Clean Technology, Vol.19, No.4, 379-387, December, 2013
청정수소생산을 위한 에탄올 수증기개질반응 및 막반응기에서의 응용
Ethanol Steam Reforming Reaction for a Clean Hydrogen Production and its Application in a Membrane Reactor
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초록
본 총설에서는 최근 청정수소생산방법으로 큰 관심을 받고 있는 에탄올 수증기개질반응(ethanol steam reforming reaction)에 대해 소개하고자 한다. 다양한 촉매, 반응온도, 에탄올과 물의 몰비에 따른 에탄올 수증기개질반응의 반응특성 및 반응속도식(reaction rate equation)을 검토해 보고자 한다. 또한, 반응기와 분리기를 동시에 장착한 새로운 개념의 막반응기(membrane reactor)를 소개하며, 막반응기의 사용이 일반적인 충전층반응기(packed-bed reactor)에 비해 에탄올 전환율과 수소 수율에 어떠한 영향을 주는지에 대하여 고찰해 보고자 한다.
Ethanol steam reforming reaction considered as a clean hydrogen production method is introduced in this paper. Reactivity and reaction rate equation of ethanol steam reforming reaction using various catalysts, reaction temperature, and molar ratio of ethanol and water will be discussed. In addition to introducing a membrane reactor combining a reactor and a separator, the effect of the use of a membrane reactor on an ethanol conversion and hydrogen yield will be compared to those from a conventional packed-bed reactor.
- Lim H, Gu YF, Oyama ST, J. Membr. Sci., 351(1-2), 149 (2010)
- Klouz V, Fierro V, Denton P, Katz H, Lisse JP, Bouvot-Mauduit S, Mirodatos C, J. Power Sources, 105(1), 26 (2002)
- Marino F, Boveri M, Baronetti G, Laborde M, Int. J. Hydrogen Energy., 26, 665 (2001)
- Llorca J, Homs N, Sales J, Fierro JLG, de la Piscina PR, J. Catal., 222(2), 470 (2004)
- Diagne C, Idriss H, Kiennemann A, Catal. Commun., 3, 565 (2002)
- Sun J, Qiu X, Wu F, Zhu W, Wang W, Hao S, Int.J. Hydrogen Energy., 29, 1075 (2004)
- Batista MS, Santos RKS, Assaf EM, Assaf JM, Ticianelli EA, J. Power Sources, 134(1), 27 (2004)
- Biswas P, Kunzru D, Int. J. Hydrogen Energy., 32, 969 (2007)
- Kwak BS, Kim J, Kang M, Int. J. Hydrogen Energy., 35, 11829 (2010)
- Abdelkader A, Daly H, Saih Y, Morgan K, Mohamed MA, Halawy SA, Hardacre C, Int. J. Hydrogen Energy., 38, 8263 (2013)
- Han SJ, Bang Y, Yoo J, Seo JG, Song IK, Int. J. Hydrogen Energy., 38, 8285 (2013)
- Xu J, Froment GF, AIChE J., 35, 88 (1989)
- Therdthianwong A, Sakulkoakiet T, Therdthianwong S, ScienceAsia., 27, 193 (2001)
- Orucu E, Gokaliler F, Aksoylu AE, Onsan ZI, Catal. Lett., 120(3-4), 198 (2008)
- Akande A, Aboudheir A, Idem R, Dalai A, Int. J. Hydrogen Energy., 31, 1707 (2006)
- Yun S, Lim H, Oyama ST, J. Membr. Sci., 409-410, 222 (2012)
- Sun J, Qiu XP, Wu F, Zhu WT, Int.J. Hydrogen Energy., 30, 437 (2005)
- Vaidya PD, Rodrigues AE, Ind. Eng. Chem. Res., 45(19), 6614 (2006)
- Veronica M, Graciela B, Norma A, Miguel L, Appl. Chem.Eng. J., 138, 602 (2008)
- Sanchez Marcano JG, Tsotsis TT, Catalytic Membranes and Membrane Reactors, 1st ed., WILEY-VCH, Weinheim, 5 (2002)
- de Vos RM, Verweij H, Science, 279(5357), 1710 (1998)
- Kusakabe K, Sakamoto S, Saie T, Morooka S, Sep. Purif. Technol., 16(2), 139 (1999)
- Fujii T, Yano T, Nakamura K, Miyawaki O, J. Membr. Sci., 187(1-2), 171 (2001)
- Pakizeh M, Omidkhah MR, Zarringhalam A, Int. J. Hydrogen Energy., 32, 1825 (2007)
