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David Glasser
David Glasser
Professor, University of South Africa, College of Science, Engineering & Technology
Verified email at unisa.ac.za - Homepage
Title
Cited by
Cited by
Year
A geometric approach to steady flow reactors: the attainable region and optimization in concentration space
D Glasser, C Crowe, D Hildebrandt
Industrial & engineering chemistry research 26 (9), 1803-1810, 1987
3201987
Fischer–Tropsch synthesis over iron catalysts supported on carbon nanotubes
MC Bahome, LL Jewell, D Hildebrandt, D Glasser, NJ Coville
Applied Catalysis A: General 287 (1), 60-67, 2005
2422005
The attainable region and optimal reactor structures
D Hildebrandt, D Glasser
Chemical Engineering Science 45 (8), 2161-2168, 1990
1831990
Geometry of the attainable region generated by reaction and mixing: with and without constraints
D Hildebrandt, D Glasser, CM Crowe
Industrial & engineering chemistry research 29 (1), 49-58, 1990
1811990
A study of the low temperature oxidation of coal
M Itay, CR Hill, D Glasser
Fuel Processing Technology 21 (2), 81-97, 1989
1511989
Fe-Ru small particle bimetallic catalysts supported on carbon nanotubes for use in Fischer–Tröpsch synthesis
MC Bahome, LL Jewell, K Padayachy, D Hildebrandt, D Glasser, ...
Applied Catalysis A: General 328 (2), 243-251, 2007
1372007
A simplified model of spontaneous combustion in coal stockpiles
K Brooks, D Glasser
Fuel 65 (8), 1035-1041, 1986
1131986
Fischer−Tropsch Synthesis Using H2/CO/CO2 Syngas Mixtures over a Cobalt Catalyst
Y Yao, D Hildebrandt, D Glasser, X Liu
Industrial & engineering chemistry research 49 (21), 11061-11066, 2010
972010
Spontaneous combustion of carbonaceous stockpiles. Part II. Factors affecting the rate of the low-temperature oxidation reaction
MA Smith, D Glasser
Fuel 84 (9), 1161-1170, 2005
922005
Fischer–Tropsch Synthesis Using H2/CO/CO2 Syngas Mixtures over an Iron Catalyst
Y Yao, X Liu, D Hildebrandt, D Glasser
Industrial & engineering chemistry research 50 (19), 11002-11012, 2011
832011
Evaluating the risk of spontaneous combustion in coal stockpiles
K Brooks, N Svanas, D Glasser
Fuel 67 (5), 651-656, 1988
781988
Reactor and process synthesis
D Glasser, D Hildebrandt
Computers & chemical engineering 21, S775-S783, 1997
771997
Spontaneous combustion of carbonaceous stockpiles. Part I: the relative importance of various intrinsic coal properties and properties of the reaction system
MA Smith, D Glasser
Fuel 84 (9), 1151-1160, 2005
752005
Linear programming formulations for attainable region analysis
S Kauchali, WC Rooney, LT Biegler, D Glasser, D Hildebrandt
Chemical engineering science 57 (11), 2015-2028, 2002
702002
Wastewater treatment of reactive dyestuffs by ozonation in a semi-batch reactor
MTF Tabrizi, D Glasser, D Hildebrandt
Chemical Engineering Journal 166 (2), 662-668, 2011
652011
Optimal mixing for exothermic reversible reactions
B Glasser, D Hildebrandt, D Glasser
Industrial & engineering chemistry research 31 (6), 1541-1549, 1992
641992
The application of the attainable region analysis to comminution
N Khumalo, D Glasser, D Hildebrandt, B Hausberger, S Kauchali
Chemical engineering science 61 (18), 5969-5980, 2006
622006
Convex attainable region projections for reactor network synthesis
WC Rooney, BP Hausberger, LT Biegler, D Glasser
Computers & chemical engineering 24 (2-7), 225-229, 2000
602000
Determination of the milling parameters of a platinum group minerals ore to optimize product size distribution for flotation purposes
N Chimwani, D Glasser, D Hildebrandt, MJ Metzger, FK Mulenga
Minerals Engineering 43, 67-78, 2013
592013
Column profile maps. 1. Derivation and interpretation
M Tapp, ST Holland, D Hildebrandt, D Glasser
Industrial & engineering chemistry research 43 (2), 364-374, 2004
592004
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