[1] R. Yu, X. Liu, C. Shi, L. Pan, X. Zhang, J.-J. Zou, Review on green synthesis of high energy density hydrocarbon fuel, Chin. J. Energetic Mater. 30(2022)1167-1176.(in Chinese). [2] S.C. Yang, C.X. Shi, Z.S. Shen, L. Pan, Z.F. Huang, X.W. Zhang, J.J. Zou, Conversion of lignin oil and hemicellulose derivative into high-density jet fuel, J. Energy Chem. 77(2023)452-460. [3] C.Z. Chen, D.C. Wu, P. Liu, J. Li, H.H. Xia, M.H. Zhou, J.C. Jiang, Eco-friendly preparation of ultrathin biomass-derived Ni3S2-doped carbon nanosheets for selective hydrogenolysis of lignin model compounds in the absence of hydrogen, Green Chem. 23(8)(2021)3090-3103. [4] H.J. Li, A. Bunrit, N. Li, F. Wang, Heteroatom-participated lignin cleavage to functionalized aromatics, Chem. Soc. Rev. 49(12)(2020)3748-3763. [5] X.W. Zhang, L. Pan, L. Wang, J.J. Zou, Review on synthesis and properties of high-energy-density liquid fuels:hydrocarbons, nanofluids and energetic ionic liquids, Chem. Eng. Sci. 180(2018)95-125. [6] G.K. Nie, X.W. Zhang, P.J. Han, J.J. Xie, L. Pan, L. Wang, J.J. Zou, Lignin-derived multi-cyclic high density biofuel by alkylation and hydrogenated intramolecular cyclization, Chem. Eng. Sci. 158(2017)64-69. [7] P. Vozka, P. Simacek, G. Kilaz, Impact of HEFA feedstocks on fuel composition and properties in blends with jet A, Energy Fuels 32(11)(2018)11595-11606. [8] T.H. Jia, S. Gong, L. Pan, C. Deng, J.J. Zou, X.W. Zhang, Impact of deep hydrogenation on jet fuel oxidation and deposition, Fuel 264(2020)116843. [9] S.J. Malode, K.K. Prabhu, R.J. Mascarenhas, N.P. Shetti, T.M. Aminabhavi, Recent advances and viability in biofuel production, Energy Convers. Manag. X 10(2021)100070. [10] H.K. Jeswani, A. Chilvers, A. Azapagic, Environmental sustainability of biofuels:a review, Proc. Math. Phys. Eng. Sci. 476(2243)(2020)20200351. [11] R.Y. Shu, R.X. Li, B.Q. Lin, C. Wang, Z.D. Cheng, Y. Chen, A review on the catalytic hydrodeoxygenation of lignin-derived phenolic compounds and the conversion of raw lignin to hydrocarbon liquid fuels, Biomass Bioenergy 132(2020)105432. [12] C.G. Wang, X.H. Zhang, Q. Liu, Q. Zhang, L.G. Chen, L.L. Ma, A review of conversion of lignocellulose biomass to liquid transport fuels by integrated refining strategies, Fuel Process. Technol. 208(2020)106485. [13] G.Z. Jiang, D.J. Nowakowski, A.V. Bridgwater, Effect of the temperature on the composition of lignin pyrolysis products, Energy Fuels 24(8)(2010)4470-4475. [14] Y.Y. Ye, Y. Zhang, J.A. Fan, J.E. Chang, Novel method for production of phenolics by combining lignin extraction with lignin depolymerization in aqueous ethanol, Ind. Eng. Chem. Res. 51(1)(2012)103-110. [15] C.X. Shi, J.S. Xu, L. Pan, X.W. Zhang, J.J. Zou, Perspective on synthesis of high-energy-density fuels:from petroleum to coal-based pathway, Chin. J. Chem. Eng. 35(2021)83-91. [16] G.K. Nie, C.X. Shi, Y.Y. Dai, Y.N. Liu, Y.K. Liu, C. Ma, Q. Liu, L. Pan, X.W. Zhang, J.J. Zou, Producing methylcyclopentadiene dimer and trimer based high-performance jet fuels using 5-methyl furfural, Green Chem. 22(22)(2020)7765-7768. [17] P.J. Han, G.K. Nie, J.J. Xie, E. Xiu-tian-feng, L. Pan, X.W. Zhang, J.J. Zou, Synthesis of high-density biofuel with excellent low-temperature properties from lignocellulose-derived feedstock, Fuel Process. Technol. 163(2017)45-50. [18] H. Li, A. Riisager, S. Saravanamurugan, A. Pandey, R.S. Sangwan, S. Yang, R. Luque, Carbon-increasing catalytic strategies for upgrading biomass into energy-intensive fuels and chemicals, ACS Catal. 8(1)(2018)148-187. [19] Z.S. Shen, G.W. Zhang, C.X. Shi, J.C. Qu, L. Pan, Z.F. Huang, X.W. Zhang, J.J. Zou, Bifunctional Pt/Hβ catalyzed alkylation and hydrodeoxygenation of phenol and cyclohexanol in one-pot to synthesize high-density fuels, Fuel 334(2023)126634. [20] S. Gillet, L. Petitjean, M. Aguedo, C.H. Lam, C. Blecker, P.T. Anastas, Impact of lignin structure on oil production via hydroprocessing with a copper-doped porous metal oxide catalyst, Bioresour. Technol. 