Impact of Zeolites and other Porous Materials on the New Technologies at the Beginning of the New Millennium: Proceedings of the 2nd International FEZA Conference, Taormina, Italy, September 1-5, 2002
Aiello, R.; Testa, F.; Giordano, G.
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Table of contents
- Cover
- Title Pageiii
- Copyright Pageiv
- CONTENTSxiii
- IMPACT OF ZEOLITES AND OTHER POROUS MATRIALS ON THE NEW TECHNOLOGIES AT THE BEGINNING OF THE NEW MILiii
- PART 1: ZEOLITE SYNTHESIS AND CHARACTERIZATION1
- Chapter 1. Zeolite characterization with spectroscopic methods3
- Chapter 2. Synthesis of alumino, boro, and gallosilicate zeolites by steam-assisted conversion metho15
- Chapter 3. Aluminium distribution in MCM-22. The effect of framework aluminium content and synthesis23
- Chapter 4. Grafting of aluminium on dealuminated H-BEA using alkoxides31
- Chapter 5. Influence of various synthesis parameters on the morphology and crystal size of zeolite Z39
- Chapter 6. In situ dynamic light scattering and synchrotron X-Ray powder diffraction study of the ea45
- Chapter 7. Synthesis of MCM-22 zeolite by the vapor-phase transport method53
- Chapter 8. Defect-flee MEL-type zeolites synthesized in the presence of an azoniaspiro-compound61
- Chapter 9. Chemical and structural aspects of the transformation of MCM-22 precursor into ITQ-269
- Chapter 10. Nanocrystalline ZSM-5: a highly active catalyst for polyolefin feedstock recycling77
- Chapter 11. Modeling superoxide dismutase: immobilizing a Cu-Zn complex in porous matrices and activ85
- Chapter 12. Crystal growth of zeolite Y studied by computer modelling and atomic force microscopy93
- Chapter 13. Interaction of small molecules with transition metal ions in zeolites: the effect of the101
- Chapter 14. Preparation and characterization of mesoporous TS-1 catalyst109
- Chapter 15. Observations of layer growth in synthetic zeolites by field emission scanning electron m117
- Chapter 16. XANES and XPS studies of titanium aluminophosphate molecular sieves125
- Chapter 17. An investigation of the intermediate gel phases of A1PO4-11 synthesis by solid state NMR135
- Chapter 18. The benzene molecule as a probe for steric hindrance at proton sites in zeolites: an IR143
- Chapter 19. Structural characterization of Co- and Si-substituted A1PO-34 synthesized in the presenc151
- Chapter 20. Chemical linking of MFI-type colloidal zeolite crystals159
- Chapter 21. Synthesis and characterization of MCM-22 zeolites for the N2O oxidation of benzene to ph167
- Chapter 22. Novel solid strong base derived from zeolite supported CaO175
- Chapter 23. ZSM-5 spheres prepared by resin templating183
- Chapter 24. Novel Nanocomposite Material191
- Chapter 25. Vibrational and optical spectroscopic studies on copper-exchanged ferrierite199
- Chapter 26. Variable temperature FTIR spectroscopy of carbon monoxide adsorbed on protonic and rubid207
- Chapter 27. Preparation and characterization of Zn-MFI zeolites using short chain alkylamines as min215
- Chapter 28. Crystal growth of nanosized LTA zeolite from precursor colloids223
- Chapter 29. Synthesis of hybrid zeolite disc from layered silicate231
- Chapter 30. Effect of alkali metal ions on synthesis of zeolites and layered compounds by solid-stat239
- Chapter 31. (A1)-ZSM-12: syhnthesis and modification of acid sites247
- Chapter 32. Formation of new microporous silica phase in protonated kanemite-TMAOH- water system255
- Chapter 33. Raman spectroscopic studies of the templated synthesis of zeolites263
- Chapter 34. Preparation, characterization and catalytic activity of non-hydrothermally synthesized s271
- Chapter 35. Self-bonded A1, B-ZSM-5 pellets279
- Chapter 36. Syntheses and characterization of A1, B-LEV type zeolite from systems containing methyl-287
- Chapter 37. Synthesis and ion exchange properties of the ETS-4 and ETS-10 microporous crystalline ti295
