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Falconer, John L.; Hendren, Neil – Chemical Engineering Education, 2021
A virtual catalytic reactor laboratory (VCRL) experiment, which can be used in most browsers, is described. Students select feed conditions and use the VCRL to take data for a gas-phase catalytic reaction and fit kinetic parameters to a Langmuir-Hinshelwood rate expression. The VCRL contains instructions, equipment descriptions, an animated…
Descriptors: Science Instruction, Computer Simulation, Laboratory Experiments, Laboratory Equipment
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Cerretani, Colin; Kelkile, Esayas; Landry, Alexandra – Chemical Engineering Education, 2017
We discuss the successful creation and implementation of a biotechnology track within the chemical engineering unit operations course. The track focuses on engineering principles relevant to brewing. Following laboratory modules investigating heat transfer processes and yeast fermentation kinetics, student groups design and implement a project to…
Descriptors: Chemical Engineering, Laboratory Experiments, Biotechnology, Kinetics
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Armstrong, Matthew; White, Joshua P.; Hudgins, Jesse W.; Bull, Geoffrey R.; James, Corey M.; Riegner, Dawn E.; Miller, April D.; Biaglow, Andrew – Chemical Engineering Education, 2019
The Kicking Mule Brewing Co. at West Point enables members of our chemical engineering club, students, and beer enthusiasts alike to acquire chemical engineering acumen, knowledge, and skills by developing a tangible product. Through a rigorous on-site brewing process with subject matter experts, our goal is enhancement of student chemical…
Descriptors: Chemical Engineering, Science Process Skills, Skill Development, Hands on Science
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Finberg, Ethan Abraham; Griffin, David Michael; Shiflett, Mark Brandon – Chemical Engineering Education, 2020
A Unit Operations Laboratory (UOL) is fundamental to undergraduate chemical engineering education. This article discusses a new course structure for the University of Kansas UOL and details for three new experiments covering the fundamentals of vapor-liquid equilibrium, fluid mechanics, and kinetics. Students apply knowledge from these courses as…
Descriptors: Chemical Engineering, Science Laboratories, College Science, Science Instruction
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McIver, Keith; Merrill, Thomas; Farrell, Stephanie – Chemical Engineering Education, 2017
A commercial hollow fiber blood oxygenation laboratory experiment was used to introduce lower level engineering students to mass balances in a two-phase system. Using measured values of concentration and flow rate, students calculated the rate of mass transfer from the gas phase and into the liquid phase, and compared the two values to determine…
Descriptors: Scientific Concepts, Scientific Methodology, Scientific Principles, Laboratory Experiments
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Schultz, Kelly M.; Snyder, Mark A. – Chemical Engineering Education, 2019
A hands-on educational module was created to illustrate the scope of chemical engineering. Students are taught fundamental concepts that they integrate in a laboratory experience designing and fabricating a 'plant-on-a-chip' microfluidic device capable of continuous processing of reactive flows. Students gain insight into chemical engineering…
Descriptors: Chemical Engineering, STEM Education, Outreach Programs, Student Recruitment
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Cybulskis, Viktor J.; Smeltz, Andrew D.; Zvinevich, Yury; Gounder, Rajamani; Delgass, W. Nicholas; Ribeiro, Fabio H. – Chemical Engineering Education, 2016
Understanding catalytic chemistry, collecting and interpreting kinetic data, and operating chemical reactors are critical skills for chemical engineers. This laboratory experiment provides students with a hands-on supplement to a course in chemical kinetics and reaction engineering. The oxidation of methane with a palladium catalyst supported on…
Descriptors: Kinetics, Fundamental Concepts, Chemical Engineering, Laboratory Experiments
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Louhi­-Kultanen, Marjatta; Han, Bing; Nurkka, Annikka; Hatakka, Henry – Chemical Engineering Education, 2015
The present work describes an undergraduate laboratory exercise for improving understanding of fundamental phenomena in cooling crystallization. The exercise of nucleation and crystal growth kinetics supports learning of theories and models presented in lectures and calculation exercises. The teaching methodology incorporates precepts the…
Descriptors: Chemical Engineering, Science Laboratories, Scientific Concepts, Laboratory Experiments
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Young, Brent R.; van der Lee, James H.; Svrcek, William Y. – Chemical Engineering Education, 2006
Experience in using a user-friendly software, Mathcad, in the undergraduate chemical reaction engineering course is discussed. Example problems considered for illustration deal with simultaneous solution of linear algebraic equations (kinetic parameter estimation), nonlinear algebraic equations (equilibrium calculations for multiple reactions and…
Descriptors: Laboratory Experiments, Computer Software, Undergraduate Students, Problem Solving
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Weller, S. W. – Chemical Engineering Education, 1976
Describes an undergraduate kinetics experiment, including advantages of this particular system, sources of error, and expected results. (MLH)
Descriptors: Chemistry, College Science, Engineering, Engineering Education
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Weiss, Brian; Castaldi, Marco J. – Chemical Engineering Education, 2006
A reactor to convert waste rubber tires to useful products such as CO and H2, was investigated in a university undergraduate design project. The student worked individually with mentorship from a faculty professor who aided the student with professional critique. The student was able to research the background of the field and conceive of a novel…
Descriptors: Chemical Engineering, Wastes, Recycling, Undergraduate Study
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Andres, Ronald P.; Hile, Lloyd R. – Chemical Engineering Education, 1976
Describes an experiment that utilizes spectrophotometric equipment to analyze the kinetics of a homogeneous reaction in batch. (MLH)
Descriptors: Chemistry, College Science, Engineering Education, Higher Education
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Haji, Shaker; Erkey, Can – Chemical Engineering Education, 2005
A reaction kinetics experiment for the chemical engineering undergraduate laboratory course was developed in which in-situ Fourier Transfer Infrared spectroscopy was used to measure reactant and product concentrations. The kinetics of the hydrolysis of acetic anhydride was determined by experiments carried out in a batch reactor. The results…
Descriptors: Kinetics, Spectroscopy, Undergraduate Students, Laboratory Experiments
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Kwon, K. C.; And Others – Chemical Engineering Education, 1987
Provides an overview of an experiment on reaction kinetics of the anthracene-hydrogen system. Includes a description of the laboratory equipment, procedures, and data analysis requirements. Points out the advantages of the recommended technique. (ML)
Descriptors: Chemical Engineering, Chemical Reactions, College Science, Engineering Education