Review of proton conductors for hydrogen separation

Ionics - Tập 12 Số 2 - Trang 103-115 - 2006
John W. Phair1, S. P. S. Badwal1
1CSIRO Manufacturing and Infrastructure Technology, Clayton, Australia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Campbell CJ (2002, revised) World: oil and gas industry–peak oil: an outlook on crude oil depletion. http://www.mbendi.com/indy/oilg/p0070.htm

Campbell CJ, Leherrere JH (1998) Sci Am, pp 78–83. Available in http://www.dieoff.org/page140.htm

Duncan RC, Youngquist W. “The world petroleum life cycle”. Paper presented at PTTC workshop on “OPEC oil pricing and independent oil producers”, Petroleum Technology Transfer Council, October 1998, http://www.dieoff.com/page133.pdf

International Atomic Energy Agency (1999) Hydrogen as an energy carrier and its production by nuclear power. Report IAEA TECDOC-1085, 1999. Available at http://www-pub.iaea.org/MTCD/publications/PDF/te_1085_prn.pdf

US DOE (2004) Energy efficiency and renewable energy, hydrogen fuel cell and infrastructure technologies program, multi-year research, development and demonstration plan: planned program activities for 2003–2010, technical plan—hydrogen production http://www.eere.energy.gov/hydrogenandfuelcells/mypp/pdfs/production.pdf

US DOE (2005) Hydrogen, fuel cells and infrastructure technologies program review proceedings 2004 and 2005. Available at http://www.eere.energy.gov/hydrogenandfuelcells/2004_annual_review.html; http://www.hydrogen.energy.gov/annual_review05_proceedings.html

McHugh K (2005) “Hydrogen production methods”, MPR-WP-0001, MPR Associates, Alexandria, Virginia, USA

Muradov NZ, Veziroglu TN (2005) Int J Hydrogen Energy 30:225–237

Collot A-G (2003) Prospects for hydrogen from coal. In: IEA clean coal centre reference, CCC/78, ISBN: 92-9029-393-4, pp 76

Bolland O, Undrum H (2003) Adv Environ Res 7:901–911

Benson S (2000) Ceramics for advanced power generation, IEA clean coal centre reference, CCC/37, ISBN: 92-9029-349-7, p 64

Song SJ, Wachsman EDJ, Rhodes SE, Dorris U, Balachandran (2004) Solid State Ion 167:99–105

Schwartz M, Berland BS, Gade SK, Schaller RW (2003) Abstr Pap Am Chem Soc 225:U864

Hamakawa S, Li L, Li A, Iglesia E (2002) Solid State Ion 148:71–81

Kosacki I, Anderson HU (1997) Solid State Ion 97:429–436

Teraoka Y, Fukuda T, Miura N, Yamazoe N (1989) Nippon Seramikkusu Kyokai Gakujutsu Ronbunshi. J Ceram Soc Jpn 97:533–538

Miura N, Okamoto Y, Tamaki J, Morinaga K, Yamazoe N (1995) Solid State Ion 79:195–200

Eschenbaum J, Rosenberger J, Hempelmann R, Nagengast D, Weidinger A (1995) Solid State Ion 77:222–225

Pal UB, Singhal SC (1990) J Electrochem Soc 137:2937–2941

Pal UB (1992) Solid State Ion 52:227–233

Verweij H (2003) J Mater Sci 38:4677–4695

Xia CR, Liu ML (2001) J Am Ceram Soc 84:1903–1905

Song SJ, Lee TH, Wachsman ED, Chen L, Dorris SE, Balachandran U (2005) J Electrochem Soc 152:J125–J129

Li GT, Xiong GX, Shao ZP, Sheng SS, Yang WS (2001) Chinese Journal of Catalysis 22:5–6