- Chapter 38. Quasiisothermal degradation kinetics of tetrapropylammonium cations in silicalite-1 matr303
- Chapter 39. Cationic silver clusters in zeolite rho and sodalite311
- Chapter 40. The first example of a small-pore framework hafnium silicate319
- Chapter 41. Synthesis, characterization and catalytic activity of vanadium-containing ETS-10327
- Chapter 42. Infrared evidence for the reversible protonation of acetonitrile at high temperature in335
- Chapter 43. Spectroscopic and catalytic studies on Cu-MCM-22: effect of copper loading343
- Chapter 44. Preparation and properties of MFI zincosilicate351
- Chapter 45. Influence of Cs loading and carbonates on TPR profiles of PtCsBEA359
- Chapter 46. New evidences for the fluoride contribution in synthesis of gallium phosphates367
- Chapter 47. High-field ESR spectroscopy of Cu(I)-NO complexes in zeolite CuZSM-5375
- Chapter 48. Characterization of acid sites in dehydrated H-Beta zeolite by solid state NMR383
- Chapter 49. Characterization and quantification of aluminum species in zeolites using high-resolutio391
- Chapter 50. Control of AFI type crystal synthesis with additional gel components399
- Chapter 51. Synthesis and characterization of mordenite (MOR) zeolite derived from a layered silicat407
- Chapter 52. Hydrothermal synthesis and characterization of new phosphate-based materials prepared in415
- Chapter 53. Modeling of crystal growth at early stages of analcime synthesis from clear solutions423
- Chapter 54. Synthesis of zincosilicate molecular sieve VPI-7 using vapor phase transport431
- Chapter 55. Combined IR and catalytic studies of the role of Lewis acid sites in creating acid sites439
- Chapter 56. Heterogeneity of Cu + in CuZSM-5, TPD-IR studies of CO desorption445
- Chapter 57. Speciation and structure of cobalt carbonyl and nitrosyl adducts in ZSM-5 zeolite invest453
- Chapter 58. Spectroscopic and catalytic behaviour of [(-CsHs)Rh(TI4-1,5-CsH12)] in Mt56Y and Hs6Y (M461
- Chapter 58. Spectroscopic and catalytic behaviour of [(η5-C5H5)Rh(η4-1,5-C8H12)] in M'56Y and H56Y461
- Chapter 59. Improved synthesis procedure for Fe-BEA zeolite469
- Chapter 60. One-step benzene oxidation to phenol. Part I: preparation and characterization of Fe-(A1477
- PART 2: CATALYSIS485
- Chapter 61. From micro to mesoporous molecular sieves: adapting composition and structure for cataly487
- Chapter 62. One step benzene oxidation to phenol. Part II: catalytic behavior of Fe-(A1)MFI zeolites503
- Chapter 63. Synthesis, structure, and reactivity of iron-sulfur species in zeolite ZSM-5511
- Chapter 64. Characterization of FeMCM-41 and FeZSM-5 catalysts to styrene production517
- Chapter 65. Fischer-Tropsch synthesis. Influence of the presence of intermediate iron reduction spec525
- Chapter 66. On the necessity of a basic revision of the redox properties of H-Zeolites533
- Chapter 67. The role of zeotype catalyst support in the synthesis of carbon nanotubes by CCVD541
- Chapter 68. The influence of water on the activity of nitridated zeolites in base-catalyzed reaction549
- Chapter 69. Selective catalytic reduction of N2O with light alkanes and N2O decomposition over Fe-BE557
- Chapter 70. Hydroxymethylation of 2-methoxyphenol catalyzed by H-mordenite: analysis of the reaction565
- Chapter 71. Unraveling the nature and location of the active sites for butene skeletal isomerization573
- Chapter 72. Hydroconversion of aromatics over a Pt-Pd/USY catalyst581
- Chapter 73. Hydrodearomatization, hydrodesulfurization and hydrodenitrogenation of gas oils in one s587
- Chapter 74. Reformate upgrading to produce enriched BTX using noble metal promoted zeolite catalyst595
- Chapter 75. Dehydroisomerization of n-butane to isobutene over Pd/SAPO-11. The effect of Si content603
- Chapter 76. Vapor phase propylene epoxidation over Au/Ti-MCM-41 catalyst: influence of Ti grafting611
