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  • Benzene catabolism  (2)
  • Air Transportation and Safety  (1)
  • 1
    ISSN: 1432-072X
    Keywords: Key words     Pseudomonas ; Benzene catabolism ; Catechol dioxygenase ; continuous culture ; Catabolite repression
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract      The oxidation of catechol, an intermediate in benzene catabolism, was studied using transient variations in dissolved oxygen tension (DOT) when a succinate limited steady state culture of Pseudomonas putida ML2 was perturbed with a pulse of another substrate. A model was developed and tested for the effect of fluctuations in oxidizing enzyme activity on DOT. It was found that the rate of induction of catechol o xidizing enzymes was independent of dilution rate up to a relative growth rate (μ/μmax) of 0.75. Only at higher dilution rates was catabolite repression observed.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-072X
    Keywords: Pseudomonas ; Benzene catabolism ; Catechol dioxygenase ; continuous culture ; Catabolite repression
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The oxidation of catechol, an intermediate in benzene catabolism, was studied using transient variations in dissolved oxygen tension (DOT) when a succinate limited steady state culture of Pseudomonas putida ML2 was perturbed with a pulse of another substrate. A model was developed and tested for the effect of fluctuations in oxidizing enzyme activity on DOT. It was found that the rate of induction of catechol oxidizing enzymes was independent of dilution rate up to a relative growth rate μ/μmax of 0.75. Only at higher dilution rates was catabolite repression observed.
    Type of Medium: Electronic Resource
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  • 3
    Publication Date: 2018-06-12
    Description: The movement of passengers through an airport quickly, safely, and efficiently is the main function of the various checkpoints (check-in, security. etc) found in airports. Human error combined with other breakdowns in the complex system of the airport can disrupt passenger flow through the airport leading to lengthy waiting times, missing luggage and missed flights. In this paper we present a model of passenger flow through an airport using discrete event simulation that will provide a closer look into the possible reasons for breakdowns and their implications for passenger flow. The simulation is based on data collected at Norfolk International Airport (ORF). The primary goal of this simulation is to present ways to optimize the work force to keep passenger flow smooth even during peak travel times and for emergency preparedness at ORF in case of adverse events. In this simulation we ran three different scenarios: real world, increased check-in stations, and multiple waiting lines. Increased check-in stations increased waiting time and instantaneous utilization. while the multiple waiting lines decreased both the waiting time and instantaneous utilization. This simulation was able to show how different changes affected the passenger flow through the airport.
    Keywords: Air Transportation and Safety
    Type: Selected Papers and Presentations Presented at MODSIM World 2010 Conference Expo; 471-477; NASA/CP-2011-217069/PT 2
    Format: application/pdf
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