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McHardy J., Sawan S.P. — See Inside! Supercritical Fluid Cleaning by Samuel P. Haber: Book Cover * o Table of Contents Supercritical Fluid Cleaning: Fundamentals, Technology and Applications
McHardy J., Sawan  S.P. — See Inside! Supercritical Fluid Cleaning by Samuel P. Haber: Book Cover      *           o              Table of Contents  Supercritical Fluid Cleaning: Fundamentals, Technology and Applications



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Название: See Inside! Supercritical Fluid Cleaning by Samuel P. Haber: Book Cover * o Table of Contents Supercritical Fluid Cleaning: Fundamentals, Technology and Applications

Авторы: McHardy J., Sawan S.P.

Аннотация:

Although supercritial fluid (SCF) technology is now widely used in extraction and purification processes (in the petrochemical, food and pharmaceuticals industries), this book is the first to address the new application of cleaning. The objective is to provide a roadmap for readers who want to know whether SCF technology can meet their own processing and cleaning needs. It is particularly helpful to those striving to balance the requirements for a clean product and a clean environment. The interdisciplinary subject matter will appeal to scientists and engineers in all specialties ranging from materials and polymer sciences to chemistry and physics. It is also useful to those developing new processes for other applications, and references given at the end of each chapter provide links to the wider body of SCF literature.

The book is organized with topics progressing from the fundamental nature of the supercritical state, through process conditions and materials interactions, to economic considerations. Practical examples are included to show how the technology has been successfully applied. The first four chapters consider principles governing SCF processing, detailing issues such as solubility, design for cleanability, and the dynamics of particle removal. The next three chapters discuss surfactants and microemulsions, SCF interaction with polymers, and the use of supercritical carbon dioxide (CO2) as a cleaning solvent. The closing chapters focus on more practical considerations such as scaleup, equipment costs, and financial analysis.