- Chapter 77. Intrinsic activity of titanium sites in TS-1 and Al-free Ti-Beta619
- Chapter 78. The effect of zeolite pore size and channel dimensionality on the selective acylation of627
- Chapter 79. Alkylation of phenol with methanol over zeolite H-MCM-22 for the formation of p-cresol635
- Chapter 80. Relative stability of alkoxides and carbocations in zeolites. QM/MM embedding and QM cal643
- Chapter 81. H-Beta zeolite for acylation processes: optimization of the catalyst properties and reac651
- Chapter 82. Aniline methylation on modified zeolites with acidic, basic and redox properties659
- Chapter 83. Aldol condensation catalyzed by acidic zeolites667
- Chapter 84. Role of intracrystalline tunnels of sepiolite for catalytic activity675
- Chapter 85. Catalytic wet oxidation of reactive dyes with H2O2 over mixed (A1-Cu) pillared clays683
- Chapter 86. Application of zeolites as supports for catalysts of the ethylene and propylene polymeri691
- Chapter 87. Catalytic properties of beta zeolite exchanged with Pd and Fe for toluene total oxidatio699
- Chapter 88. Hydroisomerization of n-Butane over Pd/HZSM-5 and Pd/Hmordenite with and without binder707
- Chapter 89. Butane isomerization on several H-zeolite catalysts715
- Chapter 90. Metal loaded Ti-pillared clays for selective catalytic reduction of NO by propylene723
- Chapter 91. Influence of cocations on the activity of Co-MOR for NO/N2O SCR by propene731
- Chapter 92. Catalytic performance of mesoporous silica SBA-15-supported noble metals for thiopene hy739
- Chapter 93. Skeletal isomerization of 1-hexene to isohexenes over zeolite catalysts747
- Chapter 94. Preparation and catalytic characterisation of Al-grafted MCM-48 materials755
- Chapter 95. Photoreduction of incorporated molecules in zeolite X: methylviologen763
- Chapter 96. Effective utilization of residual type feedstock to middle distillates by hydrocracking771
- Chapter 97. Direct analysis of deactivated catalysts in 1-pentene isomerization by high-resolution f781
- Chapter 98. Selection of an active zeolite catalyst and kinetics of vapor phase esterification of ac787
- Chapter 99. Hydrodesulfurization of dibenzothiophene over Mo-based catalysts supported by siliceous795
- Chapter 100. Acylation of 2-methoxynaphtalene over ion-exchanged β-Zeolite799
- Chapter 101. Development of new ZSM-5 catalyst-additives in the fluid catalytic cracking process for807
- Chapter 102. Characterization of H and Cu mordenites with varying SiO2/Al2O3 ratios, by optical spec815
- Chapter 103. A comparison of SAPO, GaPSO, MgAPO and GaPO's as DeNOx catalysts823
- Chapter 104. The influence of textural properties of MFI type catalysts on deactivation phenomena du831
- Chapter 105. Dehydrogenation of propane over various chromium-modified MFI-type zeolite catalysts839
- Chapter 106. Effect of Pd addition on the catalytic performance of H-ZSM-5 zeolite in chlorinated VO847
- Chapter 107. Influence of the amount and the type of Zn species in ZSM-5 on the aromatisation of n-h855
- Chapter 108. Simultaneous desulfurization and isomerization of sulfur containing n-pentane fractions863
- Chapter 109. Propylene polymerization using various metal-containing MCM-41 as cocatalyst871
- Chapter 110. Oxidation of cyclohexene catalyzed by manganese(III) complexes encapsulated in two fauj879
- Chapter 111. Heavy aromatics upgrading using noble metal promoted zeolite catalyst887
- Chapter 112. Preparation of iron-doped titania-pillared clays and their application to selective cat895
- Chapter 113. Sulfated Zr-pillared saponite: preparation, properties and thermal stability903
- Chapter 114. Isomerization and hydrocracking of n-decane over Pt-Pd/A1MCM-41 catalysts911
- Chapter 115. Influence of nickel metal distribution in Ni/Y-zeolite on the reactivity toward CO hydr919
- Chapter 116. Hydrodechlorination of chlorinated compounds on different zeolites927
