Catalytic Depolymerization of Lignin in Ionic Liquid Using a Continuous Flow Fixed-Bed Reaction System
Xiuhui Wang, Ningning Wang, Thanh Tung Nguyen, Eika W. Qian
Abstract
Xiuhui Wang, Ningning Wang, Thanh Tung Nguyen, Eika W. Qian
Abstract
The catalytic depolymerization of alkali lignin dissolved in a mixed solvent of ionic liquid ( N -allylpyridinium chloride, [Apy]Cl) and water, with ZrO 2 /SO 4 2– or Pt-ZrO 2/ SO 4 2– catalyst, were performed in a continuous flow fixed-bed reaction system at low temperature (from 150 to 210 °C). The yields (carbon-based) of total products and phenolic compounds catalyzed by ZrO 2 /SO 4 2–, which increased with increasing temperature, were 30.6% and 13.4% at 210 °C, respectively. Furthermore, the addition of platinum to the ZrO 2 /SO 4 2– catalyst enhanced the depolymerization of alkali lignin. In the case of Pt-ZrO 2 /SO 4 2–, the yields (carbon-based) of total products and phenolic compounds reached 44.9% and 18.7%, respectively, at 210 °C. Additionally, [Apy]Cl readily dissolved lignin and served as a medium for lignin depolymerization, which improved the reactivity of lignin for the use in the continuous flow system at low temperature.
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The catalytic depolymerization of alkali lignin dissolved in a mixed solvent of ionic liquid ( N -allylpyridinium chloride, [Apy]Cl) and water, with ZrO 2 /SO 4 2– or Pt-ZrO 2/ SO 4 2– catalyst, were performed in a continuous flow fixed-bed reaction system at low temperature (from 150 to 210 °C). The yields (carbon-based) of total products and phenolic compounds catalyzed by ZrO 2 /SO 4 2–, which increased with increasing temperature, were 30.6% and 13.4% at 210 °C, respectively. Furthermore, the addition of platinum to the ZrO 2 /SO 4 2– catalyst enhanced the depolymerization of alkali lignin. In the case of Pt-ZrO 2 /SO 4 2–, the yields (carbon-based) of total products and phenolic compounds reached 44.9% and 18.7%, respectively, at 210 °C. Additionally, [Apy]Cl readily dissolved lignin and served as a medium for lignin depolymerization, which improved the reactivity of lignin for the use in the continuous flow system at low temperature.
Key concepts: Depolymerization, Lignin, Catalysis, Chemistry, Alkali metal, Ionic liquid, Solvent, Reactivity (psychology)