Overview of fuel properties of biomass fast pyrolysis oils Q Lu, WZ Li, XF Zhu Energy conversion and management 50 (5), 1376-1383, 2009 | 1055 | 2009 |
Influence of pyrolysis temperature and time on the cellulose fast pyrolysis products: Analytical Py-GC/MS study Q Lu, X Yang, C Dong, Z Zhang, X Zhang, X Zhu Journal of Analytical and Applied Pyrolysis 92 (2), 430-438, 2011 | 480 | 2011 |
Analysis on chemical and physical properties of bio-oil pyrolyzed from rice husk Q Lu, X Yang, X Zhu Journal of Analytical and Applied Pyrolysis 82 (2), 191-198, 2008 | 357 | 2008 |
Catalytic upgrading of biomass fast pyrolysis vapors with nano metal oxides: an analytical Py-GC/MS study Q Lu, ZF Zhang, CQ Dong, XF Zhu Energies 3 (11), 1805-1820, 2010 | 337 | 2010 |
Characteristics and mechanism study of analytical fast pyrolysis of poplar wood C Dong, Z Zhang, Q Lu, Y Yang Energy conversion and Management 57, 49-59, 2012 | 242 | 2012 |
Catalytic upgrading of biomass fast pyrolysis vapors with titania and zirconia/titania based catalysts Q Lu, Y Zhang, Z Tang, W Li, X Zhu Fuel 89 (8), 2096-2103, 2010 | 234 | 2010 |
Study on pyrolysis behaviors of non-woody lignins with TG-FTIR and Py-GC/MS L Chen, X Wang, H Yang, Q Lu, D Li, Q Yang, H Chen Journal of Analytical and Applied Pyrolysis 113, 499-507, 2015 | 231 | 2015 |
Catalytic pyrolysis of cellulose with sulfated metal oxides: a promising method for obtaining high yield of light furan compounds Q Lu, WM Xiong, WZ Li, QX Guo, XF Zhu Bioresource technology 100 (20), 4871-4876, 2009 | 226 | 2009 |
Selective fast pyrolysis of biomass impregnated with ZnCl2 to produce furfural: Analytical Py-GC/MS study Q Lu, C Dong, X Zhang, H Tian, Y Yang, X Zhu Journal of Analytical and Applied Pyrolysis 90 (2), 204-212, 2011 | 214 | 2011 |
Analytical pyrolysis–gas chromatography/mass spectrometry (Py–GC/MS) of sawdust with Al/SBA-15 catalysts L Qiang, L Wen-Zhi, Z Dong, Z Xi-Feng Journal of Analytical and Applied Pyrolysis 84 (2), 131-138, 2009 | 177 | 2009 |
Catalytic pyrolysis of lignocellulosic biomass: A review of variations in process factors and system structure T Kan, V Strezov, T Evans, J He, R Kumar, Q Lu Renewable and Sustainable Energy Reviews 134, 110305, 2020 | 157 | 2020 |
Catalytic fast pyrolysis of biomass impregnated with K3PO4 to produce phenolic compounds: analytical Py-GC/MS study Q Lu, Z Zhang, X Yang, C Dong, X Zhu Journal of analytical and applied pyrolysis 104, 139-145, 2013 | 135 | 2013 |
Catalytic fast pyrolysis of cellulose and biomass to produce levoglucosenone using magnetic SO42−/TiO2–Fe3O4 Q Lu, X Ye, Z Zhang, C Dong, Y Zhang Bioresource technology 171, 10-15, 2014 | 128 | 2014 |
Catalytic fast pyrolysis of biomass with noble metal-like catalysts to produce high-grade bio-oil: Analytical Py-GC/MS study Q Lu, M Zhou, W Li, X Wang, M Cui, Y Yang Catalysis today 302, 169-179, 2018 | 125 | 2018 |
Selective fast pyrolysis of biomass impregnated with ZnCl2: Furfural production together with acetic acid and activated carbon as by-products Q Lu, Z Wang, C Dong, Z Zhang, Y Zhang, Y Yang, X Zhu Journal of Analytical and Applied Pyrolysis 91 (1), 273-279, 2011 | 120 | 2011 |
Catalytic upgrading of biomass fast pyrolysis vapors with Pd/SBA-15 catalysts Q Lu, Z Tang, Y Zhang, X Zhu Industrial & Engineering Chemistry Research 49 (6), 2573-2580, 2010 | 118 | 2010 |
Catalytic fast pyrolysis of cellulose and biomass to selectively produce levoglucosenone using activated carbon catalyst X Ye, Q Lu, X Wang, H Guo, M Cui, C Dong, Y Yang ACS Sustainable Chemistry & Engineering 5 (11), 10815-10825, 2017 | 111 | 2017 |
Recent progress in quantum chemistry modeling on the pyrolysis mechanisms of lignocellulosic biomass B Hu, B Zhang, W Xie, X Jiang, J Liu, Q Lu Energy & Fuels 34 (9), 10384-10440, 2020 | 98 | 2020 |
Catalytic Steam Reforming of Toluene as a Model Compound of Biomass Gasification Tar Using Ni-CeO2/SBA-15 Catalysts J Tao, L Zhao, C Dong, Q Lu, X Du, E Dahlquist Energies 6 (7), 3284-3296, 2013 | 93 | 2013 |
Mechanism of cellulose fast pyrolysis: The role of characteristic chain ends and dehydrated units Q Lu, B Hu, Z Zhang, Y Wu, M Cui, D Liu, C Dong, Y Yang Combustion and Flame 198, 267-277, 2018 | 84 | 2018 |