- Chapter 117. Ammoxidation of ethylene into acetonitrile over Co-zeolites catalysts935
- Chapter 118. Physicochemical characterization of vanadium-containing K10 epoxidation catalyst943
- Chapter 119. Conversion of aromatic hydrocarbons over MCM-22 and MCM-36 catalysts951
- Chapter 120. H2-D2 exchange and migration of Ga in H-ZSM5 and H-MOR zeolites959
- Chapter 121. Catalytic conversion of trichloroethylene over HY-zeolite967
- Chapter 122. FT-IR studies of internal, external and extraframework sites of FER, MFI, BEA and MOR t975
- Chapter 123. NO reduction with isobutane on Fe/ZSM-5 catalysts prepared by different procedures983
- Chapter 124. Catalytic and infrared spectroscopic study of NO+CO reaction over iron-containing pilla991
- IMPACT OF ZEOLITES AND OTHER POROUS MATERIALS ON THE NEW TECHNOLOGIES AT THE BEGINNING OF THE NEW MIB
- Chapter 124. A study on alkylation of naphtalene with long chain olefins over zeolite catalyst999
- Chapter 125. Synthesis of anthraquinone from Phthalic Anhydride with Benzene over Zeolite Catalyst1007
- Chapter 126. Simultaneous hydrogenation and ring opening of aromatics for diesel upgrading on Pt/zeo1015
- Chapter 127. Catalytic combustion of chlorobenzene over Pt/zeolite catalysts1023
- Chapter 128. Ag and Co exchanged ferrierite in lean NOx abatement with CH41031
- Chapter 129. The effect of sulfate ion on the synthesis and stability of mesoporous materials1039
- Chapter 130. Catalytic behavior of Cd-clinoptilolite prepared by introduction of cadmium metal onto1047
- PART 3: MESOPOROUS MOLECULAR SIEVES1055
- Chapter 131. Confinement at nanometer scale: why and how?1057
- Chapter 132. Anchorage of dye molecules and organic moieties to the inner surface of Si-MCM-411067
- Chapter 133. Mesocellular aluminosilicate foams (MSU-S/F) and large pore hexagonal mesostructures (M1075
- Chapter 134. Fabrication of large secondary mesopores in MCM-41 particles assisted by aminoacids and1083
- Chapter 135. Hexagonal and cubic thermally stable mesoporous Tin(IV) phosphates with acidic, basic,1091
- Chapter 136. Characterization of [Cu]-MCM-41 by XPS and CO or NO adsorption heat measurements1101
- Chapter 137. Synthesis and characterisation of iron-containing SBA-15 mesoporous silica1109
- Chapter 138. Synthesis and characterization of mesoscopically ordered surfactant/co-surfactant templ1117
- Chapter 139. Preparation of novel organic-inorganic hybrid micelle templated silicas. Comparison of1125
- Chapter 140. Structure and catalytic performance of cobalt Fischer Tropsch catalysts supported perio1133
- Chapter 141. Highly dispersed VOx species on mesoporous supports: promising catalysts for the oxidat1141
- Chapter 142. Modelling mesoporous materials1149
- Chapter 143. Acidity and thermal stability of mesoporous aluminosilicates synthesized by cationic su1157
- Chapter 144. Mesoporous silicate as matrix for drug delivery systems of non-steroidal antinflammator1165
- Chapter 145. Aluminum incorporation and interfacial structures in A1SBA-15 mesoporous solids: double1173
- Chapter 146. Tailoring the pore size of hexagonally ordered mesoporous materials containing acid sul1181
- Chapter 147. Novel vesicular mesoporous material templated by catanionic surfactant self-assembly1189
- Chapter 148. Preparation and characterization of Co-Fe-Cu mixed oxides via hydrotalcite-like precurs1197
- Chapter 149. Catalytic oxidation over transition metal doped MCM-48 molecular sieves1205
- Chapter 150. Highly selective oxidation of aromatic hydrocarbons (styrene, benzene and toluene) with1213
- Chapter 151. Mesoporous materials as supports for heteropolyacid based catalysts1221
- Chapter 152. Synthesis and characterization of A1-MCM-48 type materials using coal fly ash1229
- Chapter 153. Synthesis of well-aligned carbon nanotubes on MCM-411237
- Chapter 154. Synthesis and characterization of CuO and Fe2O3 nanoparticles within mesoporous MCM-41/1245
