AIChE Symposium Series, Volume 91, Issue 309American Institute of Chemical Engineers, 1972 - Chemical engineering |
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Page 41
... solution as long as a concentration above the critical micelle is maintained . Our main research focus was to ... solution , 0.5 TMA / SiO2 ) was purchased from SACHEM . Catapal B Alumina from Vista Chemical Company was used as a source ...
... solution as long as a concentration above the critical micelle is maintained . Our main research focus was to ... solution , 0.5 TMA / SiO2 ) was purchased from SACHEM . Catapal B Alumina from Vista Chemical Company was used as a source ...
Page 50
... solution to remove the polymerization inhibitors . This process was repeated for a minimum of three times . The monomers were then rinsed with distilled water at least six times to eliminate all traces of the sodium hydroxide ...
... solution to remove the polymerization inhibitors . This process was repeated for a minimum of three times . The monomers were then rinsed with distilled water at least six times to eliminate all traces of the sodium hydroxide ...
Page 64
... solution by the combination of tyrosinase reaction and chitosan adsorption . Thus Figure 7 shows that TR / CA can remove - butylcatechol from aqueous solution and thus may offer an opportunity for efficiently removing storage inhibitors ...
... solution by the combination of tyrosinase reaction and chitosan adsorption . Thus Figure 7 shows that TR / CA can remove - butylcatechol from aqueous solution and thus may offer an opportunity for efficiently removing storage inhibitors ...
Contents
Foreword | 1 |
NOXSO SO₂NO Flue Gas Treatment Process Adsorption Chemistry and Kinetics | 18 |
Sulphation and Regeneration of SolGel Derived Regenerative Sorbents | 32 |
Copyright | |
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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 |