论文著作:
[1]ZhangLJ,Liu X, YanHL*,Yan L,Li ZK*, Yan JC, et al.Boosting Li-S battery performance by regulating microstruvtures of porous hollow carbon nanospheres from lignites.Ind Eng Chem Res2024; 63(38):16640-16649.(化工三大刊)
[2] Guo J, Lei Z*, Yan H, Zhang W,Li ZK*, Du Z, et al. Facile construction of porous carbon fibers from coal pitch for Li-S batteries.Int J Coal Sci Technol2024;11(1):60.(一区)
[3]Xie XY, Yan HL*, Lei Z, Zhang W, Yan J, Ren S,LiZK*et al. Facile fabrication of ultralow density and ultrahigh solar absorption monolithic phenolic carbon aerogel from lignite for solar vapor generation.ACS Sustain Chem Eng2024;12(3):1286-96.(一区)
[4]Yan HL, Cheng JY,Li ZK*, Yan JC, Zhang WD, Lei ZP*, et al. Self-floating, monolithic, and aligned phenolic carbon aerogels from coal tar for solar-driven evaporation.Fuel2024;361:130669.(一区)
[5] Li ZK*, Xie XY, Cheng JY, Yan HL, Lin P*, Lei ZP, et al. Vacuum-dried and intrinsic photothermal phenolic carbon aerogel from coal tar rich in polycyclic aromatics for efficient solar steam generation. Ind Eng Chem Res 2023;62(3):1450-62.(化工三大刊)
[6] Cheng J-y, Li Z-k*, Yan H-l, Lei Z-p, Yan J-c, Ren S-b, et al. Preparation and performance oflow-temperature coal tar toughened phenolic foams. J Fuel Chem Technol 2023;51(6):473-82.(封面论文)
[7] Du Z, Lei Z*, Yan H, Wang D, Wang J, Yan J, Li ZK*, et al. HNO3 pre-oxidation-tuned microstructures of porous carbon derived from high-sulfur coal for enhancing capture and catalytic conversion of polysulfides. Fuel 2022;326:125066.(一区)
[8] Yan HL, Liu X, Wang HT, Li ZK*, Shui HF, Lei ZP*, et al. Valorization of lignin to phenols over highly dispersed NiRu/Al2O3 without extra H2: Effect of reaction conditions and insight into the resulting phenols distributions. Fuel 2022;330:125548.(一区)
[9] Wang HT, Li ZK*, Yan HL, Lei ZP, Yan JC, Ren SB, et al. Catalytic hydrogenolysis of lignin and model compounds over highly dispersed Ni-Ru/Al2O3 without additional H2. Fuel 2022;326:125027.(一区)
[10] Wang Z*, Wu T, Wu Z, Li ZK*, Yan J, Yan H, et al. A low carbon footprint method for converting low-rank coals to oxygen-containing chemicals. Fuel 2022;315:123277.(一区)
[11] Li ZK*, Li XL, Yan HL*, Yan JC, Lei ZP, Ren SB, et al. Two-step separation for enriching phenols and esters from base-catalyzed depolymerization of sorghum stalk. Fuel 2022;314:122739.(一区)
[12] Li ZK*, Cheng JY, Yan HL, Lei ZP, Yan JC, Ren SB, et al. Ethanol and formic acid as synergistic solvents for converting lignite to platform chemicals. Fuel 2021;293:120491.(一区)
[13] Li ZK*, Cheng JY, Yan HL, Yan JC, Lei ZP, Ren SB, et al. Pretreatment of sweet sorghum stalk with aqueous hydrogen peroxide for enhancing methanolysis and property of the bio-oil. Renew Energy 2021;175:1127-36.(一区)
[14] Li ZK*, Wang HT, Yan HL, Yan JC, Lei ZP, Ren SB, et al. Catalytic ethanolysis of Xilinguole lignite over layered and mesoporous metal oxide composites to platform chemicals. Fuel 2021;287:119560.(一区)
[15] Li ZK*, Yan HL, Yan JC, Lei ZP, Ren SB, Wang ZC, et al. Insight into structural features of soluble portions from cellulose, cellobiose and monosaccharide methanolysis by GC/MS and ESI FTICRMS. Renew Energy 2020;150:777-85.(一区)
[16] Li ZK*, Yan HL, Yan JC, Wang ZC, Lei ZP, Ren SB, et al. Drying and depolymerization technologies of Zhaotong lignite: A review. Fuel Process Technol 2019;186:88-98.(一区)
[17] Yan HL, Li ZK*, Wang ZC, Lei ZP, Ren SB, Pan CX, et al. Characterization of soluble portions from cellulose, hemicellulose, and lignin methanolysis. Fuel 2019;246:394-401.(一区)
[18] Li ZK, Wei XY*, Yan HL, Zong ZM. Effect of ethanolysis on the structure and pyrolytic reactivity of Zhaotong lignite. Energy Fuels 2017;31(10):10768-74.
[19] Li ZK, Wei XY*, Yan HL, Yu XY, Zong ZM. Insight into the chemical complexity of ethanolysis products from extraction residue of Zhaotong lignite. Fuel 2016;174:287-95.(一区)
[20] Li ZK, Wei XY*, Yan HL, Yu XY, Zong ZM. Characterization of soluble portions from thermal dissolution of Zhaotong lignite in cyclohexane and methanol. Fuel Process Technol 2016;151:131-8.(一区)
[21] Li ZK, Wei XY*, Yan HL, Zong ZM. Insight into the structural features of Zhaotong lignite using multiple techniques. Fuel 2015;153:176-82.(一区,高被引论文)
[22] Li ZK, Wei XY, Yan HL, Wang YG, Kong J, Zong ZM. Advances in lignite extraction and conversion under mild conditions. Energy Fuels 2015;29(11):6869-86.
[23] Li ZK, Zong ZM, Yan HL, Wei ZH, Li Y, Wei XY. Identification of basic nitrogen compounds in ethanol-soluble portion from Zhaotong lignite ethanolysis by positive-ion electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry. Fuel 2015;141:268-74.(一区,高被引论文)
[24] Li ZK, Zong ZM, Yan HL, Wang YG, Ni HX, Wei XY, et al. Characterization of acidic species in ethanol-soluble portion from Zhaotong lignite ethanolysis by negative-ion electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry. Fuel Process Technol 2014;128:297-302.(一区)
[25] Li ZK, Zong ZM, Yan HL, Wang YG, Wei XY, Shi DL, et al. Alkanolysis simulation of lignite-related model compounds using density functional theory. Fuel 2014;120:158-62.(一区)