- Chapter 155. Study of the porosity of montmorillonite pillared with aluminum/cerium1253
- Chapter 156. X-ray absorption fine structure investigation of MCM-41 materials containing Pt and PtS1261
- Chapter 157. Ordered assembling of precursors of colloidal faujasite mediated by a cationic surfacta1267
- Chapter 158. Synthesis, characterisation and catalytic activity of SO3H-phenyl-MCM-41 materials1275
- Chapter 159. Synthesis of ordered mesoporous and microporous aluminas: strategies for tailoring text1283
- Chapter 160. Characterization of a heteropolyacid supported on mesoporous silica and its application1291
- Chapter 161. Catalytic activity, deactivation and re-use of A1-MCM-41 for N-methylation of aniline1299
- Chapter 162. Restructured V-MCM-41 with non-leaching vanadium and improved hydrothermal stability pr1307
- Chapter 163. Comparative study of MCM-41 acidity by using the integrated molar extinction coefficien1315
- Chapter 164. Confinement of nematic liquid crystals in SBA mesoporous materials1323
- Chapter 165. Synthesis and characterization of bimetallic Ga,A1-MCM-41 and Fe,A1-MCM-411331
- Chapter 166. Fischer-Tropsch synthesis on iron catalysts supported on MCM-41 and MCM-41 modified wit1339
- Chapter 167. Coordination and oxidation states of iron incorporated into MCM-411347
- Chapter 168. Synthesis and characterization of In-MCM-41 mesoporous molecular sieves with different1355
- Chapter 169. The effect of niobium source used in the synthesis on the properties of NbMCM-41 materi1363
- Chapter 170. Inclusion of europium(III) β -diketonates in mesoporous MCM-41 silica1371
- Chapter 171. Synthesis, characterization and catalytic properties of mesoporous titanostanno silicat1379
- Chapter 172. Alternative synthetic routes for NiA1 layered double hydroxides with alkyl and alkylben1387
- Chapter 173. Spectroscopic studies on aminopropyl-containing micelle templated silicas. Comparison o1395
- Chapter 174. Preparation, characterization, stability and catalytic reactivity of the 3d transition1403
- Chapter 175. Amine-functionalized SiMCM-41 as carrier for heteropolyacid structures1411
- Chapter 176. Acidity of mesoporous aluminophosphates and silicas MCM-41. A combined FTIR and UV-Vis-1419
- Chapter 177. Modification of silica walls of mesoporous silicate and alumino-silicate by reaction wi1427
- PART 4: ADVANCED MATERIALS AND APPLICATIONS1435
- Chapter 178. Options for the design of structured molecular sieve materials1437
- Chapter 179. Chromium containing zeolite beta macrostructures1449
- Chapter 180. Semiconductor nanoparticles in the channels of mesoporous silica and titania thin films1457
- Chapter 181. Spin-coating induced self-assembly of pure silica and Fe-containing mesoporous films1465
- Chapter 182. Guanidine catalysts supported on micelle templated silicas. New basic catalysts for org1473
- Chapter 183. Attempts on generating basic sites on mesoporous materials1481
- Chapter 184. Application of zeolite in the health science: novel additive for cigarette to remove N-1489
- Chapter 185. Direct synthesis of ZSM-5 crystals on gold modified by zirconium- phosphonate multilaye1497
- Chapter 186. Square root relationship in growth kinetics of silicalite-1 membranes1505
- Chapter 187. Transport characteristics of zeolite membrane from dynamic experiments1513
- Chapter 188. Incorporation of zeolites in polyimide matrices1521
- Chapter 189. The formation mechanism of ZSM-5 zeolite membranes1529
- Chapter 190. Mesoporous molecular sieves for albumin1537
- Chapter 191. Characterizing the novel porous superbase K+/ZrO2 by probe adsorption: a Raman study1545
- Chapter 192. The synthesis and characterization of zeolite ZSM-5 and ZSM-35 films by self-transforma1553
- Chapter 193. Preparation of mesoporous materials as a support for the immobilization of lipase1561
