张军营1,
赵永椿1,
郑楚光1
1.华中科技大学煤燃烧国家重点实验室,武汉 430074
基金项目: 国家自然科学基金资助项目(41672148)
Effect of Pd/Al2O3 modification by metal on performance of ventilation air methane catalytic oxidation
LIU Yuchen1,,ZHANG Junying1,
ZHAO Yongchun1,
ZHENG Chuguang1
1.State Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan 430074, China
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摘要:以堇青石蜂窝陶瓷为基体的Pd/Al2O3催化剂,通过负载不同金属(M:Ce、Ni、Ba、Mg、Fe、La和Mn)氧化物进行改性,研究煤矿乏风中甲烷的催化氧化反应机理。结果表明,不同金属氧化物负载下M-Pd/Al2O3晶相存在明显差异,Ni和Mg的负载阻止了Al2O3高温下向稳定的α-Al2O3相态转变,Ni和Mg添加与Al2O3形成NiAl2O4和MgAl2O4能有效地提高催化剂的低温催化活性和高温热稳定性;PdO2比PdO催化活性更高,Ni和Mg的负载能维持PdO2相态存在,减弱PdO2烧结发生和促进Pd的均匀分布;Ni、Mg氧化物改性Pd/Al2O3催化剂催化氧化煤矿乏风,具有良好的应用前景。
关键词: 煤矿乏风/
蜂窝陶瓷/
Pd/Al2O3/
催化氧化
Abstract:Pd/Al2O3 catalysts deposited on cordierite-based ceramic honeycomb were prepared and tested for catalytic oxidation of ventilation air methane by addition of different metal(M:Ce, Ni, Ba, Mg, Fe, La and Mn) oxides. The results show crystalline difference among M-Pd/Al2O3 catalysts doped by various metal oxides in which Ni and Mg inhibit the transformation of Al2O3 towards α-Al2O3. The formation of NiAl2O4 and MgAl2O4 by addition of Ni and Mg effectively improved the activity at lower temperature and the thermal stability of catalysts. PdO2 has better catalytic activity than PdO. The addition of Ni and Mg could sustain more Pd in the phase of PdO2, suppress PdO particles aggregation and promote the distribution of Pd. The Pd/Al2O3 catalysts modified by Ni and Mg oxides may have promising prospects in VAM catalytic combustion.
Key words:ventilation air methane/
ceramic honeycomb/
Pd/Al2O3/
catalytic oxidation.
[1] | United States Environmental Protection Agency.Assessment of the worldwide market potential for oxidizing coal mine ventilation air methane:430-R-03-002[R].United States Environmental Protection Agency,2003 |
[2] | SU S, BEATH A, GUO H,et al.An assessment of mine methane mitigation and utilisation technologies[J].Progress in Energy and Combustion Science,2005,31(2):123-170 |
[3] | SU S, AGNEW J.Catalytic combustion of coal mine ventilation air methane[J].Fuel,2006,85(9):1201-1210 |
[4] | 李志凯, 秦张峰, 吴志伟, 等.煤层气治理与利用技术研究开发进展[J].燃料化学学报,2013,41(7):787-797 |
[5] | JIANG P P, LU G Z, GUO Y, et al.Preparation and properties of γ-Al2O3 washcoat deposited on a ceramic honeycomb[J].Surface & Coatings Technology,2005,190(2/3):314-320 |
[6] | CIMINO S, LISI L, PIRONE R, et al.Dual-site Pd/perovskite monolithic catalysts for methane catalytic combustion[J].Industrial & Engineering Chemistry Research,2004,43(21):6670-6679 |
[7] | BENEDETTO A D, CIMINO S, PIRONE R, et al.Temperature excursions during the transient behaviour of high temperature catalytic combustion monoliths[J].Catalysis Today,2003,83(1/2/3/4):171-182 |
[8] | COLUSSI S, TROVARELLI A, CRISTIANI C, et al.The influence of ceria and other rare earth promoters on palladium-based methane combustion catalysts[J].Catalysis Today,2012,180(1):124-130 |
[9] | RUSSO N, PALMISANO P, FINO D.Pd substitution effects on perovskite catalyst activity for methane emission control[J].Chemical Engineering Journal,2009,154(1/2/3):137-141 |
[10] | LEE J H, TRIMM D L.Catalytic combustion of methane[J].Fuel Processing Technology,1995,42(2/3):339-359 |
[11] | ALEGRE V V, SILVA A P D M, SCHMAL M.Catalytic combustion of methane over palladium alumina modified by niobia[J].Catalysis Communications,2006,7(5):314-322 |
[12] | THEVENNIN P O, ALCALDE A, PETTERSSON L J, et al.Catalytic combustion of methane over cerium-doped palladium catalysts[J].Journal of Catalysis,2003,215(1):78-86 |
[13] | LIU Y, WANG S, GAO D N, et al.Influence of metal oxides on the performance of Pd/Al2O3 catalysts for methane combustion under lean-fuel conditions[J].Fuel Processing Technology,2013,111:55-61 |
[14] | WIDJAJA H, SEKIZAWA K, EGUCHI K, et al.Oxidation of methane over Pd/mixed oxides for catalytic combustion[J].Catalysis Today,1999,47(1/2/3/4):95-101 |
[15] | GAO D N, ZHANG C X, WANG S, et al.Catalytic activity of Pd/Al2O3 toward the combustion of methane[J].Catalysis Communication,2008,9(15):2583-2587 |
