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[1] Youhua Zhang*. In-situ IR study for elucidating the adsorption cracking mechanism of toluene over calcined olivine catalyst. International Journal of Hydrogen Energy. 2018. 43. 15835-15842 £¨SCIÊÕ¼ÇÒEIÊÕ¼£¬£¬7.139, Electrochemistry Q1;Energy and Fuel Q2£©

[2] Youhua Zhang*, Linhai Duan, Hossein Esmaeili. A review on biodiesel production using various heterogeneous nanocatalysts: Operation mechanisms and performances. Biomass and Bioenergy. 2022. 158. 106356 £¨SCIÊÕ¼ÇÒEIÊÕ¼£¬£¬5.774, Agricultural Engineering Q1; Biotechnology & Applied Microbiology Q1;Energy and Fuel Q2£©

[3] Youhua Zhang*. The influence of Pd4Cr6@(NH2)M-MOF(Cr) catalyst on components of formic acid dehydrogenation gaseous products. Energy sources, Part A: recovery, utilization, and environmental effects. 2023. 45 (1). 952-961. £¨SCIÊÕ¼ÇÒEIÊÕ¼£¬£¬2.902, Engineering,Chemical Q3£©

[4] Youhua Zhang*, Linhai Duan*, Ping Yang, Dan Zhang, Xiuhong Meng. Deactivation of Pd6Cr4@NH2-MIL-101 catalyst in dehydrogenation of formic acid. Chemical Engineering & Technology. 2023. 46 (4). 738-746. £¨SCIÊÕ¼ÇÒEIÊÕ¼£¬£¬2.215, Engineering, Chemical Q3£©

[5] Shanzhi Xin, Youhua Zhang*, Linhai Duan, Shui Cao, Xiuhong Meng. Microwave-assisted calcined olivine catalyst steam reforming of tar for hydrogen production. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2020.(SCIÊÕ¼ÇÒEIÊÕ¼, 2.902, Engineering,Chemical Q3)

[6] Youhua Zhang*. Study on Hydrogen Production of Bio-oil Catalytic Reforming by Charcoal Catalyst. Applied Ecology and Environmental Research. 2019. 17(4). 8541-8553 (SCIÊÕ¼, 0.816, Environmental Sciences Q4)

[7] ÕÅÓÈ»ª*£¬£¬ÑÕÓ¿½Ý£¬£¬ÕÔÇïÁ棬£¬ÓÚÏþÑÞ£¬£¬Áõ¼Î࣬£¬ÖܹãÔ­. éÏé­Ê¯¶Ô¼×±½ÖØÕû»îÐÔ¼°»ý̼ËÙÂʵÄÓ°ÏìÑо¿. ÁÉÄþ¹¤³ÌÊÖÒÕ´óѧѧ±¨£¨×ÔÈ»¿ÆÑ§°æ£©. 2018. 37(2). 303-309 (±±´ó½¹µã)

[8] Youhua Zhang, Yongjie Yan*. The Reaction Mechanism of Bio-oil Model Compound Steam Reforming for Hydrogen Production over an Ni-Co/Ce-Zr-O Catalyst. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2013. 35(21£©. 1983¨C1990 (SCIÊÕ¼ÇÒEIÊÕ¼, 2.902, Engineering,Chemical Q3)

[9] Youhua Zhang, Wenzhi Li, Suping Zhang, Qingli Xu, Yongjie Yan*. Hydrogen Production by the Catalytic Reforming of Volatile from Biomass Pyrolysis over a Bimetallic Catalyst. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2013. 35(21). 1975¨C1982 (SCIÊÕ¼ÇÒEIÊÕ¼, 2.902, Engineering,Chemical Q3)

[10] Youhua zhang, Shanzhi Xin, Tingchen Li, Qingli Xu, Suping Zhang, Zhengwei Ren, Yongjie Yan*. A study on the intergrated process for hydrogen-rich gas production from biomass. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2013. 35(20). 1905¨C1913  (SCIÊÕ¼ÇÒEIÊÕ¼, 2.902, Engineering,Chemical Q3)

[11] ÕÅÓÈ»ª£¬£¬ÀîÎÄÖ¾£¬£¬ÕÅËØÆ½£¬£¬ÐíÇìÀû£¬£¬ÑÕÓ¿½Ý*. Ä¾Ð¼Æø»¯ÖÆÇâÀú³ÌÖÐÆø»¯¼Á¶Ô½¹Óͺ¬Á¿µÄÓ°Ïì. Ì«ÑôÄÜѧ±¨. 2012. 33 (7). 1235-1241£¨EIÊÕ¼£¬£¬CSCD£¬£¬±±´ó½¹µã£©

[12] Youhua Zhang, Wenzhi Li, Suping zhang, Qingli Xu, Yongjie Yan*. Steam Reforming of Bio-oil for Hydrogen Production: Effect of Ni-Co Bimetallic Catalysts. Chemical Engineering & Technology. 2012. 35 (2). 302-308 (SCIÊÕ¼ÇÒEIÊÕ¼£¬£¬2.215, Engineering, Chemical Q3)

