论文著作:
2023年:
[1] Hui Kan, Yue Wang, Wenlong Mo*, Xianyong Wei*, Hongyu Mi, Kongjun Ma, Meixia Zhu, Wencang guo, Jia Guo, Junmin Niu, Xing Fan. Effect of solvent swelling with different enhancement method on the microstructure and pyrolysis performance of Hefeng subbituminous coal[J]. Fuel, 2023, 332: 126066.
[2] Xiao-Bo HU, Hao XU, Wen-Long Mo*, Xing FAN, Wen-Cang GUO, Jia GUO, Jun-Min NIU, Hong-Yu MI, Ya-Ya MA, Xian-Yong WEI*. Effect of sequential thermal dissolution on structure and pyrolysis characteristics of Naomaohu lignite[J]. Fuel, 2023, 331: 125930.
[3] Zhi-Hui Feng, Lin Liu, Wen-Long Mo*, Xian-Yong Wei*, Jun-Rong Yuan, Xing Fan, Wen-Cang Guo, Jia Guo, Jun-Min Niu. Co-pyrolysis and co-combustion performance of Karamay oily sludge and Zhundong subbituminous coal [J]. ACS Omega, 2022, https://doi.org/10.1021/ acsomega.2c04854.
[4] Xiaoqiang He, Yaya Ma, Wenlong Mo*, Tiezhen Ren, Junrong Yuan, Xianyong Wei, Xing Fan, Shupei Zhang. FTIR-based study on effect of deashing on the molecular structure of Hefeng sub-bituminous coal and its liquefaction residue [J]. Energy Sources, Part A Recovery, Utilization, and Environmental Effects, 2022, 44(4): 10395-10408.
2022年:
[1] Xian-Kang Shan, Shuai-Li Zhao, Ya-Ya Ma, Wenlong Mo*, Xian-Yong Wei. Analysis of pyrolysis performance and molecular structure of Xinjiang five kinds of low-rank coals based on TG-DTG method [J]. ACS Omega, 2022, 7, 8547-8557.
[2] Xian-Jin Huang, Wen-Long Mo*, Meng Zou, Feng-Yun Ma, Tie-Zhen Ren, Jian-Zhang Zhao, Tian-Sheng Zhao. Effect of MgO Promoter on the Structure, Performance and Carbon Deposition of Ni-Al2O3 Catalyst for CO Methanation Based-on Slurry-bed Reactor [J]. ChemistrySelect, 2022, 7, 1-10.
[3] Xian-Jin Huang, Wen-Long Mo*, Ya-Ya Ma, Xiao-Qiang He, Yelixiati·Syls, Xian-Yong Wei*, Xing Fan, Xiao-Qin Yang, Shu-Pei Zhang. Pyrolysis kinetic analysis of sequential extract residues from Hefeng subbituminous coal based on Coats-Redfern method [J]. ACS Omega, 2022, 7 (25): 21397-21406.
[4] 杨伟强,毛凯敏,莫文龙*,马凤云,魏贤勇*,樊星,任铁真.基于模型化合物反应路径解析淖毛湖褐煤萃取残渣的甲醇醇解机理[J].燃料化学学报,2022,50(04):396-407. (EI)
[5] 徐小伟,莫文龙*,郝呈祥,刘一波,魏贤勇,杨晓勤,张书培.基于准东煤的Texaco气化炉灰渣组成结构特征与热转化性能[J].燃料化学学报,2022,50(07):777-786. (EI)
[6] 胡小波,杨晓勤,莫文龙*,张书培,高吉,魏贤勇,樊星.循环流化床煤气化灰渣的组成结构特征与热转化性能[J].燃料化学学报,2022,50(10):1361-1371. (EI)
[7] Zi-Fan Wu, Xian-Yong Wei*, Wen-Long Mo*, Yu-Hong Kang, Xiao-Qi Zhang,Xian-Kang Shan, Guang-Hui Liu, Xing Fan. Catalytic hydroconversion of the light residue from Yinggemajianfeng lignite over a solid superacid [J]. Fuel, 2022, 310: 122470.
2021年:
[1] Mo Wen-long*, Wu Zi-fan, He Xiao-qiang, Qiang Wen-jie, Wei Bo, Wei Xian-yong, Wu Yu-long, Fan Xing, Ma Feng-yun. Functional group characteristics and pyrolysis/combustion performance of fly ashes from Karamay oily sludge based on FT-IR and TG-DTG analyses [J]. Fuel, 2021, 296: 120669.
[2] Ya-Ya Ma, Xing Fan*, Wen-Long Mo*, Guo-Sheng Li, Feng-Yun Ma, Xian-Yong Wei. Catalytic hydrogenation and heteroatom removal for isopropanol soluble organic matter of Dongming lignite[J]. Fuel processing technology, 2021, 211: 106589-106595.
[3] Ya-ya Ma, Huan-huan Wang, Wen-long Mo*, Xin-yang Zhang, Xing Fan, Jun Ma, Feng-yun Ma, Xian-yong Wei. Effect of Swelling by organic solvent on Structure, Pyrolysis and Methanol Extraction Performance of Hefeng Bituminous Coal [J]. ACS Omega, 2021, 6(23): 14765-14773.
[4] Hao Xu, Xing Fan*, Guo-Sheng Li, Yang-Yang Xu, Wen-Long Mo*, Peter N. Kuznetsov, Feng-Yun Ma, Xian-Yong Wei. Preparation of Co-Mo/γ-Al2O3 catalyst and the catalytic hydrogenation effects on coal-related model compounds [J]. Journal of the Energy Institute, 2021, 96: 52-60.
