| Literature DB >> 33422792 |
Qingfeng Liu1, Yunfei Bai1, Hong Chen2, Mengmeng Chen1, Yushuai Sang1, Kai Wu1, Zewei Ma1, Yiming Ma1, Yongdan Li3.
Abstract
The efficient depolymerization and hydrodeoxygenation of enzymatic hydrolysis lignin are achieved in cyclohexane solvents over a gamma-alumina supported nickel molybdenum alloy catalyst in a single step. Under initial 3 MPa hydrogen at 320 °C, the highest overall cycloalkane yield of 104.4 mg/g enzymatic hydrolysis lignin with 44.4 wt% selectivity of ethyl-cyclohexane was obtained. The reaction atmosphere and temperature have significant effects on enzymatic hydrolysis lignin conversion, product type and distribution. The conversion of enzymatic hydrolysis lignin was also investigated over different nickel and molybdenum-based catalysts, and the gamma-alumina supported nickel molybdenum alloy catalyst exhibited the highest activity among those catalysts. To reveal the reaction pathways of alkylphenol hydrodeoxygenation, 4-ethylphenol was tested as a model compound. Complete conversion of 4-ethylphenol into cycloalkanes was achieved. A two-step mechanism of 4-ethylphenol dihydroxylation - hydrogenation is proposed, in which the benzene ring saturation is deemed as the rate-determining step.Entities:
Keywords: Cycloalkanes; Enzymatic hydrolysis lignin; Gamma-alumina supported nickel molybdenum alloy catalyst; Solvolysis
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Year: 2020 PMID: 33422792 DOI: 10.1016/j.biortech.2020.124634
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642