22. Ochońska J, McClymont D, Jodłowski PJ, Knapik A, Gil B, Makowsk A, Łasocha W,
Kołodziej A, Kolaczkowski ST, Łojewska J (2012) Copper exchanged ultrastable zeolite Y
—a catalyst for NH 3 -SCR of NO x from stationary biogas engines. Catal Today 191:6–11
23. Lavalley JC (1996) Infrared spectrometric studies of the surface basicity of metal oxides and
zeolites using adsorbed probe molecules. Catal Today 27:377–401
24. Kryca J, Jodłowski PJ, Iwaniszyn M, Gil B, Sitarz M, Kolodziej A, Lojewska T, Lojewska J
(2016) Cu SSZ-13 zeolite catalyst on metallic foam support for SCR of NO x with ammonia:
catalyst layering and characterisation of active sites. Catal Today 268:142–149
25. Góra-Marek K, Gil B, Datka J (2009) Quantitative IR studies of the concentration of
Co2 + and Co
3+ sites in zeolites CoZSM-5 and CoFER. Appl Catal A Gen 353:117–122
26. Góra-Marek K, Gil B, Śliwa M, Datka J (2007) An IR spectroscopy study of Co sites in
zeolites CoZSM-5. Appl Catal A Gen 330:33–42
27. Ciuparu D, Bensalem A, Pfefferle L (2000) Pd–Ce interactions and adsorption properties of
palladium: CO and NO TPD studies over Pd–Ce/Al 2 O 3 catalysts. Appl Catal B Environ
26:241–255
28. Chin SY, Williams CT, Amiridis MD (2006) In situ FT-IR studies of CO adsorption on fresh
Mo 2 C/Al 2 O 3 catalyst. J Phys Chem B 82:871–882
29. Feio LSF, Hori CE, Damyanova S, Noronha FB, Cassinelli WH, Marques CMP,
Bueno JMC (2007) The effect of ceria content on the properties of Pd/CeO 2 /Al 2 O 3 catalysts
for steam reforming of methane. Appl Catal A Gen 316:107–116
30. Hadjiivanov K, Knözinger H (2000) FTIR study of low-temperature CO adsorption on
Cu-ZSM-5: Evidence of the formation of Cu
2+ (CO) 2 species. J Catal 191:480–485
31. Datka J, Kozyra P (2005) TPD–IR studies of CO desorption from zeolites CuY and CuX.
J Mol Struct 744–747:991–996
32. Rejmak P, Broclawik E (2008) Nitrogen monoxide interaction with Cu (I)sites in zeolites X
and Y: quantum chemical calculations and IR studies. J Phys Chem C 112:17998–18010
33. Farneth WE, Staley RH, Sleight AW (1986) Stoichiometry and structural effects in alcohol
chemisorption/temperature-programmed desorption on MoO 3 . J Am Chem Soc 108:2327–
2332
34. Benaissa M, Travert J, Lavalley J (1985) Microcalorimetric and Fourier Transform infrared
spectroscopic studies of methanol adsorption on Al 2 O 3 . J Phys Chem 89:5433–5439
35. Busca G, Forzatti P, Lavalley JC, Tronconi E (1985) A TPD, FT-IR and catalytic study of
the interaction of methanol with pure and KOH doped TiO 2 anatase. Stud Surf Sci Catal
20:15–24
36. Rossi PF, Busca G, Lorenzelli V, Saur O, Lavalley JC (1987) Microcalorimetric and FT-IR
spectroscopic study of the adsorption of isopropyl alcohol and hexafluoroisopropyl alcohol
on titanium dioxide. Langmuir 3:52–58
37. Badlani M, Wachs IE (2001) Methanol: a “smart” chemical probe molecule. Catal Lett
75:137–149
38. Mao C-F, Vannice MA (1995) Formaldehyde oxidation over Ag catalysts. J Catal 154:230–244
39. Busca G (1999) The surface acidity of solid oxides and its characterization by IR
spectroscopic methods. An attempt at systematization. Phys Chem Chem Phys 1:723–736
40. Vorob’eva MP, Greish AA, Ivanov AV, Kustov LM (2000) Preparation of catalyst carriers
on the basis of alumina supported on metallic gauzes. Appl Catal A Gen 199:257–261
41. Jacobs G, Williams L, Graham U, Thomas GA, Sparks DE, Davis B (2003) Low
temperature water-gas shift: in situ DRIFTS-reaction study of ceria surface area on the
evolution of formates on Pt/CeO 2 fuel processing catalysts for fuel cell applications. Appl
Catal A Gen 252:107–118
42. Armaroli T, Minoux D, Gautier Euzen P (2003) A DRIFTS study of Mo/alumina interaction:
from Mo/boehmite solution to Mo/cAl 2 O 3 support. Appl Catal A Gen 251:241–253
43. Liu X (2008) DRIFTS study of surface of c -alumina and Its dehydroxylation. J Phys
Chem C 112:5066–5073
