AIChE Symposium Series, Volume 91, Issue 309American Institute of Chemical Engineers, 1972 - Chemical engineering |
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Page 41
... MCM - 41 Type Composition Figure 1. Schematic of the high pressure adsorption apparatus 933910. pore - size range controllable by organic - guest species was extended up to 10 nm . The phenomenon of liquid crystal templating provides the ...
... MCM - 41 Type Composition Figure 1. Schematic of the high pressure adsorption apparatus 933910. pore - size range controllable by organic - guest species was extended up to 10 nm . The phenomenon of liquid crystal templating provides the ...
Page 45
American Institute of Chemical Engineers. Table 2. Physical properties of MCM - 41 type adsorbents Class of MCM - 41 Type of Materials Siliceous 580-1070 0.17 0.25 112 270 0.41 -0.46 0.5 1.01 0.82 1.34 - 1.98 4.49 35-40 2.5-4.0 0.5-1.3 ...
American Institute of Chemical Engineers. Table 2. Physical properties of MCM - 41 type adsorbents Class of MCM - 41 Type of Materials Siliceous 580-1070 0.17 0.25 112 270 0.41 -0.46 0.5 1.01 0.82 1.34 - 1.98 4.49 35-40 2.5-4.0 0.5-1.3 ...
Page 47
... MCM - 41 type materials at 25 ° C MCM - 41 Type Composition Polymeric Sorbents for CO2 , SO2 , and NO : Ozawa Alumino MgO- Parameters siliceous modified Cr2O3 - modified Siliceous Siliceous Alumino siliceous # 1 # 3 # 4 # 8 # 10 # 11 ...
... MCM - 41 type materials at 25 ° C MCM - 41 Type Composition Polymeric Sorbents for CO2 , SO2 , and NO : Ozawa Alumino MgO- Parameters siliceous modified Cr2O3 - modified Siliceous Siliceous Alumino siliceous # 1 # 3 # 4 # 8 # 10 # 11 ...
Contents
Foreword | 1 |
NOXSO SO₂NO Flue Gas Treatment Process Adsorption Chemistry and Kinetics | 18 |
Sulphation and Regeneration of SolGel Derived Regenerative Sorbents | 32 |
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Common terms and phrases
activated carbons adsorbed adsorption adsorptive capacities alkyl alumina Aluminosiliceous amine amino-functional anisole bed volumes benzoic acid bulk density catalytic cations Chem Chemical chitosan chlorobenzene CO₂ copolymers copolymers functionalized copper oxide copper oxide sorbents CuO loading CVOC cycle dealuminated decrease dual-function efficiently remove fixed-bed flow rate flue gas desulfurization g/cm³ H₂O Haslbeck increases interactions kinetic m²/g materials MCM-41 type methane methanol micropores ml/min molecules Na₂O nitrogen NO₂ NOXSO process parameters penicillin phenol phenoxyacetate pickup polymeric polymeric resins polymers pore volume porosity precursor presorbed pressure process streams properties reactor regeneration curve resin S-VBC samples selectively and efficiently showed shown in Figure Siliceous simulation SO₂ sorption sodium sol-gel sol-gel derived solvent sorbent sorption sorption capacity storage inhibitors sulfur supported copper oxide surface area synthesized Table TCE sorption templating tertiary thermal TR/CA tyrosinase waste minimization XUS resin y-alumina supported zeolites
References to this book
Nanoporous Materials: Science and Engineering G. Q. Lu,George Xiu Song Zhao No preview available - 2004 |