Direct synthesis of light olefins from CO hydrogenation over K/MgFeZn-HTLcs catalysts
- Corresponding author: ZHANG Jian-li, zhangjl@nxu.edu.cn ZHAO Tian-sheng, zhaots@nxu.edu.cn
Citation:
MA Li-ping, ZHANG Jian-li, MA Qing-xiang, FAN Su-bing, ZHAO Tian-sheng. Direct synthesis of light olefins from CO hydrogenation over K/MgFeZn-HTLcs catalysts[J]. Journal of Fuel Chemistry and Technology,
;2016, 44(4): 449-456.
TORRES GALVIS H M, DE JONG K P. Catalysts for production of lower olefins from synthesis gas: A review[J]. ACS Catal, 2013,3(9):2130-2149. doi: 10.1021/cs4003436
FU T J, JIANG Y H, LV J, LI Z H. Effect of carbon support on Fischer-Tropsch synthesis activity and product distribution over Co-based catalysts[J]. Fuel Process Technol, 2013,110(6):141-149.
HADNADEV-KOSTIĈ M S, VULIĈT J, MARINKOVIĈ-NEDUĈIN R P, NIKOLIĈA D, JOVIĈ B. Mg-Fe-mixed oxides derived from layered double hydroxides: A study of the surface properties[J]. J Serb Chem Soc, 2011,76(12):1661-1671. doi: 10.2298/JSC110429149H
DONG Li, YANG Xue-ping. New advances in direct production of light olefins from syngas[J]. Petrochem Technol, 2012,4(10):1201-1206.
LIU Y, TENG B T, GUO X H, LI Y, CHANG J, TIAN L, HAO X, WANG Y, XIANG H W, XU Y Y, LI Y W. Effect of reaction conditions on the catalytic performance of Fe-Mn catalyst for Fischer-Tropsch synthesis[J]. J Mol Catal A: Chem, 2007,272(1/2):182-190.
YANG C, ZHAO H B, HOU Y L, MA D. Fe5C2 Nanoparticles: A facile bromide-induced synthesis and as an active phase for Fischer-Tropsch synthesis[J]. J Am Chem Soc, 2012,134(38):15814-15821. doi: 10.1021/ja305048p
WANG C F, PAN X L, BAO X H. Direct production of light olefins from syngas over a carbon nanotube confined iron catalyst[J]. Chin Sci Bull, 2010,55(12):1117-1119. doi: 10.1007/s11434-010-0076-8
WANG Hu-lin, YANG Yong, WANG Hong, XIANG Hong-wei, LI Yong-wang. Effects of Zn promoter on the structure and Fischer-Tropsch performance of iron catalyst[J]. J Fuel Chem Technol, 2012,40(1):59-67.
TORRES GALVIS H M, BITTER J H, DAVIDIAN T, RUITENBEEK M, DUGULAN A I, DE JONG K P. Iron particle size effects for direct production of lower olefins from synthesis gas[J]. J Am Chem Soc, 2012,134(39):16207-16215. doi: 10.1021/ja304958u
ZHANG J L, FAN S B, ZHAO T S, LI W H, SUN Y H. Carbon modified Fe-Mn-K catalyst for the synthesis of light olefins from CO hydrogenation[J]. React Kinet Mech Cat, 2011,102(2):437-445. doi: 10.1007/s11144-010-0275-y
WANG Gen-cun, ZHANG Kan, LIU Ping, HUI Hai-tao, LI Wen-hua, TAN Yi-sheng. Performance of Fe-Mn catalyst for preparation of light olefins in slurry bed reactor[J]. Petrochem Technol, 2012,41(11):1234-1238.
WEI Jian, MA Xian-gang, FANG Chuan-yan, GE Qing-jie, XU Heng-yong. Iron-silica nanocomposites as a catalyst for the selective conversion of syngas to light olefins[J]. J Fuel Chem Technol, 2014,42(7):827-832.
ZHANG Y L, MA L L, WANG T J, LI X J. Synthesis of Ag promoted porous Fe3O4 microspheres with tunable pore size as catalysts for Fischer-Tropsch production of lower olefins[J]. Catal Commun, 2015,64:32-36. doi: 10.1016/j.catcom.2015.01.033
WANG G C, ZHANG K, LIU P, HUI H T, TAN Y S. Synthesis of light olefins from syngas over Fe-Mn-V-K catalysts in the slurry phase[J]. J Ind Eng Chem, 2013,19(3):961-965. doi: 10.1016/j.jiec.2012.11.017
ZHANG Q H, KANG J C, WANG Y. Development of novel catalysts for Fischer-Tropsch synthesis: Tuning the product selectivity[J]. ChemCatChem, 2010,2(9):1030-1058. doi: 10.1002/cctc.201000071
XU Long-ya, WANG Qing-xia, CAI Guang-yu, CHEN Guo-quan. Effect of support on secondary reactions of ethylene over supported Fe-MnO catalyst[J]. J Fuel Chem Technol, 1993,21(2):121-126.
