Challenges and opportunities in microwave-assisted catalytic pyrolysis of biomass: A review

X Ren, MS Ghazani, H Zhu, W Ao, H Zhang… - Applied Energy, 2022 - Elsevier
Microwave-assisted catalytic pyrolysis (MACP) is one of the emerging technologies for
efficiently converting the solid biomass residues to valuable products, including liquid bio-oil …

Advances in heterogeneous catalysts for lignin hydrogenolysis

Z Shen, C Shi, F Liu, W Wang, M Ai, Z Huang… - Advanced …, 2024 - Wiley Online Library
Lignin is the main component of lignocellulose and the largest source of aromatic
substances on the earth. Biofuel and bio‐chemicals derived from lignin can reduce the use …

Synergy of single atoms and Lewis acid sites for efficient and selective lignin disassembly into monolignol derivatives

G Meng, W Lan, L Zhang, S Wang… - Journal of the …, 2023 - ACS Publications
Lignin is the most abundant aromatic polymer from the natural and renewable
lignocellulosic biomass resource. Develo** highly efficient catalysts for lignin …

Modulation of Brønsted and Lewis Acid Centers for NixCo3−xO4 Spinel Catalysts: Towards Efficient Catalytic Conversion of Lignin

Y Qi, X **/publication/360035809_Lignin-First_Depolymerization_of_Lignocellulose_into_Monophenols_over_Carbon_Nanotube_Supported_Ruthenium_Impact_of_Lignin_Sources/links/628a007bcd5c1b0b34eea484/Lignin-First-Depolymerization-of-Lignocellulose-into-Monophenols-over-Carbon-Nanotube-Supported-Ruthenium-Impact-of-Lignin-Sources.pdf" data-clk="hl=fr&sa=T&oi=gga&ct=gga&cd=6&d=2515468049208936459&ei=wCyoZ7q8F4Ky6rQPkvTT2A0" data-clk-atid="C4jx_Ny86CIJ" target="_blank">[PDF] researchgate.net

Lignin‐First Depolymerization of Lignocellulose into Monophenols over Carbon Nanotube‐Supported Ruthenium: Impact of Lignin Sources

S Su, LP **ao, X Chen, S Wang, XH Chen… - …, 2022 - Wiley Online Library
Lignin‐first depolymerization of lignocellulosic biomass into aromatics is of great
significance to sustainable biorefinery. However, it remains a challenge, owing to the …

Rational design of MoS2-based catalysts toward lignin hydrodeoxygenation: Interplay of structure, catalysis, and stability

X Diao, N Ji - Journal of Energy Chemistry, 2023 - Elsevier
The MoS 2-based materials are a vital class of heterogeneous catalysts for the
hydrodeoxygenation of lignin and its model compounds to produce value-added chemicals …

Selective production of phenolic monomers via high efficient lignin depolymerization with a carbon based nickel-iron-molybdenum carbide catalyst under mild …

B Yan, X Lin, Z Chen, Q Cai, S Zhang - Bioresource Technology, 2021 - Elsevier
Lignin is an abundant renewable source of bio-aromatics and its valorization is of great
importance. In this work, an efficient non-precious carbon based metal-Mo 2 C catalytic …

Hydrodeoxygenation of lignin-derived phenolic compounds over Ru/TiO2 catalyst: Effect of TiO2 morphology

Z Zhong, J Li, M Jian, R Shu, Z Tian, C Wang, Y Chen… - Fuel, 2023 - Elsevier
Hydrodeoxygenation (HDO) reaction is a necessary refinery process for lignin-derived
phenolic compounds to be used as high quality liquid fuels. Catalyst morphology makes a …