- PART 5: ADSORPTION, DIFFUSION, SEPARATION AND PERMEATION1569
- Chapter 194. Adsorption and diffusion of linear and dibranched C6 paraffins in a ZSM-5 zeolite1571
- Chapter 195. Adsorption of indole and benzothiophene over zeolites with faujasite structure1579
- Chapter 196. Determination of microporous structure of zeolites by t-plot method - State-of-the-art1587
- Chapter 197. Binary mixture adsorption of water and ethanol on silicalite1595
- Chapter 198. Influence of water adsorption on zeolite Beta1603
- Chapter 199. Diffusion and adsorption of hydrocarbons from automotive engine exhaust in zeolitic ads1611
- Chapter 200. Kinetic processes during sorption and diffusion of aromatic molecules on medium pore ze1619
- Chapter 201. Calorimetric study of C2H4 adsorption on synthetic zeolites with Na+ and Ca2+ cations1627
- Chapter 202. A1-MCM-48: synthesis and adsorption properties for water, benzene, and nitrogen1631
- Chapter 203. A frequency-response study of the kinetics of ammonia sorption in zeolite particles1639
- Chapter 204. An attempt to correlate the non-isothermal desorption behavior of heterocyclic compound1647
- Chapter 205. Determination of diffusion coefficient for Cu(II) retention on chemically activated cli1655
- Chapter 206. Dynamics of sorption columns in dewatering of bioethanol using zeolites1663
- Chapter 207. Adsorption properties of MCM-41 materials for the VOCs abatement1671
- Chapter 208. Adsorption of linear and branched paraffins in silicalite: thermodynamic and kinetic st1679
- Chapter 209. Location and transport properties of ammonia molecules in a series of faujasite zeolite1687
- Chapter 210. Characterization of mesoporous solids: pore condensation and sorption hysteresis phenom1695
- PART 6: NATURAL ZEOLITES1703
- Chapter 211. Ion exchange selectivity of phillipsite1705
- Chapter 212. Sorption of ammonia from gas streams on clinoptilolite impregnated with inorganic acids1713
- Chapter 213. Microtopographic features and dissolution behavior of natural zeolite surfaces studied1721
- Chapter 214. Occurrence and crystal structure of magnesian chabazite1729
- Chapter 215. Treatment of urban dump leachates with natural zeolite packed bed column1737
- Chapter 216. Phosphorous removal from wastewater by bioaugmented activated sludge with different amo1743
- Chapter 217. Zeolitized tuffs as pedogenic substrate for soil re-building. Early evolution of zeolit1751
- Chapter 218. Neapolitan yellow tuff for the recovery of soils polluted by potential toxic elements i1759
- Chapter 219. Application of Jordanian faujasite-phillipsite tuff in ammonium removal1767
- Chapter 220. Evidence of the relationship occurring between zeolitization and lithification in the y1775
- PART 7: ION EXCHANGE AND MODIFICATION1783
- Chapter 221. Characterisation of iron containing molecular sieves - the effect of T-element on Fe sp1785
- Chapter 222. Thermal decomposition of sodium azide in various microporous materials1793
- Chapter 223. Modifying the acidic properties of PtZSM-5 and PtY zeolites by appropriately varying re1801
- Chapter 224. Vibrational studies of iron phthalocyanines in zeolites1809
- Chapter 225. The effect of dealumination on the A1 distribution in pentasil ring zeolites1817
- Chapter 226. Pb(II) ion exchange on zeolite-supported magnetite. Characterization of process by effe1825
- Chapter 227. Galliation of beta zeolite by the pH control method1833
- Chapter 228. Ion exchange behaviour of two synthetic phillipsite-like phases1841
- Chapter 229. Competitive exchange of lead(II) and cadmium(II) from aqueous solution on clinoptilolit1849
- Chapter 230. Competitive ion exchange of transition metals in low silica zeolites1857
- PART 8: STRUCTURE ANALYSIS AND MODELLING1865
- Chapter 231. Computational methods for the design of zeolitic materials1867
- Chapter 232. A theoretical investigation on pressure-induced changes in the vibrational spectrum of1877