TSAI Y T, MO X H, CAMPOS A, GOODWIN JR J G, SPIVEY J J. Hydrotalcite supported Co catalysts for CO hydrogenation[J]. Appl Catal A: Gen, 2011,396(1/2):91-100.
GAO Peng, LI Feng, ZHAO Ning, WANG Hui, WEI Wei, SUN Yu-han. Preparation of Cu/Zn/Al/(Zr)/(Y) catalysts from hydrotalcite-like precursors and their catalytic performance for the hydrogenation of CO2 to methanol[J]. Acta Phys-Chim Sin, 2014,30(6):1155-1162.
DI FRONZO A, PIROLA C, COMAZZI A, GALLI F, BIANCHI C L, DI MICHELE A, VIVANI R, NOCCHETTI M, BASTIANINI M, BOFFITO D C. Co-based hydrotalcites as new catalysts for the Fischer-Tropsch synthesis process[J]. Fuel, 2014,119(3):62-69.
DíEZ V K, APESTEGUÍA C R, DI COSIMO J I. Effect of the chemical composition on the catalytic performance of MgyAlOx catalysts for alcohol elimination reactions[J]. J Catal, 2003,215(2):220-233. doi: 10.1016/S0021-9517(03)00010-1
XU Long-ya, WANG Qing-xia, YANG Li, CAI Guang-yu, WANG Kai-li. Performance of IIA metal oxide supported Fe-MnO catalyst for production of light alkenes via syngas[J]. J Fuel Chem Technol, 1995,23(2):125-130.
DE SMIT E, WECKHUYSEN B M. The renaissance of iron-based Fischer-Tropsch synthesis: On the multifaceted catalyst deactivation behavior[J]. Chem Soc Rev, 2008,37(12):2758-2781. doi: 10.1039/b805427d
HUO C F, WU B S, GAO P, YANG Y, LI Y W, JIAO H J. The mechanism of potassium promoter: Enhancing the stability of active surfaces[J]. Angew Chem Int Ed, 2011,50(32):7403-7406. doi: 10.1002/anie.v50.32
CAVANI F, TRIFIRÒ F, VACCARI A. Hydrotalcite-type anionic clays: Preparation, properties and applications[J]. Catal Today, 1991,11(2):173-301. doi: 10.1016/0920-5861(91)80068-K
EVANS D G, SLADE R C T. Structural aspects of layered double hydroxides[J]. Struct Bond, 2006,119:1-87.
XIE Xian-mei. Study on the preparation, performances and application of hydrotalcite-like-compounds[D]. Taiyuan: Taiyuan University of Technology, 2006.
TOSHIYUKI H, YASUMASA Y, KATSUNORI K, ATSUMU T. Decarbonation behavior of Mg-A1-CO3 hydrotalcite-like compounds during heat treatment[J]. Clay Clay Miner, 1995,43(4):427-432. doi: 10.1346/CCMN
VALENTE J S, PRINCE J, MAUBERT A M, LARTUNDO-ROJAS L, ANGEL P D, FERRAT G, HERNANDEZ J G, LOPEZ-SALINAS E. Physicochemical study of nanocapsular layered double hydroxides evolution[J]. J Phys Chem C, 2009,113(14):5547-5555. doi: 10.1021/jp810293y
ZHAO M Q, ZHANG Q, ZHANG W, HUANG J Q, ZHANG Y H, SU D S, WEI F. Embedded high density metal nanoparticles with extraordinary thermal stability derived from guest-host mediated layered double hydroxides[J]. J Am Chem Soc, 2010,132(42):14739-14741. doi: 10.1021/ja106421g
LI P, JIANG E Y, BAI H L. Fabrication of ultrathin epitaxial γ-Fe2O3 films by reactive sputtering[J]. J Phys D: Appl Phys, 2011,44(7):75003-75007. doi: 10.1088/0022-3727/44/7/075003
SUO H Y, WANG S G, ZHANG C H, XU J, WU B S, YANG Y, XIANG H W, LI Y W. Chemical and structural effects of silica in iron-based Fischer-Tropsch synthesis catalysts[J]. J Catal, 2012,286(2):111-123.
YANG Yan-nan, ZHONG Bing, PENG Shao-yi, WANG Qin, CHEN Yi-long, XU Bin-fu. A Mossbauer spectrum study on Fe/Zn catalysts for Fischer-Tropsch synthesis[J]. J Mol Catal, 1993,7(6):425-431.
LIU X M, LU G Q, YAN Z F, BELTRAMINI J. Recent advances in catalysts for methanol synthesis via hydrogenation of CO and CO2[J]. Ind Eng Chem Res, 2003,42(25):6518-6530. doi: 10.1021/ie020979s
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(a),(c): before calcination; (b),(d): after calcination
(a): before calcination; (b): after calcination; (c): after reaction
>(a): Fe 2p; (b): Mg 2p; (c): Zn 2p
a: K/4Mg-1Fe-1Zn; b: K/3Mg-1Fe-2Zn; c: K/2Mg-1Fe-2Zn; d: K/3Mg-2Fe-1Zn; e: K/2Mg-2Fe-1Zn; f: K/2Mg-1Fe-1Zn