Characterization of Porous Solids VI: Proceedings of the 6th International Symposium on the Characterization of Porous Solids (COPS-VI), Allicante, Spain, May 8 - 11 2002
Rodríguez-Reinoso, F.
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Table of contents
- Cover
- Contentsv
- Prefacexv
- Committeesxvii
- Financial supportxvii
- Chapter 1. Scanning probe microscopies for the characterization of porous solids: strengths and limi1
- Chapter 2. Role of gas adsorption in nanopore characterization11
- Chapter 3. Reconstruction method for the characterization of porous carbons19
- Chapter 4. A new method for microporosity detection based on the use of the corrugated pore structur27
- Chapter 5. Physisorption in nanopores of various sizes and shapes: a Grand Canonical Monte Carlo sim35
- Chapter 6. Induced porosity in cross-linked polymer networks: Mean field theory and simulations43
- Chapter 7. Microbean small angle X-ray scattering (μSAXS): a novel technique for the characterizati51
- Chapter 8. "Real time" determination of porosity development in carbons: a combined SAXS/TGA approac59
- Chapter 9. SANS investigations of adsorption mechanisms in model porous silicas67
- Chapter 10. Preparation and surface characterization of novel ceria-copper and ceria-manganese mixed75
- Chapter 11. About the exclusive mesoporous character of MCM-4183
- Chapter 12. Incorporation of appropriate contact angles in textural characterization by mercury poro91
- Chapter 13. A two-stage Horvath-Kawazoe adsorption model for pore size distribution analysis99
- Chapter 14. Textural and chemical characterization of NaX zeolite exchanged with Zn(ll) ions107
- Chapter 15. Evaluation and comparison of the pore structure and related properties of particulate an115
- Chapter 16. Percolation phenomena in micropores: influence on single and multicomponent adsorption e123
- Chapter 17. Characterization of the surface chemistry of activated carbon by molecular simulation of131
- Chapter 18. Comparison of porous carbons developed via templating approaches139
- Chapter 19. Simulation of adsorption in 3-D reconstructed mesoporous materials by a simulated anneal147
- Chapter 20. Understanding adsorption hysteresis in porous glasses and other mesoporous materials155
- Chapter 21. Structural studies of mesoporous alumina membranes by small angle X-ray scattering163
- Chapter 22. Assessing microporosity by immersion microcalorimetry into liquid nitrogen or liquid arg171
- Chapter 23. The lower closure point of the adsorption hysteresis loop of fluids in mesoporous silica177
- Chapter 24. New metodologies in mercury porosimetry185
- Chapter 25. Theoretical calculation of high micropore volumes on activated carbons193
- Chapter 26. Assessment of ultramicroporosity on carbon molecular sieves by water adsorption201
- Chapter 27. Active surface area of carbon materials determined by different methods209
- Chapter 28. Heterogeneity of sewage sludge derived materials as a factor governing their performance217
- Chapter 29. Evaluation of microporous structure of carbon molecular sieves using the pycnometric met225
- Chapter 30. Characterization of porous carbonaceous sorbents using adsorption data in wide temperatu231
- Chapter 31. Ammonia accessibility to the porosity of several activated carbons measured by flow adso239
- Chapter 32. An IGC and TA study of acetaldehyde adsorption on activated carbons247
- Chapter 33. A novel approach for characterizing carbon catalysts by TAP experiments255
- Chapter 34. Preparation of activated carbons with controlled pore size261
- Chapter 35. Characterization of porous solids using low pressure VOC adsorption data267
- Chapter 36. Energetics and mechanism of physical sorption by carbonaceous solids: Evaluation of surf275
- Chapter 37. Phenanthrene adsorption on a carbonaceous material: moisture and CO2 influence283
- Chapter 38. Water adsorption on micro and mesoporous silicas291
- Chapter 39. The effect of surface functionalization of mesoporous silicas with propylimidazol on por299
- Chapter 40. Preparation of porous silica by acid activation of metakaolins307
- Chapter 41.The effect of particle shape on the filtration rate and shear strength quartz and dolomit315
- Chapter 42. Characterisation of silica low-density xerogels in presence of additives by image analys323
- Chapter 43. Texture characterization of ultramacroporous materials using non-destructive methods331
- Chapter 44. Formation of hierarchically ordered silicas prepared by spray drying of nanosized sphere339
- Chapter 45. Ultrathin porous glass membranes with controlled texture properties347
- Chapter 46. Reconstruction of mesoporous silica glass Gelsil® 50355
- Chapter 47. Pore structural characteristics of mesostructured materials prepared under different con363
- Chapter 48. A grand canonical Monte Carlo simulation study of water adsorption in a Vycor-like disor371
- Chapter 49. A review of the application of the BET equation to experimental data: the C parameter379
- Chapter 50. Thermogravimetric and sorption measurement techniques/instruments387
- Chapter 51. Influence of method of washcoat preparation on hydrothermal stability of alumina support395
- Chapter 52. Limestone influence on PAH emissions from coal AFBC. Catalytic or/and adsorption effect?403
- Chapter 53. Freezing point elevation in nanospace detected directly by atomic force microscopy411
- Chapter 54. Is it possible to obtain a coherent image of the texture of a porous material?419
- Chapter 55. Preparation and characterisation of Cr-Co spinels for methane oxidation in presence of s427
- Chapter 56. Characterising the porous structure of Egyptian mortars using thermoporometry, mercury i435
- Chapter 57. Monitoring fast pressure changes in gas transport and sorption analysis443