- Chapter 233. Flexible aluminium coordination of zeolites as function of temperature and water conten1885
- Chapter 234. Structure analysis of boron-silicalite and of a "defect-free" MFI-silicalite by synchro1891
- Chapter 235. Density functional theory modelling EPR spectra of Cu(II) in Y zeolite1899
- Chapter 236. Molecular modeling: a complement to experiment for designing porous materials used in s1907
- Chapter 237. NMR-crystallographic studies of aluminophosphate A1PO4-401915
- Chapter 238. Structural characterization of borosilicates synthesized in the presence of ethylenedia1923
- Chapter 239. Molecular dynamics simulations of water confined in zeolites1931
- Chapter 240. EXAFS and optical spectroscopy characterisation of silver within zeolite matrices1939
- Chapter 241. Molecular dynamics simulations of static and dynamic properties of water adsorbed in ch1947
- Chapter 242. Correlations in anisotropic diffusion of guest molecules in silicalite-11955
- Chapter 243. A combined anomalous XRPD, EXAFS, IR, UV-Vis and photoluminescence study on isolated an1963
- Chapter 244. DFT and IR studies on copper sites in CuZSM-5: structure-redox conditions- denox activi1971
- Chapter 245. Diffusion of water in silicalite by molecular dynamics simulations: ab initio based int1979
- Chapter 246. Comparison of small size alumino- and borosilicates optimised by periodic Hartree-Fock1987
- Chapter 247. Monte Carlo simulation of the temperature dependence of adsorption of nitrogen and oxyg1995
- Chapter 248. Density functional theory calculations of Henry's constant for N2, O2 and Ar molecules2003
- Author index2011
- Subject index2021
- Studies in Surface Science and Catalysis2029
Book details
- Vendor Elsevier S & T
- SKU 9780444511744
- ISBN-13 9780080534589
- Author Aiello, R.; Testa, F.; Giordano, G.
- Category Science
- Subject Industrial & Technical
Do you have questions about this book?
Crystalline solids with highly structured micro-scale pores are called zeolites. Their well-defined structure and large contact surface make them extremely useful as catalysts. Their most common use is in washing powders. Different features are caused by the shape and size of the pores and the presence of different metals in the crystal structure. Research is conducted both towards better understanding of the relations between form and function and towards identifying new possible uses.
This title presents a collection of contributions from internationally renowned researchers in the field of the Science and Technology of micro and mesoporous materials. The aim of the conference is to create an international forum where researchers from academia as well as from industry can discuss ideas and evaluate the impact of zeolites, and other porous materials, on new technologies at the beginning of the new millennium.
· Gives the most recent developments in the origin, synthesis and characterisation of zeolitic materials
· Outlines the impact and application of zeolites in various industrial processes
· An adjourned state of art in the field of zeolites and other porous materials
This title presents a collection of contributions from internationally renowned researchers in the field of the Science and Technology of micro and mesoporous materials. The aim of the conference is to create an international forum where researchers from academia as well as from industry can discuss ideas and evaluate the impact of zeolites, and other porous materials, on new technologies at the beginning of the new millennium.
· Gives the most recent developments in the origin, synthesis and characterisation of zeolitic materials
· Outlines the impact and application of zeolites in various industrial processes
· An adjourned state of art in the field of zeolites and other porous materials
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