Язык: en

Рубрика: Технология/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1998

Количество страниц: 290

Добавлена в каталог: 26.06.2009

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Freidrich, John      11
Freon      23
Friction      78
Friction factor      75
FT-IR      103
Fugacity coefficient      13 269
Gas-like diffusion      32
Gases, high pressure      123
Glass      170
Glass surfaces      167
Glass transition      142
Glass transition, temperature      123 128 142 148 149
Glass-rubber      142
Glassy state      141
Gloves      45
Gluing      52
Granulated activated charcoal (GAC)      258
Gravity      77
Grinding applications      42
Guidance instruments      197
Guidelines      49
Guldberg’srule      9
Gyroscopes      197
Halogenated damping fluid      210
Halons      195
Hamaker’s constant      77 80
Hannay and Hogarth      1
Hard plastic      151
HDPE      158
Heat of fusion      26
Heat of vaporization      278
Heat transfer fluids      199
Heat-sensitive flavors      16
Heptane      200
Hermetically sealed assemblies      211
Hexadecane      169
Hexane      23 272
High molecular weight contaminants      170
High viscosity fluids      197
Hildebrand solubility parameter      12
Hips      130
Holding mechanism      277
Holes      52
Hydrocarbon      10 16 23
Hydrocarbon, contamination      210
Hydrocarbon, oils      206
Hydrocarbon, soils      25
Hydrocarbon, solvents      104
Hydrocarbon, tails      94
Hydrogen bonding      33
Hydrophilic head groups      92
Ideal gas law      10
Immersion rinse tanks      44
Impeller Froude number      226
Impeller Reynolds number      226
Impeller speed      235
Industrial applications      88
Industrial solvents      19
Inert solvents      38
Inorganic contaminants      164
integrated circuits      71
interactions      122 125 222
Interactions, carbon-dioxide-polymer      141
Interim cleaners      44
Ionic, contaminants      164
Ionic, interactions      100
Ionic, species      88 93
Ionic, surfactants      93
Iron      167
ISO 9000      255
Isobaric cooling      109
Isotherms      5
Jets      84
Joint Association for the Advancement of Supercritical Technology      218
Joule-Thomson effect      14
Just-in-time (JIT) manufacturing      41 43
Just-in-time cleaning      43 44
Kerosene      169
Kinematic similarity      228
Labile lipids      16
Labile substances      88
Laminar flow      71
Laminar sublayer      73 82
Lapping      40
Law of the wall      73
LDPE      130 151 152 158
Lecithin      98
Lewis bases      105
Like-dissolves-like      23 25
Lipids      166 167
Lipophilic tails      92
Liquid carbon dioxide      255 259
Liquid chemical processing      278
Liquid jets      71
Local cosolvent effect      27
Low vapor pressure compounds      36
Lubricants      168 169 197 199 206 209
Machining fluids, water miscible      168
Machining oils      168
Machining processes      39
Magnesium      42 167 170 171 198
Magnetic alloys      198
Maintenance      263
Makeup carbon dioxide      259
Manufacturing process      49
Mass transfer      231 273
Mass transport      88 222 237 272
materials      50
Mathematical modeling      221
Melting enthalpy      142 149
Melting temperature      128 142 148 149
Mendeleev      1
Meniscus      277
Metals, cast      167
Methyl chloroform      40 195
Methyl silicone gum      170
Micelle-micelle collisions      115
Micelles      87 90 92
Micelles, clustering      115
Micelles, size      115
Micelles, system      94
Microemulsion      87 88 109
Microemulsion, cleaning      116
Microemulsion, phase      112
Microemulsion, systems      90
Microstructure      100
Mixing propeller      214
Model for cleaning      28
Molar flux      237
Molar volume      10
Mold releases      169
Molecular interactions      100
Molecular sieves      257
Molecular weight      10 141
Molykote lubricant      168
Montreal Protocol      23 163 195
N-Nitrosodimethylamine      171
N-nitrosophenylaniline      171
naphthalene      13 27
Near-critical fluids      2
Near-critical state      111
Nicotine      171
Nitroaniline      171
Nitrous oxide      16
Nonionic surfactants      91 98
Nonpolar, compounds      23
Nonpolar, solids      9
Nonsolvent cleaning      39
Nusselt number      239 240
Nylon      66 138 157
ODS (ozone-depleting substances)      195
OIL      90 168
Oil contamination      258
Oleic acid      166
Open vessel      7
Open volume exchanges      256
Operating costs      251 253 259 265
Operating variables      221
operational costs      265
Organic, amines      171
Organic, chemicals      170
Organic, compounds      80
Organic, contamination      164 166
Organic, material      71
Organic, phosphates      172
Organic, residual      42
Organic, solvents      200
Outgassing      53 143 210
Ozone depleting substances      195
Ozone layer      195
Packaging materials      45 54
PAHs      170
Pairwise forces      269
Palmitylpalmitate      166
Paraffin wax      169
Particle radius      78 83 84
Particles      71
Particles, rolling      79
Particles, sliding of      79
Particulate contamination      42
Particulate filters      257
Partition coefficient      28 29 30 32 33
Parts, complex      241
PC      130 155
PCB’s      108
Pentaethylene glycol n-octyl ether      105
Pentanol      105
Perfluorolubricants      199
Perfluoropolyether      199
PET      143 146 148 149
PETG      130 143 146 148
Petroleum fractions      16
Pharmaceuticals      16
Phase, behavior      97
Phase, boundaries      4
Phase, diagrams      4 8
Phase, stability      101
Phase, transitions      3 4
Phenanthrene      27
Phenols      170 171
Phosphates      170 172
Phosphatidylcholine      98
Phthalates      172
Physical properties      2 16 88
Physiochemical properties      19
Physisorption      33
Plastic      151 209
Plastic, mechanical properties      151
Plasticization      124 142 148 155 157
Plasticize      149
Pleated filters      258
Plug flow reactor      275 277
PMMA      130 138 143 146 148 156
PNL scaleup      237
Point-of-use filtration      258
Polar, groups      140
Polar, solutes      98
Polar, solvent      93 171 272
Polar, species      88 89 92
Polar, substance      23
Polarity of the microemulsion      93
Poly(dimethyl)siloxane      233
Polybutene      233
Polychlorofluoroethylene      197
Polyethylene glycol      170
Polyethylene glycol dodecyl ethers      98
Polymer foams      141
Polymer materials      121
Polymeric materials      123
Polymers      16 149 198 208 218 272
Polymers, decomposition      144
Polypropylene      130
POM      151 152 156
Pores      199
Potting materials      209
PP      130 155
Precision cleaning      163 195 196 202 218 253 259
Pressure      100 111 253
Pressure change      208
Pressure change, effect      136
Pressure, autoclave      234
Pressure, threshold      26
Principle of similarity      227 243
Process parameters      205 246
Propane      97
Propane microemulsion      98
Protective coatings      170 198
Prototype vessel      228
Pumping method      215
Pumping process      208
Pumps      255
PVC      130 156
PVDF      139
Pyrene      171
Pyridine      171
Quick-dip-rinse      44
Rate equation      222
Rate-limiting step      31
Rayleigh/Mie      130
Reaction rate      222
Reactive monomers      16
Reactors      275
Recontamination      257
Recovery      109
Recycle      259
recycling      258
Refrigerated water      258
Removal agent      80
Removal efficiency      28 36
Removal rate rapid      32
Residence times      275
Residue      197
Reverse micelle      91 92 94
Reynolds      239
Reynolds number      73 80 224 225 227 235 239 241 273
Rinse-water      44
Riveting      52
Rolling particles      73
Rough surface      35
Roughness      77
Rubber      167 168
Rubbery state      142
Ruthenium tris(bipyridyl) dichloride      115
Salinity      101
Salts      166
SANS      103
Saturation vapor pressure      269
SAXS      103
Scaleup      220 236
Scaleup experiments      231
Scaleup, PNL      237
Scattering domains      130
SCF      see “Supercritical fluid”
SCF carbon dioxide      155
SCF equipment cost      246
Schmidt number      239 273
Screws      52
Sea urchin effect      106
Sealants      169
Sealing adhesives      209
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