- Chapter 58. Effect of coke deposition on catalyst texture during catalytic cracking reaction451
- Chapter 59. Precision of porosity measurements on cementitious mortars459
- Chapter 60. Freezing in mesopores: aniline in silica glasses and MCM-41467
- Chapter 61. Transport characteristics of porous solids derived from chromatographic measurements475
- Chapter 62. Effects of porous solid structures on the electrical behaviour: prediction key of transp483
- Chapter 63. Pore and surface characteristics of porous melamine- and phenolic- formaldehyde polymers491
- Chapter 64. Porous structure of multifunctional mineral-carbon and zeolite-carbon sorbents499
- Chapter 65. Waste air cleaning using activated carbon fibre cloths regenerable by direct electric he507
- Chapter 66. Adsorption of inflammatory cytokines and endotoxin by mesoporous polymers and activated515
- Chapter 67. Separation of adsorption isotherms of N2 in internal and interstitial nanopores of singl521
- Chapter 68. Visualizing the porous structure of different carbon materials: a scanning tunneling mic529
- Chapter 69. Textural characterisation of activated carbons obtained from poly(ethylene terephthalate537
- Chapter 70. A Monte Carlo study on the structure of carbon dioxide adsorbed in microporous carbons545
- Chapter 71. Preloading of GAC by natural organic matter: effect of surface chemistry on TCE uptake553
- Chapter 72. Structural studies of saccharose- and anthracene-based carbons by high-energy X-ray scat561
- Chapter 73. The dynamic adsorption behaviour of volatile organic compounds on activated carbon honey569
- Chapter 74. Structural properties of Cu-MCM-41 and Cu-Al-MCM-41 (Si/Al=30) catalysts577
- Chapter 75. Comparative study of the textural properties of alumina-pillared saponites synthesised f585
- Chapter 76. Chord length distribution and pore size distribution of porous VYCOR glass593
- Chapter 77. A structural study of dehydration/rehydration of tobermorite, a model cement compound601
- Chapter 78. Support mesoporosity: a tool for better control of catalytic behavior of cobalt supporte609
- Chapter 79. Textural characterization of montmoriHonite pillared with aluminum/lanthanum polyoxycati617
- Chapter 80 .Influence of pH in mesoporous silica aluminas (MSA) synthesis625
- Chapter 81. The adsorption of l-hexene and 3,3-dimethyl-l-butene on Ru-MCM 41633
- Chapter 82. XPS studies of MCM 41 postmodified by a Schiff base copper complex639
- Chapter 83. Influence of synthesis conditions on surface heterogeneity of M41 type materials studied647
- Chapter 84. Porosity of chemically modified silica gels by nitrogen adsorption, positron annihilatio655
- Chapter 85. Preparation and characterization of porous sorbents for hot gas desulfurization663
- Chapter 86. Synthesis and characterization of MWW zeolites671
- Chapter 87. Structural analysis of oxyanion-cation complexes anchored by organic group in mesoporous677
- Chapter 88. Adsorption equilibrium of polar/non-polar mixtures on MCM-41: experiments and Monte Carl685
- Chapter 89. Nondestructive characterization of porous ceramics by X-ray refraction693
- Chapter 90. lon-exchange properties of a novel layered titanium(IV) phosphate701
- Chapter 91. The anomalous sorptive behaviour of ZSM-5 and Silicalite-l: observation of low pressure709
- Chapter 92. Characterization of the textural properties of chemically dealuminated Y zeolites717
- Chapter 93. Complementarity of microcalorimetry, manometry and gravimetry in the study of gas adsorp723
- Chapter 94. The applicability of the Dubinin-Radushkevich equation to the very low pressure region o731
- Chapter 95. Controlled porosity and surface area titania gels as novel photocatalytic washcoats737
- Chapter 96. The effect of geometry and axial orientation of spheroidal particles on the adsorption r745
- Chapter 97. The effect of Peclet on the Sherwood number in high porosity granular media753
- Chapter 98. The application of Jäntti's method for the fast calculation of equilibrium in case of m761
- Chapter 99. Characterization of controlled pore glasses by small angle X-ray scattering and evaluati769
- Author Index775
- Other volumes in the series781
Book details
- Vendor Elsevier S & T
- SKU 9780444512611
- ISBN-13 9780080528915
- Author Rodríguez-Reinoso, F.
- Category Science
- Subject Industrial & Technical
Do you have questions about this book?
This book contains 99 of the papers that were presented at the 6th in the series of Symposia on Characterization of Porous Solids held in Alicante, Spain, May 2002.
Written by leading international specialists in the subject, the contributions represent an up-to-date and authoritative account of recent developments around the world in the major methods used to characterize porous solids. The book is a useful work of reference for anyone interested in characterizing porous solids, such as MCM-41 mesoporous materials, pillared clays, etc. Papers on pore structure determination using gas adsorption feature strongly, together with papers on small angle scattering methods, mercury porosimetry, microcalorimetry, scanning probe microscopies, and image analysis.
Written by leading international specialists in the subject, the contributions represent an up-to-date and authoritative account of recent developments around the world in the major methods used to characterize porous solids. The book is a useful work of reference for anyone interested in characterizing porous solids, such as MCM-41 mesoporous materials, pillared clays, etc. Papers on pore structure determination using gas adsorption feature strongly, together with papers on small angle scattering methods, mercury porosimetry, microcalorimetry, scanning probe microscopies, and image analysis.
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