Linkov V (2001) Membr Technol 2001:4–8

Zhu B, Mellander BE (1995) Solid State Ion 77:244–249

Kreuer KD (1997) Solid State Ion 97:1–15

Haile SM, Staneff G, Ryu KH (2001) J Mater Sci 36:1149–1160

Savaniu CD, Canales-Vazquez J, Irvine JTS (2005) J Mater Chem 15:598–604

White JH, Schwartz M, Sammells AF (2001) U.S. Patent 6,281,403 B1

Simner SP, Stevenson JW (2001) J Power Sources 102:310–316

Weil KS, Hardy JS, Rice JP, Kim JY (2006) Fuel 85:156–162

Kreuer KD (1996) Chem Mater 8:610–641

Mio UB, Milonji SK, Malovi D, Stamenkovi V, Colomban P, Mitrovi MM, Dimitrijevi R (1997) Solid State Ion 97:239–246

Lakshmi N, Chandra S (2001) Phys Status Solidi, A Appl Res 186:383–399

Pandey K, Lakshmi N, Chandra S (1999) Indian J Pure Appl Phys 37:242–244

Slade RCT, Barker J, Strange JH (1989) Solid State Ion 35:11–15

Glipa X, El Haddad M, Jones DJ, Roziere J (1997) Solid State Ion 97:323–331

Alberti G, Casciola M, Massinelli L, Bauer B (2001) J Membr Sci 185:73–81

Chen TY, Leddy J (2000) Langmuir 16:2866–2871

Hickner MA, Ghassemi H, Kim YS, Einsla BR, McGrath JE (2004) Chem Rev 104:4587–4611

Antonucci PL, Arico AS, Creti P, Ramunni E, Antonucci V (1999) Solid State Ion 125:431–437

Casciola M, Costantino U, Dicroce L, Marmottini F (1988) J Incl Phenom 6:291–306

Casciola M, Chieli S, Costantino U, Peraio A (1991) Solid State Ion 46:53–59

Casciola M, Costantino U, Calevi A (1993) Solid State Ion 61:245–250

Casciola M, Alberti G, Donnadio A, Pica M, Marmottini F, Bottino A, Piaggio P (2005) J Mater Chem 15:4262–4267

Miura N, Yamazoe N (1992) Solid State Ion 53-6:975–982

Li YM, Hibino M, Miyayama M, Kudo T (2001) Electrochemistry 69:2–5

Zhuiykov S (1996) Int J Hydrogen Energy 21:749–759

Haile SM, Boysen DA, Chisholm CRI, Merle RB (2001) Nature 410:910–913

Zhu B, Mellander B-E (1994) Solid State Ion 70–71:285–290

Zhu B, Lai ZH, Mellander B-E (1994) Solid State Ion 70–71:125–129

Uma T, Tu HY, Warth S, Schneider D, Freude D, Stimming U (2005) J Mater Sci 40:2059–2063

Matsui T, Takeshita S, Iriyama Y, Abe T, Ogumi Z (2005) J Electrochem Soc 152:A167–A170

Uvarov NF, Vanek P, Yuzyuk Y, Zelezny V, Studnicka V, Bokhonov BB, Dulepov VE, Petzelt J (1996) Solid State Ion 90:201–207

Haufe S, Prochnow D, Schneider D, Geier O, Freude D, Stimming U (2005) Solid State Ion 176:955–963

Lavrova GV, Ponomareva VG, Uvarov NF (2000) Solid State Ion 136:1285–1289

Ponomareva VG, Uvarov NF, Lavrova GV, Hairetdinov EF (1996) Solid State Ion 90:161–166

Uvarov NF, Bokhonov BB, Isupov VP, Hairetdinov EF (1994) Solid State Ion 74:15–27

Ponomareva VG, Lavrova GV (1998) Solid State Ion 106:137–141

Rodriguez D, Jegat C, Trinquet O, Grondin J, Lassegues JC (1993) Solid State Ion 61:195–202

Lassegues JC, Grondin J, Hernandez M, Maree B (2001) Solid State Ion 145:37–45

Iwahara H (1999) Solid State Ion 125:271–278

Iwahara H (1996) Solid State Ion 86–88:9–15

Liang KC, Du Y, Nowick AS (1994) Solid State Ion 69:117–120

Nowick AS, Du Y, Liang KC (1999) Solid State Ion 125:303–311

Park HB, Huh H, Kim SJ (1992) Bull Korean Chem Soc 13:122–127

Tao SW, Irvine JTS (2002) Solid State Ion 154:659–667

Bhide SV, Virkar AV (1999) J Electrochem Soc 146:4386–4392

Bhide SV, Virkar AV (1999) J Electrochem Soc 146:2038–2044

Gopalan S (2002) JOM (Journal of The Minerals, Metals & Materials Society) 54:26–29