233(2017)216-226. [21] A.J. Ragauskas, G.T. Beckham, M.J. Biddy, R. Chandra, F. Chen, M.F. Davis, B.H. Davison, R.A. Dixon, P. Gilna, M. Keller, P. Langan, A.K. Naskar, J.N. Saddler, T.J. Tschaplinski, G.A. Tuskan, C.E. Wyman, Lignin valorization:improving lignin processing in the biorefinery, Science 344(6185)(2014)1246843. [22] Q. Han, M.U. Rehman, J.H. Wang, A. Rykov, O.Y. Gutiérrez, Y.J. Zhao, S.P. Wang, X.B. Ma, J.A. Lercher, The synergistic effect between Ni sites and Ni-Fe alloy sites on hydrodeoxygenation of lignin-derived phenols, Appl. Catal., B 253(2019)348-358. [23] B. Guzelciftci, K.B. Park, J.S. Kim, Production of phenol-rich bio-oil via a two-stage pyrolysis of wood, Energy 200(2020)117536. [24] C. Zhao, W.J. Song, J.A. Lercher, Aqueous phase hydroalkylation and hydrodeoxygenation of phenol by dual functional catalysts comprised of Pd/C and H/La-BEA, ACS Catal. 2(12)(2012)2714-2723. [25] C. Zhao, D.M. Camaioni, J.A. Lercher, Selective catalytic hydroalkylation and deoxygenation of substituted phenols to bicycloalkanes, J. Catal. 288(2012)92-103. [26] D.Y. Hong, S.J. Miller, P.K. Agrawal, C.W. Jones, Hydrodeoxygenation and coupling of aqueous phenolics over bifunctional zeolite-supported metal catalysts, Chem. Commun. 46(7)(2010)1038-1040. [27] Y. Zhang, Y. Yang, Q. Hou, E. Xu, L. Wang, F. Li, M. Wei, Metal-acid bifunctional catalysts toward tandem reaction:one-Step hydroalkylation of benzene to cyclohexylbenzene, ACS Appl. Mater. Interfaces 14(2022)31998-32008. [28] S.A. Kishore Kumar, M. John, S.M. Pai, S. Ghosh, B.L. Newalkar, K.K. Pant, Selective hydroalkylation of benzene over palladium supported Y-Zeolite:effect of metal acid balance, Mol. Catal. 442(2017)27-38. [29] J.Y. Huang, Z.Q. Li, J.Y. Yang, Z.K. Peng, Q.Y. Liu, Z.Y. Liu, Identification of metal/acid matching balance over bifunctional Pd/Hβ toward benzene hydroalkylation, Ind. Eng. Chem. Res. 60(5)(2021)2326-2336. [30] G.K. Nie, X.W. Zhang, L. Pan, M. Wang, J.J. Zou, One-pot production of branched decalins as high-density jet fuel from monocyclic alkanes and alcohols, Chem. Eng. Sci. 180(2018)64-69. [31] J.W. Xie, L. Zhang, X.W. Zhang, P.J. Han, J.J. Xie, L. Pan, D.R. Zou, S.H. Liu, J.J. Zou, Synthesis of high-density and low-freezing-point jet fuel using lignocellulose-derived isophorone and furanic aldehydes, Sustain. Energy Fuels 2(8)(2018)1863-1869. [32] F. Chen, N. Li, S.S. Li, G.Y. Li, A.Q. Wang, Y. Cong, X.D. Wang, T. Zhang, Synthesis of jet fuel range cycloalkanes with diacetone alcohol from lignocellulose, Green Chem. 18(21)(2016)5751-5755. [33] Z.B. Li, R. Chen, F.Y. Lu, Comparative analysis of crashworthiness of empty and foam-filled thin-walled tubes, Thin-Walled Struct. 124(2018)343-349. [34] G.K. Nie, X.W. Zhang, L. Pan, P.J. Han, J.J. Xie, Z. Li, J.W. Xie, J.J. Zou, Hydrogenated intramolecular cyclization of diphenylmethane derivatives for synthesizing high-density biofuel, Chem. Eng. Sci. 173(2017)91-97. [35] G.K. Nie, H.Y. Wang, Q. Li, L. Pan, Y.N. Liu, Z.Q. Song, X.W. Zhang, J.J. Zou, S.T. Yu, Co-conversion of lignocellulosic derivatives to jet fuel blending by an efficient hydrophobic acid resin, Appl. Catal., B 292(2021)120181. [36] Y.S. Liu, G.H. Cheng, E. Barath, H. Shi, J.A. Lercher, Alkylation of lignin-derived aromatic oxygenates with cyclic alcohols on acidic zeolites, Appl. Catal., B 281(2021)119424. [37] J. Zhu, F.Q. Chen, Z.G. Zhang, M. Li, Q.W. Yang, Y.W. Yang, Z.B. Bao, Q.L. Ren, M-gallate (M=Ni, co) metal-organic framework-derived Ni/C and bimetallic Ni-co/C catalysts for lignin conversion into monophenols, ACS Sustainable Chem. Eng. 7(15)(2019)12955-12963. [38] Q. Deng, G.K. Nie, L. Pan, J.J. Zou, X.W. Zhang, L. Wang, Highly selective self-condensation of cyclic ketones using MOF-encapsulating phosphotungstic acid for renewable high-density fuel, Green Chem. 17(8)(2015)4473-4481. |