[13] ÕÅÓÈ»ª£¬£¬ÐÁÉÆÖ¾£¬£¬ÕÅËØÆ½£¬£¬ÐíÇìÀû£¬£¬ÑÕÓ¿½Ý*. ÉúÎïÖʵÍÎÂÆø»¯¼°´ß»¯ÖØÕûÖÆÇâ. ʯÓÍ»¯¹¤. 2010. 39(11). 1198-1203£¨CSCD£¬£¬±±´ó½¹µã£©

[14] Ping Yang, Xiuhong Meng, Penghu Guo, Rujin Zhou, Youhua Zhang, Shui Cao, Dan Zhang, Hongbing Ji, Linhai Duan*. Highly selective separation of C3H6/C3H8 within hierarchical metal¨Corganic CuxOy@HP¨CCu¨CBTCs. Materials Chemistry and Physics. 2023. 294. 127024 (SCIÊÕ¼£¬£¬ÖпÆÔºÈýÇø)

[15] Ping Yang, Rujin Zhou, Youhua Zhang, Shui Cao, Dan Zhang, Hongbing Ji, Linhai Duan*, and Xiuhong Meng*. Enhanced CO2/N2 separation performance in HP-Cu-BTCs by modifying the open-metal sites and porosity using added templates. Korean Journal of Chemical Engineering. 2023 (SCIÊÕ¼£¬£¬ÖпÆÔºËÄÇø)

[16] Zhang Dan, Yang Ping, Zhang Youhua, Duan Linhai*, Meng Xiuhong*. Controlling the Pore Structure and Photocatalytic Performance of the Flexible Fe¢ó Metal-Organic Framework MIL-53(Fe) by Using Surfactants. China Petroleum Processing and Petrochemical Technology. 2021. 23(3). 23-29 (SCIÊÕ¼)

[17] Xiuhong Meng, Chunhui Lin, Youhua Zhang, Huibo Qin, Shui Cao and Linhai Duan*. Mass Transfer Behavior of Benzene in Hierarchically Structured ZSM-5. 2019. 7. 502 £¨SCIÊÕ¼£¬£¬ÖпÆÔº¶þÇø£©

[18] ÕÔÇïÁæ*£¬£¬ÕÅÓÈ»ª£¬£¬ÓÚÏþÑÞ. ÊÊÌåÓ«¹âÆÊÎö·¨¼ì²âÑøÖ³·ÏË®ÖÐËÄ»·ËØÀ࿹ÉúËØ. ÆÊÎö²âÊÔѧ±¨. 2016. 35(7). 869-873 £¨CSCD£¬£¬±±´ó½¹µã£©

[19] ÕÔÇïÁæ*, ÕÅÓÈ»ª, ÓÚÏþÑÞ. »ùÓÚºËËáÍâÇÐøI µÄÊÊÅäÌåÓ«¹â´«¸ÐÆ÷¼ì²âÈËÄòÒºÖеÄHg2+. ÆÊÎö»¯Ñ§. 2016. 44(7). 1099-1105 £¨SCIÊÕ¼ÇÒEIÊÕ¼£¬£¬CSCD£¬£¬±±´ó½¹µã£©

[20] ÕÔÇïÁæ*£¬£¬Ê·ËØÇ࣬£¬ÕÅÓÈ»ª£¬£¬ÓÚÏþÑÞ. øÁªÊÊÌåÆÊÎö·¨¼ì²â¶¯ÎïÔ´ÐÔʳÎïÖеĿ¨ÄÇÃ¹ËØ²ÐÁô. ʳÎ﹤ҵ¿Æ¼¼. 2015. 36(10). 86-100 £¨CSCD£¬£¬±±´ó½¹µã£©

[21] ÐÁÉÆÖ¾, ÕÅÓÈ»ª, ÐíÇìÀû, ÕÅËØÆ½, ÑÕÓ¿½Ý*. ÉúÎïÖÊÒ»Ì廝֯ÇâÖд߻¯¼ÁµÄÑ¡ÔñÓëʧ»îÔÙÉúÑо¿. Ì«ÑôÄÜѧ±¨. 2011. 32(7). 1069-1074 (EIÊÕ¼£¬£¬CSCD£¬£¬±±´ó½¹µã)

[22] ÐÁÉÆÖ¾£¬£¬ÕÅÓÈ»ª£¬£¬ÐíÇìÀû£¬£¬ÕÅËØÆ½£¬£¬ÑÕÓ¿½Ý*. Ë®ÕôÆøÆø·ÕÏÂÉúÎïÖÊÈȽâÖÆÈ¡¸»ÇâÆøÌåÊÔÑéÑо¿. ¿ÉÔÙÉúÄÜÔ´. 2009. 27(6). 36-40 £¨±±´ó½¹µã£©

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