Ryu KH, Haile SM (1999) Solid State Ion 125:355–367

Haile SM, West DL, Campbell J (1998) J Mater Res 13:1576–1595

Kim S, Maier J (2004) J Eur Ceram Soc 24:1919–1923

Guo X, Sigle W, Maier J (2003) J Am Ceram Soc 86:77–87

Browning D, Weston M, Lakeman JB, Jones P, Cherry M, Irvine JTS, Corcoran DJD (2002) J New Mater Electrochem Syst 5:25–30

Labrincha JA, Frade JR, Marques FMB (1997) Solid State Ion 99:33–40

Yamamura H, Nishino H, Kakinuma K (2004) J Ceram Soc Jpn 112:553–558

Speakman SA, Carneim RD, Payzant EA, Armstrong TR (2004) J Mater Eng Perform 13:303–308

Kramer S, Spears M, Tuller HL (1994) Solid State Ion 72:59–66

Subramanian MA, Aravamudan G, Subba Rao GV (1983) Prog Solid State Chem 15:55–143

Keskar NR, Prasad R, Gottzman CF (2000) U.S. Patent 6,066,307

Elangovan S, Nair BG, Small TA (2005) U.S. Patent 2005/0194571 A1

Sotani N, Manago T, Suzuki T, Eda K (2001) J Solid State Chem 159:87–93

Kuhn A, Bashir H, Dos Santos AL, Acosta JL, Garcia-Alvarado F (2004) J Solid State Chem 177:2366–2372

Fisher CAJ, Islam MS (1999) Solid State Ion 118:355–363

Nigara Y, Mizusaki J, Kawamura K, Kawada T, Ishigame M (1998) Solid State Ion 115:347–354

Nigara Y, Kawamura K, Kawada T, Mizusaki J, Ishigame M (1999) J Electrochem Soc 146:2948–2953

Nigara Y, Kawamura K, Kawada T, Mizusaki J (2000) Solid State Ion 136:215–221

Yamashita K, Owada H, Umegaki T, Kanazawa T, Katayama K (1990) Solid State Ion 40-41:918–921

Zhu B (2003) J Power Sources 114:1–9

Doshi R, Richards VL, Carter JD, Wang X, Krumpelt M (1999) J Electrochem Soc 146:1273–1278

Karthikeyan A, Martindale CA, Martin SW (2004) Solid State Ion 175:655–659

Edlund DJ (1992) U.S. Patent 5,139,541

Wachsman ED, Song SD, Rhodes J (2003) Abtracts of Papers of the American Chemical Society 225:U864

Matsumoto H, Shimura T, Higuchi O, Tanaka H, Katahira K, Otake T, Kudo T, Yashiro K, Kaimai A, Kawada T, Mizusaki J (2005) J Electrochem Soc 152:A488–A492

Wachsman ED, Jiang N (2001) U.S. Patent 6,235,417 B1

Zuo CD, Lee TH, Song SJ, Chen L, Dorris SE, Balachandran U, Liu ML (2005) Electrochem Solid State Lett 8:J35–J37

Cui HD, Karthikeyan A, Gopalan S, Pal UB (2005) J Electrochem Soc 152:A1726–A1732

Wu Z, Liu M (1996) Solid State Ion 93:65–84

Zhang G, Dorris SE, Balachandran U, Liu ML (2003) Solid State Ion 159:121–134

Zhang G, Dorris S, Balachandran U, Liu M (2002) Electrochem Solid State Lett 5:J5–J7

Rostrup-Nielsen T (2005) Catal Today 106:293–296

Rostrup-Nielsen JR (2005) Science 308:1421–1422

Ruth LA (2003) Mater High Temp 20:7–14

Balachandran U, Lee TH, Chen L, Song SJ, Picciolo JJ, Dorris SE (2006) Fuel 85:150–155

