243029 ⎘
Chemistry of hydrocarbon compounds; Heat considerations Exploiting or conserving heat of quenching, reaction, or regeneration
Energy conservation in heavy-hydrocarbon distillation
#2Use of a direct heating device with a reheater in a dehydrogenation unit
#3High energy reduction in a propane dehydrogenation unit by utilizing a high pressure product splitter column
#4Method for quenching paraffin dehydrogenation reaction in counter-current reactor
#5Integration of OTO process with direct DME synthesis
#6Integrated production of FCC-produced C3 and cumene
#7Integrated production of FCC-produced C2 and ethyl benzene
#8Method of providing heat for chemical conversion and a process and system employing the method for the production of olefin
#9High energy reduction in a propane dehydrogenation unit by utilizing a high pressure product splitter column
#10Method of recovering heat transfer in reactor and regenerator effluent coolers
#11Integration of OTO process with direct DME synthesis
#12Use of direct heating device with a reheater in a dehydrogenation unit
#13Process for enhanced olefin production
#14Integrated production of FCC-produced C3 and cumene
#15Integrated production of FCC-produced C2 and ethyl benzene
#16Oxygenate to olefins process involving supercritcal conditions
#17Separation of olefin vapor from liquid fraction to reduce fouling
#18Low temperature process for recovering and producing para-xylene and heat exchange network therefore
#19Water quench fitting for pyrolysis furnace effluent
#20Oxygenate conversion to olefins with enhanced carbonyl recovery
#21Removal of catalyst fines from a reaction system
#22Process for removing solid particles from a gas-solids flow