- Tsapatsis M, Gavalas G, J. Membr. Sci., 87(3), 281 (1994)
- Morooka S, Yan S, Kusakabe K, Akiyama Y, J. Membr. Sci., 101(1-2), 89 (1995)
- Gu YF, Oyama ST, J. Membr. Sci., 306(1-2), 216 (2007)
- Khatib SJ, Oyama ST, Sep. Purif. Technol., 111, 20 (2013)
- Gu YF, Hacarlioglu P, Oyama ST, J. Membr. Sci., 310(1-2), 28 (2008)
- Gu YF, Oyama ST, J. Membr. Sci., 345(1-2), 267 (2009)
- Kanezashi M, Asaeda M, J. Membr. Sci., 271(1-2), 86 (2006)
- Boffa V, Blank DHA, Ten Elshof JE, J. Membr. Sci., 319, 56 (2008)
- Yan SC, Maeda H, Kusakabe K, Morooka S, Ind. Eng. Chem. Res., 33(3), 616 (1994)
- Xomeritakis G, Lin YS, J. Membr. Sci., 120(2), 261 (1996)
- Huang L, Chen CS, He ZD, Peng DK, Meng GY, Thin Solid Films, 302(1-2), 98 (1997)
- Jun CS, Lee KH, J. Membr. Sci., 176(1), 121 (2000)
- Yeung KL, Christiansen SC, Varma A, J. Membr. Sci., 159(1-2), 107 (1999)
- Cheng YS, Yeung KL, J. Membr. Sci., 182(1-2), 195 (2001)
- Gade SK, Thoen PM, Way JD, J. Membr. Sci., 316(1-2), 112 (2008)
- Uemiya S, Matsuda T, Kikuchi E, J. Membr. Sci., 56, 315 (1991)
- Tong J, Su LL, Kashima Y, Shirai R, Suda H, Matsumura Y, Ind. Eng. Chem. Res., 45(2), 648 (2006)
- Peters TA, Tucho WM, Ramachandran A, Stange M, Walmsley JC, Holmestad R, Borg A, Bredesen R, J. Membr. Sci., 326(2), 572 (2009)
- Nam SE, Lee KH, J. Membr. Sci., 192(1-2), 177 (2001)
- Roa F, Way JD, McCormick RL, Paglieri SN, Chem. Eng. J., 93(1), 11 (2003)
- Kulprathipanja A, Alptekin GO, Falconer JL, Way JD, J. Membr. Sci., 254(49) (2005)
- Thoen PM, Roa F, Way JD, Desalination, 193(1-3), 224 (2006)
- O'Brien CP, Howard BH, Miller JB, Morreale BD, Gellman AJ, J. Membr. Sci., 349(1-2), 380 (2010)
- Gade SK, Payzant EA, Park HJ, Thoen PM, Way JD, J. Membr. Sci., 340(1-2), 227 (2009)
- Chen CH, Ma YH, J. Membr. Sci., 362(1-2), 535 (2010)
- Shi L, Goldbach A, Zeng G, Xu H, Int. J. Hydrogen Energy., 35, 4201 (2010)
- Gade SK, DeVoss SJ, Coulter KE, Paglieri SN, Alptekin GO, Way JD, J. Membr. Sci., 378(1-2), 35 (2011)
- Gade SK, Keeling MK, Davidson AP, Hatlevik O, Way JD, Int. J. Hydrogen Energy., 34, 6484 (2009)
- Ryi SK, Li A, Lim CJ, Grace JR, Int. J. Hydrogen Energy., 36, 9335 (2011)
- Lee D, Hacarlioglu P, Oyama ST, Top. Catal., 29, 45 (2004)
- Tsuru T, Yamaguchi K, Yoshioka T, Asaeda M, AIChE J., 50(11), 2794 (2004)
- Tong JH, Matsumura Y, Appl. Catal. A: Gen., 286(2), 226 (2005)
- Hacarlioglu P, Gu Y, Oyama ST, J. Nat. Gas Chem., 15, 73 (2006)
- Kikuchi E, Kawabe S, Matsukata M, J. Jpn. Petro. Inst., 46, 93 (2003)
- Tosti S, Basile A, Borgognoni F, Capaldo V, Cordiner S, Di Cave S, Gallucci F, Rizzello C, Santucci A, Traversa E, J. Membr. Sci., 308(1-2), 250 (2008)
- Tosti S, Basile A, Borgognoni F, Capaldo V, Cordiner S, Di Cave S, Gallucci F, Rizzello C, Santucci A, Traversa E, J. Membr. Sci., 308(1-2), 258 (2008)
- Yu CY, Lee DW, Park SJ, Lee KY, Lee KH, Appl. Catal. B: Environ., 86(3-4), 121 (2009)
- Lopez E, Divins NJ, Llorca J, Catal. Today, 193(1), 145 (2012)
- Lim H, Gu Y, Oyama ST, J. Membr. Sci., 396, 119 (2012)
- Oyama ST, Lim H, Chem. Eng. J., 151(1-3), 351 (2009)