Balachandran UB, Lee TH, Wang S, Picciolo JJ, Dusek JT, Dorris SE (2003) Abstr Pap Am Chem Soc 225:U864

Rostrup-Nielsen JR, Rostrup-Nielsen T (2002) CaTTech 6:150–159

Liu ZW, Jun KW, Roh HS, Park SE (2002) J Power Sources 111:283–287

Sogge J, Strom T (1997) Natural Gas Conversion Iv 107:561–566

Lin YM, Rei MH (2001) Catal Today 67:77–84

Pasel J, Samsun RC, Schmitt D, Peters R, Stolten D (2005) J Power Sources 152:189–195

Newsome DS (1980) Catal Rev Sci Eng 21:275–318

Basile F, Fornasari G, Rostrup-Nielsen JR, Vaccari A (2001) Catal Today 64:1–2

Kodama T (2003) Pror Energy Combust Sci 29:567–597

Alstrup I, Clausen BS, Olsen C, Smits RHH, Rostrup-Nielsen JR (1998) Nat Gas Convers V 119:5–14

Segal SR, Anderson KB, Carrado KA, Marshall CL (2001) Abstr Pap Am Chem Soc 222:U476

Kikuchi E (2000) Catal Today 56:97–101

Iwahara H, Asakura Y, Katahira K, Tanaka M (2004) Solid State Ion 168:299–310

U.S. Department of Energy, Small Business Innovation Research Program and Small Business Technology Transfer Program, FY 2005 Solicitations, Technical Topic Descriptions, Office of Fossil Energy, 15. Materials research http://www.science.doe.gov/sbir/solicitations/fy%202005/15_FE3.htm

U.S. Department of Energy (2005) Hydrogen from Coal Program, Office of Fossil Energy, U.S. Department of Energy. Washington, District of Columbia, Jun 10, 2005

Nakamura O, Ogino I, Kodama T (1981) Solid State Ion 3–4:347–351

Kreuer KD (1988) J Mol Struct 177:265–276

Howe AT, Shilton MG (1979) J Solid State Chem 28:345–361

Alberti G, Bracardi M, Casciola M (1982) Solid State Ionics 7:243–247

Alberti G, Casciola M, Costantino U, Peraio A, Rega T (1995) J Mater Chem 5:1809–1812

Alberti G, Casciola M (1997) Solid State Ion 97:177–186

Alberti G, Boccali L, Casciola M, Massinelli L, Montoneri E (1996) Solid State Ion 84:97–104

England WA, Cross MG, Hamnett A, Wiseman PJ, Goodenough JB (1980) Solid State Ion 1:231–249

Tarnopolsky VA, Stenina IA, Yaroslavtsev AB (2001) Solid State Ion 145:261–264

Amezawa K, Tomii Y, Yamamoto N (2004) Solid State Ionics 175:569–573

Amezawa K, Kitajima Y, Tomii Y, Yamamoto N (2004) Electrochem Solid State Lett 7:A511–A514

Amezawa K, Tomii Y, Yamamoto N (2005) Solid State Ion 176:135–141

Kitamura N, Amezawa K, Tomii Y, Yamamoto N (2003) Solid State Ion 162–163:161–165

Katahira K, Kohchi Y, Shimura T, Iwahara H (2000) Solid State Ion 138:91–98

Norby T (1999) Solid State Ion 125:1–11

Chisholm CRI, Haile SM (2001) Solid State Ion 145:179–184

Baranov AI, Shuvalov LA, Shagina NM (1982) JETP Lett 36:459–462

Potier A, Rousselet D (1973) J Chim Phys 70:873–878

Ponomareva VG, Lavrova GV, Simonova LG (2000) Solid State Ion 136–137:1279–1283

Ponomareva VG, Shutova ES, Matvienko AA (2004) Inorg Mater 40:721–728

Omata T, Otsuka-Yao-Matsuo S (2001) J Electrochem Soc 148:E252–E261

Karithikeyan A, Martindale C, Martin SW (2004) J Non-Cryst Solids 349:215–222