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Chemistry / Fluidized bed / Fluidization / Emission / Attrition / Fluid catalytic cracking / Churn rate / Cyclonic separation / Air pollution / Chemical engineering / Pollution / Fluid dynamics


The Use of Sensitivity Analysis and Genetic Algorithms for the Management of Catalyst Emissions from Oil Refineries J.M. Whitcombe, R.A. Cropp, R.D. Braddock and I.E. Agranovski Faculty of Environmental Sciences, Griffit
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Document Date: 2013-01-14 22:14:49


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File Size: 561,70 KB

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City

New York / /

Country

United States / Australia / /

/

Event

Natural Disaster / Environmental Issue / /

Facility

Caltex Australia’s Lytton Refinery / Griffith University / /

IndustryTerm

high gas velocities emission levels / chemical reactions / laboratory devices / industrial systems / gas velocity / genetic algorithm / high gas velocities particle attrition / crude oil / optimization algorithms / oil refineries / gas stream / higher gas velocity / gas velocity interactions / scale systems / scaled systems / higher gas velocities / search space / large scale systems / oil refinery emissions / flue gas stream / larger systems / fitting using genetic algorithm / /

Organization

Federal Communications Commission / Griffith University / Oil Refineries J.M. Whitcombe / R.A. Cropp / R.D. Braddock and I.E. Agranovski Faculty of Environmental Sciences / /

Person

Morris Method / Van Nostrand Reinhold / Nathan Qld / /

ProgrammingLanguage

MATLAB / J / /

Technology

Genetic Algorithm Genetic Algorithms / Powder Technology / optimization algorithms / genetic algorithm / simulation / fitting using genetic algorithm / /

SocialTag