[16] | 张金凤, 刘宇键, 田辉平.拟薄水铝石酸化胶溶过程中溶胶粒径的变化[J].石油化工高等学校学报,2010,23(2):40-42 |
[17] | OZAWA Y, TOCHIHARA Y, NAGAI M, et al.Effect of addition of Nd2O3 and La2O3 to PdO/Al2O3 in catalytic combustion of methane[J].Catalysis Communications,2003,4(3):87-90 |
[18] | GLUHOI A C, BOGDANCHIKOVA N, NIEUWENHUYS B E.The effect of different types of additives on the catalytic activity of Au/Al2O3 in propene total oxidation:Transition metal oxides and ceria[J].Journal of Catalysis,2005,229(1):154-162 |
[19] | KINNUNEN N M, SUVANTO M, MORENO M A, et al.Methane oxidation on alumina supported palladium catalysts:Effect of Pd precursor and solvent[J].Applied Catalysis A:General,2009,370(1/2):78-87 |
[20] | THEVENIN P O, POCOROBA E, PETTERSSON L J, et al.Characterization and activity of supported palladium combustion catalysts[J].Journal of Catalysis,2002,207(1):139-149 |
[21] | LIN W, ZHU Y X, WU N Z, et al.Total oxidation of methane at low temperature over Pd/TiO2/Al2O3:Effects of the support and residual chlorine ions[J].Applied Catalysis B:Environmental,2004,50(1):59-66 |
[22] | MAIONE A, ANDRE F, RUIZ P.Structured bimetallic Pd-Pt/γ-Al2O3 catalysts on FeCrAlloy fibers for total combustion of methane[J].Applied Catalysis B: Environmental,2007,75(1/2):59-70 |
[23] | 赵骧,白尔铮,胡云光.催化剂[M].北京:中国物资出版社,2001:572-573 |
[24] | ZOU X L, RUI Z B, SONG S Q, et al.Enhanced methane combustion performance over NiAl2O4-interface-promoted Pd/γ-Al2O3[J].Journal of Catalysis,2016,338:192-201 |
[25] | LI D L, LI R L, LU M M, et al.Carbon dioxide reforming of methane over Ru catalysts supported on Mg-Al oxides:A highly dispersed and stable Ru/Mg(Al)O catalyst[J].Applied Catalysis B:Environmental,2017,200:566-577 |
[26] | 安鑫,张军营,赵永椿,等.煤矿乏风分级催化氧化固碳的实验研究[J].中国电机工程学报,2015,35(S1):125-131 |
[27] | CHURCH J S, CANT N W, TRIMM D L.Stabilisation of aluminas by rare earth and alkaline earthions[J].Applied Catalysis A:General,1993,101(1):105-116 |
[28] | REQUIES J, ALVAREZ-GALVAN M C, BARRIO V L, et al.Palladium-manganese catalysts supported on monolith systems for methane combustion[J].Applied Catalysis B:Environmental,2008,79(2):122-131 |
[29] | ARTIZZU P, GARBOWSKI E, PRIMET M, et al.Catalytic combustion of methane on aluminate-supported copper oxide[J].Catalysis Today,1999,47(1/2/3/4):83-93 |
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金属改性Pd/Al2O3对煤矿乏风催化氧化性能的影响
刘钰琛1,,张军营1,
赵永椿1,
郑楚光1
1.华中科技大学煤燃烧国家重点实验室,武汉 430074
基金项目: 国家自然科学基金资助项目(41672148)
关键词: 煤矿乏风/
蜂窝陶瓷/
Pd/Al2O3/
催化氧化
摘要:以堇青石蜂窝陶瓷为基体的Pd/Al2O3催化剂,通过负载不同金属(M:Ce、Ni、Ba、Mg、Fe、La和Mn)氧化物进行改性,研究煤矿乏风中甲烷的催化氧化反应机理。结果表明,不同金属氧化物负载下M-Pd/Al2O3晶相存在明显差异,Ni和Mg的负载阻止了Al2O3高温下向稳定的α-Al2O3相态转变,Ni和Mg添加与Al2O3形成NiAl2O4和MgAl2O4能有效地提高催化剂的低温催化活性和高温热稳定性;PdO2比PdO催化活性更高,Ni和Mg的负载能维持PdO2相态存在,减弱PdO2烧结发生和促进Pd的均匀分布;Ni、Mg氧化物改性Pd/Al2O3催化剂催化氧化煤矿乏风,具有良好的应用前景。
English Abstract
Effect of Pd/Al2O3 modification by metal on performance of ventilation air methane catalytic oxidation
LIU Yuchen1,,ZHANG Junying1,
ZHAO Yongchun1,
ZHENG Chuguang1
1.State Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan 430074, China
Keywords: ventilation air methane/
ceramic honeycomb/
Pd/Al2O3/
catalytic oxidation
Abstract:Pd/Al2O3 catalysts deposited on cordierite-based ceramic honeycomb were prepared and tested for catalytic oxidation of ventilation air methane by addition of different metal(M:Ce, Ni, Ba, Mg, Fe, La and Mn) oxides. The results show crystalline difference among M-Pd/Al2O3 catalysts doped by various metal oxides in which Ni and Mg inhibit the transformation of Al2O3 towards α-Al2O3. The formation of NiAl2O4 and MgAl2O4 by addition of Ni and Mg effectively improved the activity at lower temperature and the thermal stability of catalysts. PdO2 has better catalytic activity than PdO. The addition of Ni and Mg could sustain more Pd in the phase of PdO2, suppress PdO particles aggregation and promote the distribution of Pd. The Pd/Al2O3 catalysts modified by Ni and Mg oxides may have promising prospects in VAM catalytic combustion.