11 In Situ and Operando Techniques in Catalyst Characterisation …
355
Kołodziej A, Kolaczkowski ST, Łojewska J (2012) Copper exchanged ultrastable zeolite Y
—a catalyst for NH 3 -SCR of NO x from stationary biogas engines. Catal Today 191:6–11
23. Lavalley JC (1996) Infrared spectrometric studies of the surface basicity of metal oxides and
zeolites using adsorbed probe molecules. Catal Today 27:377–401
24. Kryca J, Jodłowski PJ, Iwaniszyn M, Gil B, Sitarz M, Kolodziej A, Lojewska T, Lojewska J
(2016) Cu SSZ-13 zeolite catalyst on metallic foam support for SCR of NO x with ammonia:
catalyst layering and characterisation of active sites. Catal Today 268:142–149
25. Góra-Marek K, Gil B, Datka J (2009) Quantitative IR studies of the concentration of
Co2 + and Co
3+ sites in zeolites CoZSM-5 and CoFER. Appl Catal A Gen 353:117–122
26. Góra-Marek K, Gil B, Śliwa M, Datka J (2007) An IR spectroscopy study of Co sites in
zeolites CoZSM-5. Appl Catal A Gen 330:33–42
27. Ciuparu D, Bensalem A, Pfefferle L (2000) Pd–Ce interactions and adsorption properties of
palladium: CO and NO TPD studies over Pd–Ce/Al 2 O 3 catalysts. Appl Catal B Environ
26:241–255
28. Chin SY, Williams CT, Amiridis MD (2006) In situ FT-IR studies of CO adsorption on fresh
Mo 2 C/Al 2 O 3 catalyst. J Phys Chem B 82:871–882
29. Feio LSF, Hori CE, Damyanova S, Noronha FB, Cassinelli WH, Marques CMP,
Bueno JMC (2007) The effect of ceria content on the properties of Pd/CeO 2 /Al 2 O 3 catalysts
for steam reforming of methane. Appl Catal A Gen 316:107–116
30. Hadjiivanov K, Knözinger H (2000) FTIR study of low-temperature CO adsorption on
Cu-ZSM-5: Evidence of the formation of Cu
2+ (CO) 2 species. J Catal 191:480–485
31. Datka J, Kozyra P (2005) TPD–IR studies of CO desorption from zeolites CuY and CuX.
J Mol Struct 744–747:991–996
32. Rejmak P, Broclawik E (2008) Nitrogen monoxide interaction with Cu (I)sites in zeolites X
and Y: quantum chemical calculations and IR studies. J Phys Chem C 112:17998–18010
33. Farneth WE, Staley RH, Sleight AW (1986) Stoichiometry and structural effects in alcohol
chemisorption/temperature-programmed desorption on MoO 3 . J Am Chem Soc 108:2327–
2332
34. Benaissa M, Travert J, Lavalley J (1985) Microcalorimetric and Fourier Transform infrared
spectroscopic studies of methanol adsorption on Al 2 O 3 . J Phys Chem 89:5433–5439
35. Busca G, Forzatti P, Lavalley JC, Tronconi E (1985) A TPD, FT-IR and catalytic study of
the interaction of methanol with pure and KOH doped TiO 2 anatase. Stud Surf Sci Catal
20:15–24
36. Rossi PF, Busca G, Lorenzelli V, Saur O, Lavalley JC (1987) Microcalorimetric and FT-IR
spectroscopic study of the adsorption of isopropyl alcohol and hexafluoroisopropyl alcohol
on titanium dioxide. Langmuir 3:52–58
37. Badlani M, Wachs IE (2001) Methanol: a “smart” chemical probe molecule. Catal Lett
75:137–149
38. Mao C-F, Vannice MA (1995) Formaldehyde oxidation over Ag catalysts. J Catal 154:230–244
39. Busca G (1999) The surface acidity of solid oxides and its characterization by IR
spectroscopic methods. An attempt at systematization. Phys Chem Chem Phys 1:723–736
40. Vorob’eva MP, Greish AA, Ivanov AV, Kustov LM (2000) Preparation of catalyst carriers
on the basis of alumina supported on metallic gauzes. Appl Catal A Gen 199:257–261
41. Jacobs G, Williams L, Graham U, Thomas GA, Sparks DE, Davis B (2003) Low
temperature water-gas shift: in situ DRIFTS-reaction study of ceria surface area on the
evolution of formates on Pt/CeO 2 fuel processing catalysts for fuel cell applications. Appl
Catal A Gen 252:107–118
42. Armaroli T, Minoux D, Gautier Euzen P (2003) A DRIFTS study of Mo/alumina interaction:
from Mo/boehmite solution to Mo/cAl 2 O 3 support. Appl Catal A Gen 251:241–253
43. Liu X (2008) DRIFTS study of surface of c -alumina and Its dehydroxylation. J Phys
Chem C 112:5066–5073
11 In Situ and Operando Techniques in Catalyst Characterisation …
355
