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Clark, William; Lei, Melinda; Kirichenko, Erika; Dickerson, Kellie; Prytko, Robert – Chemical Engineering Education, 2017
Exothermic reactions can present safety hazards and there is a recognized need for reaction safety education at the undergraduate level. We present an experiment that illustrates the pitfall of direct scale-up of an exothermic reaction that can lead to thermal runaway. The iodide-catalyzed hydrogen peroxide decomposition reaction yields…
Descriptors: Undergraduate Study, Hazardous Materials, Laboratory Safety, Safety Education
Orbey, Nese; De Jesús Vega, Marisel; Zalluhoglu, Fulya Sudur – Chemical Engineering Education, 2017
A general tank-draining problem was used as an experimental project in two undergraduate-level chemical engineering courses. The project aimed to illustrate the critical nature of experimentation in addition to use of mass and energy conservation principles in developing mathematical models that correctly describes a system. The students designed…
Descriptors: Science Instruction, Scientific Concepts, Chemistry, College Science
Hart, Peter W.; Rudie, Alan W. – Chemical Engineering Education, 2011
Within the past 15 years, three North American pulp mills experienced catastrophic equipment failures while using 50 wt% hydrogen peroxide. In two cases, explosions occurred when normal pulp flow was interrupted due to other process problems. To understand the accidents, a kinetic model of alkali-catalyzed decomposition of peroxide was developed.…
Descriptors: Accidents, Mechanics (Physics), Chemistry, Chemical Engineering
Pety, Stephen J.; Lu, Hang; Thio, Yonathan S. – Chemical Engineering Education, 2011
This paper describes a student laboratory experiment to determine the molecular weight of a polymer sample by measuring the viscosity of dilute polymer solutions in a PDMS microfluidic viscometer. Sample data are given for aqueous solutions of poly(ethylene oxide) (PEO). A demonstration of shear thinning behavior using the microviscometer is…
Descriptors: Plastics, Undergraduate Students, Chemistry, Laboratory Experiments
Ashbaugh, Henry S. – Chemical Engineering Education, 2010
Successful teaching of the Second Law of Thermodynamics suffers from limited simple examples linking equilibrium to entropy maximization. I describe a thought experiment connecting entropy to a lottery that mixes marbles amongst a collection of urns. This mixing obeys diffusion-like dynamics. Equilibrium is achieved when the marble distribution is…
Descriptors: Thermodynamics, Scientific Concepts, Science Instruction, College Science
Ahlstrom, Peter; Aim, Karel; Dohrn, Ralf; Elliott, J. Richard; Jackson, George; Jaubert, Jean-Noel; Macedo, Eugenia A.; Pokki, Juha-Pekka; Reczey, Kati; Victorov, Alexey; Zilnik, Ljudmila Fele; Economou, Ioannis G. – Chemical Engineering Education, 2010
A survey on the teaching of thermodynamics and transport phenomena in chemical engineering curricula in European and US Universities was performed and results are presented here. Overall, 136 universities and colleges responded to the survey, out of which 81 from Europe and 55 from the USA. In most of the institutions responding at least two…
Descriptors: Thermodynamics, Chemistry, Chemical Engineering, Foreign Countries
Norman, James J.; Andrews, Samantha N.; Prausnitz, Mark R. – Chemical Engineering Education, 2011
To introduce students to an application of chemical engineering directly related to human health, we developed an experiment for the unit operations laboratory at Georgia Tech examining diffusion across cadaver skin in the context of transdermal drug delivery. In this laboratory module, students prepare mouse skin samples, set up diffusion cells…
Descriptors: Science Laboratories, Chemical Engineering, Science Instruction, Undergraduate Study
Elliott, J. Richard – Chemical Engineering Education, 2010
The topics of solution thermodynamics, activity coefficients, and complex formation are introduced through computational exercises and sample applications. The presentation is designed to be accessible to freshmen in a chemical engineering computations course. The MOSCED model is simplified to explain complex formation in terms of hydrogen…
Descriptors: Thermodynamics, Chemistry, Chemical Engineering, Scientific Concepts
Luyben, William L.; Tuzla, Kemal – Chemical Engineering Education, 2010
Most chemical engineering undergraduate laboratories have fluid mechanics experiments in which pressure drops through pipes are measured over a range of Reynolds numbers. The standard fluid is liquid water, which is essentially incompressible. Since density is constant, pressure drop does not depend on the pressure in the pipe. In addition, flow…
Descriptors: Chemistry, Measurement Equipment, Science Laboratories, Scientific Concepts
Coutinho, Cecil A.; Mankidy, Bijith D.; Gupta, Vinay K. – Chemical Engineering Education, 2010
Diffusion is a fundamental phenomenon that is vital in many chemical processes such as mass transport in living cells, corrosion, and separations. We describe a simple undergraduate-level experiment based on Weiner's Method to probe diffusion in a ternary aqueous mixture of small molecular-weight molecules. As an illustration, the experiment…
Descriptors: Photography, Chemistry, Scientific Concepts, Lasers
Ricardez-Sandoval, Luis A.; Blankespoor, Wesley; Budman, Hector M. – Chemical Engineering Education, 2010
This paper describes an experiment performed by the fourth year chemical engineering students in the process control laboratory at the University of Waterloo. The objective of this experiment is to test the capabilities of a constrained Model Predictive Controller (MPC) to control the operation of a Double Pipe Heat Exchanger (DPHE) in real time.…
Descriptors: Science Laboratories, Chemical Engineering, Science Experiments, Chemistry
Argoti, A.; Fan, L. T.; Cruz, J.; Chou, S. T. – Chemical Engineering Education, 2008
The stochastic simulation of chemical reactions, specifically, a simple reversible chemical reaction obeying the first-order, i.e., linear, rate law, has been presented by Martinez-Urreaga and his collaborators in this journal. The current contribution is intended to complement and augment their work in two aspects. First, the simple reversible…
Descriptors: Chemistry, Equations (Mathematics), Probability, Science Instruction
Armstrong, Matt; Comitz, Richard L.; Biaglow, Andrew; Lachance, Russ; Sloop, Joseph – Chemical Engineering Education, 2008
A novel approach to the Chemical Engineering curriculum sequence of courses at West Point enabled our students to experience a much more realistic design process, which more closely replicated a real world scenario. Students conduct the synthesis in the organic chemistry lab, then conduct computer modeling of the reaction with ChemCad and…
Descriptors: Organic Chemistry, Chemical Engineering, Science Instruction, Science Laboratories
Pour, Sanaz Barar; Norca, Gregory Benoit; Fradette, Louis; Legros, Robert; Tanguy, Philippe A. – Chemical Engineering Education, 2007
Solid-liquid and liquid-liquid mixing experiments have been developed to provide students with a practical experience on suspension and emulsification processes. The laboratory focuses on the characterization of the process efficiency, specifically the influence of the main operating parameters and the effect of the impeller type. (Contains 2…
Descriptors: Chemical Engineering, Science Laboratories, Science Instruction, Science Experiments

Dukler, A. E. – Chemical Engineering Education, 1977
Discusses the difficulty of predicting wave structure of two phase gas-liquid flow in pipes. (SL)
Descriptors: Chemistry, Mechanics (Physics), Motion, Physical Sciences
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