wet peroxide oxidation of three lignins (Indulin AT, Lignol, and Eucalyptus globulus lignins) as a novel methodology to obtain C4 dicarboxylic acids. The effect of temperature, time, and catalyst type (TS-1 or Fe-TS1) was evaluated in the production of these acids. The TS-1 catalyst improved succinic acid yield, achieving up to 9.4 wt % for Lignol lignin. Moreover, the microwave heating specifically enhanced Lignol conversion to malic acid (34 wt %), even without catalyst, showing to be an attractive path for the future valorization of organosolv lignins. Overall, compared to conventional heating, microwave heating originated a rapid lignin conversion. Nevertheless, for prolonged times, conventional heating led to better results for some target products, e.g., malic and succinic acids.

SUBMITTER: Vega-Aguilar CA 

PROVIDER: S-EPMC9775456 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Microwave-Assisted Lignin Wet Peroxide Oxidation to C<sub>4</sub> Dicarboxylic Acids.

Vega-Aguilar Carlos A CA   Costa Carina C   Barreiro Maria Filomena MF   Rodrigues Alírio E AE  

Industrial & engineering chemistry research 20220304 10


Innovative methodologies, such as microwave-assisted reaction, can help to valorize lignin with higher productivity and better energy efficiency. In this work, microwave heating was tested in the wet peroxide oxidation of three lignins (Indulin AT, Lignol, and <i>Eucalyptus globulus</i> lignins) as a novel methodology to obtain C<sub>4</sub> dicarboxylic acids. The effect of temperature, time, and catalyst type (TS-1 or Fe-TS1) was evaluated in the production of these acids. The TS-1 catalyst im  ...[more]

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