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北京理工大學(xué)化學(xué)與化工學(xué)院研究生導(dǎo)師介紹如下:
姓名:高志明
性別:男
職稱:教授/博導(dǎo)
電子郵箱:zgao@bit.edu.cn
研究領(lǐng)域:催化化學(xué),能源催化(氫氣精制)、
環(huán)保催化(催化燃燒)
(一)學(xué)習(xí)和工作簡歷
1985 年 6 月 本科畢業(yè)于吉林大學(xué)化學(xué)系
1993 年 9 月 吉林大學(xué)化學(xué)系 獲理學(xué)博士學(xué)位
1996 年 10 月 – 1998 年 9 月 日本九州大學(xué) 博士后
1999 年 4 月 – 2002 年 3 月 日本千葉工業(yè)大學(xué) 講師
2002 年 9 月 – 2003 年 5 月 英國伯明翰大學(xué) 訪問學(xué)者
2003 年 6 月 – 現(xiàn)在 北京理工大學(xué) 副教授、教授
(二)科研項目
國家自然科學(xué)基金項目、企業(yè)合作項目。
(三)近年發(fā)表論文
1.L. Zhang, Z. Gao*, L. Bao, H. Ma*. Influence of the supports ZrO2 on selective methanation of CO over the nickel supported catalysts, International Journal of Hydrogen Energy 43 (2018) 9287-9295
2.Z. Gao*, S. Zhang, H. Ma, Z. Li*. Surface composition change of the chlorine-doped catalyst Ni(Clx)/CeO2 in the methanation reaction, Journal of Rare Earths 35 (2017) 977-983
3.Z. Gao*, L. Wang, H. Ma, Z. Li*. Durability of catalytic performance of the chlorine-doped catalysts Ni(Clx)/ZrO2 for selective methanation of CO in H2-rich gas, Applied Catalysis A: General 534 (2017) 78-84
4.F. Liu, H. Ma, Z. Li, Z. Gao*. Competitive occupying of Fe3+ and Co3+ ions into the lattice B-sites of perovskite crystalline structure, Chinese Journal of Structural Chemistry 36(2) (2017) 217-228
5.F. Liu, Y. Sang, H. Ma, Z. Li, Z. Gao*. Nickel oxide as an effective catalyst for catalytic combustion of methane, Journal of Natural Gas Science and Engineering 41 (2017) 1-6
6.Z. Gao*, Q. Dai, H. Ma, Z. Li. Ceria supported nickel catalysts for CO removal from H2-rich gas, Journal of Rare Earths 34 (2016) 1213-1220
7.Z. Gao*, L. Cui, H. Ma. Selective methanation of CO in H2-rich gas over Ni/Al2O3 catalyst: Effects of preparation method and Ru addition, International Journal of Hydrogen Energy 41 (2016) 5484-5493
8.Z. Gao*, Y. Liu, Q. He, H. Ma, Z. Li. Preferential oxidation of CO and its subsequent methanation in H2-rich gas over CuO-NiO/CeO2 catalysts, International Journal of Hydrogen Energy 41 (2016) 4646-4659
9.高志明*,代倩子,馬宏偉. 添加氯離子對 Ni/CeO2 催化劑的 CO 選擇甲烷化反應(yīng)催化性能的促進作用,北京理工大學(xué)學(xué)報 36(4) (2016) 429-434
10.高志明*,宋曉媛,馬宏偉,張強. CuO/CeO2 催化劑在溫度變動過程中的
CO-PROX 催化性能,北京理工大學(xué)學(xué)報 36(2) (2016) 215-220
11.龐占永,劉鳳祥,高志明*. 鍶摻雜對鈣鈦礦型 La1-xSrxCoO3-d 的甲烷催化燃燒活性的促進作用,天然氣化工 40(4) (2015) 82-86
12.Z. Gao*, H. Wang, H. Ma, Z. Li. Preparation and characterization of the non-stoichiometric La-Mn perovskites, Journal of Alloys and Compounds 646 (2015) 73-79
13.F. Liu, Z. Li, H. Ma, Z. Gao*. Surface composition and catalytic activity of La-Fe mixed oxides for methane oxidation, Applied Surface Science 351 (2015) 709-714
14.M. Zhang, H. Ma, Z. Gao*. Phase composition of Ni/Mg1-xNixO as a catalyst prepared for selective methanation of CO in H2-rich gas, Journal of Nanomaterials, 2015, http://dx.doi.org/10.1155/2015/790857
15.Z. Gao*, Y. Gong, Q. Zhang*, H. Deng, Y. Yue. Preferential oxidation of CO in excess H2 over CeO2/CuO catalyst: Effect of initial support, Journal of Energy Chemistry 23 (2014) 475-482
16.Z. Gao*, M. Zhou, H. Deng, Y. Yue. Preferential oxidation of CO in excess H2 over CeO2/CuO catalyst: Effect of calcination temperature, Journal of Natural Gas Chemistry 21 (2012) 513-518
17.高志明*,江歆梅,李濤. 煤炭殘渣催化氧化制備腐植酸,北京理工大學(xué)學(xué)報32(9) (2012) 982-985
18.Z. Gao*, H. Li. Tuning surface active oxygen of lanthanum oxide via partial dissolution and re-growth of crystallites, Journal of Natural Gas Chemistry 20 (2011) 483-486
19.Z. Gao*, L. Wei, T. Yan, M. Zhou. Modification of surface layer of magnesium oxide via partial dissolution and re-growth of crystallites, Applied Surface Science 257 (2011) 3412-3416
20.Z. Gao*, R. Wang. Catalytic activity for methane combustion of the perovskite type La1-xSrxCoO3-δ oxide prepared by the urea decomposition method, Applied Catalysis B: Environmental 98 (2010) 147-153
21.Z. Gao*, Y. Ma. Direct oxidation of methyl radicals in OCM process deduced from correlation of product selectivities, Journal of Natural Gas Chemistry 19(5) (2010) 534-538
22.Z. Gao*, Y. Shi. Suppressed formation of CO2 and H2O in the oxidative coupling of methane over La2O3/MgO catalyst by surface modification, Journal of Natural Gas Chemistry 19(2) (2010) 173-178
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