[5] Wen-Long Mo*, Yue Wang, Ya-Ya Ma, Yi-Jie Peng, Xian-Yong Wei*, Xing Fan, Yu-Long Wu. Direct liquefaction performance of sub-bituminous coal from Hefeng by solid super acids and pyrolysis kinetic analysis of the corresponding residue[J]. Journal of Analytical and Applied Pyrolysis, 2021, 159: 105181.
[6] Huang Xianjin, Mo Wenlong*, He Xiaoqiang, Fan xing, Ma Fengyun, Tax Dilhumar. Effect of promoter on the structure, performance and carbon deposition of Ni-Al2O3 catalyst for CO2-CH4 reforming[J]. ACS Omega, 2021, 6: 16381-16390.
[7] 王越,马亚亚,莫文龙*,龚文涛,马凤云,樊星,魏贤勇,张书培. 基于FT-IR分析和丰煤逐级萃取物和萃余物的分子结构特征[J]. 燃料化学学报,2021,49(7): 890-901. (EI)
[8] 毛凯敏,莫文龙*,马凤云*,马亚亚,王越,魏贤勇,樊星.淖毛湖褐煤分级萃取可溶有机质的组成结构特征和难溶有机质的热转化性能[J]. 燃料化学学报,2021,49(10): 1389-1401. (EI)
2020年:
[1] MA Yaya, MA Fengyun*, Mo Wenlong*, Wang Qiang. Five-stage sequential extraction of Hefeng coal and direct liquefaction performance of the extraction residue[J]. Fuel, 2020, 266: 117039-117048.
[2] Xiao-Qiang He, Wen-Long Mo*, Qiang Wang, Ya-Ya Ma, Feng-Yun Ma, Xing Fan, Xian-yong Wei. Effect of swelling treatment by organic solvent on the structure and pyrolysis performance of the direct coal liquefaction residue[J]. Energy & Fuels, 2020, 34(7): 8685-8696.
[3] Wenlong Mo*, Xiaoqiang He, Yaya Ma, Jun Ma, Yongjian Ma, Fengyun Ma, Xing Fan, Xianyong Wei. Effect of swelling with ionic liquid on the molecular structure and pyrolysis performance of Hefeng subbituminous coal [J]. Energy & Fuels, 2020, 34, 16099-16108.
[4] Gao Xianlong, Mo Wenlong*, Ma Fengyu*, Tsubaki Noritatsu, Wu Hongli and Fan Xing. Effect of Forming Process on the Properties and Structure of Raney-Ni Catalyst for Hydrogenation of 1,4-butenediol[J]. RSC Advances, 2020, 10: 5516-5524.
[5] Gao Xianlong, Mo Wenlong*, Ma Fengyun, Fan Xing. Influence of Nickel addition on the Structure and Performance of Ni-Al2O3 Catalyst for Hydrogenation of 1,4-Butynediol to produce 1,4-butenediol[J]. New journal of chemistry, 2020, 44: 7683-7689.
[6] Gao Xianlong, Mo Wenlong*, Ma Fengyun, He Xiaoqiang. Effect of ball-milling time on the performance of Ni-Al2O3 catalyst for 1,4-butynediol hydrogenation to produce 1,4-butenediol[J]. China petroleum processing & petrochemical technology, 2020, 22(1): 78-86.
[7] Gao Xianlong, Mo Wenlong*, Ma Fengyun, Fan Xing. Effect of Ni-Al alloy & Raney-Ni Structure Modified with Promoter on the Catalytic Hydrogenation of 1,4-Butylenediol[J]. Chinese journal of inorganic chemistry, 2020, 35(5): 958-968.
[8] Huanhuan Wang, Wenlong Mo*, Xiaoqiang He, Xing Fan, Fengyun Ma, Shuai Liu, Dihumar·Tax. Effect of Ca promoter on the structure, performance and carbon deposition of Ni-Al2O3 catalyst for CO2-CH4 reforming[J]. ACS omega, 2020, 5, 28955-28964.
2019年:
[1] Wenlong Mo*, Fengyun Ma, Yaya Ma, Xing Fan. The optimization of Ni-Al2O3 catalyst with the addition of La2O3 for CO2-CH4 reforming to produce syngas[J]. International Journal of Hydrogen Energy, 2019, 44(45): 24510-24524.
[2] 莫文龙,郑霜,马亚亚,马凤云,艾沙·努拉洪,席龙飞.制备方法对1,4-丁炔二醇加氢Ni-Al2O3催化剂性能的影响[J].石油学报(石油加工),2019,35(02):252-260. (EI)
[3] 莫文龙,马凤云,刘景梅,钟梅,艾沙·努拉洪.基于程序升温氢化表征的Ni-Al2O3催化剂上CO2-CH4重整反应积炭研究[J].燃料化学学报,2019,47(05):549-557. (EI)
[4] 马亚亚,马凤云,莫文龙*,樊星.酸洗脱灰处理对新疆和丰低阶煤结构和萃取性能的影响[J].燃料化学学报,2019,47(06):649-660. (EI)
[5] 张瑞玉,莫文龙*,马凤云,钟梅,刘景梅.碱液浓度对1,4-丁炔二醇加氢Raney-Ni催化剂结构和性能影响[J].石油学报(石油加工),2019,35(04):669-675. (EI)
[6] 何小强,莫文龙*,王强,马凤云.离子液体溶胀对煤直接液化残渣结构及热解性能的影响[J].燃料化学学报, 2019, 47(12): 1417-1429. (EI)