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Márquez, Itzel; Sáez, A. Eduardo; Ogden, Kimberly L.; Achilli, Andrea – Chemical Engineering Education, 2022
The lack in process intensification (PI) training may be limiting processes to achieve sustainability goals. This project developed a hands-on course on intensified membrane processes to address knowledge gaps in PI. Bench-scale activities introduced concepts of membrane separation, operating engineering-scale modules provided a near-industrial…
Descriptors: Hands on Science, Water Quality, Sustainability, Teaching Methods
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Gomez, Elaine; Paul, Melissa; Como, Charles; Barat, Robert – Chemical Engineering Education, 2014
This experiment and analysis offer an effective experience in greenhouse gas reduction. Ammoniated water is flowed counter-current to a simulated flue gas of air and CO2 in a packed column. The gaseous CO2 concentrations are measured with an on-line, non- dispersive, infrared analyzer. Column operating parameters include total gas flux, dissolved…
Descriptors: Science Experiments, College Science, Science Laboratories, Undergraduate Study
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Condoret, Jean-Stephane – Chemical Engineering Education, 2012
The problem of maintaining hygrothermal comfort in a house is addressed using the chemical engineer's toolbox. A simple dynamic modelling proved to give a good description of the humidification of the house in winter, using a domestic humidifier. Parameters of the model were identified from a simple experiment. Surprising results, especially…
Descriptors: Science Experiments, Models, Water, Measurement Equipment
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Rosen, Edward M. – Chemical Engineering Education, 2008
Energy use in Iceland (population 283,000) is higher per capita than in any other country in the world. Some 53.2% of the energy is geothermal, which supplies electricity as well as heated water to swimming pools, fish farms, snow melting, greenhouses, and space heating. The Nesjavellir Power Plant is a major geothermal facility, supplying both…
Descriptors: Energy Management, Science Education, Foreign Countries, Energy
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Caceres, L.; And Others – Chemical Engineering Education, 1992
Proposes that inclusion of waste water treatment subjects within the chemical engineering curriculum can provide students with direct access to environmental issues from both a biotechnological and an ethical perspective. The descriptive details of water recycling at a copper plant and waste water stabilization ponds exemplify this approach from…
Descriptors: Chemical Engineering, Conservation (Environment), Course Content, Course Descriptions
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Sharp, David; Zhang, Mingqian; Xu, Zhenghe; Ryan, Jim; Wanke, Sieghard; Afacan, Artin – Chemical Engineering Education, 2008
A simple mixing of a hot- and cold-water stream at a T-junction was investigated. The main objective was to use mass and energy balance equations to predict mass low rates and the temperature of the mixed stream after the T-junction, and then compare these with the measured values. Furthermore, the thermocouple location after the T-junction and…
Descriptors: Earth Science, Water, Heat, Science Instruction
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Noble, Richard D. – Chemical Engineering Education, 1983
Presents an undergraduate laboratory experiment in which a solar collector is used to heat water for domestic use. The working fluid is moved by natural convection so no pumps are required. Experimental apparatus is simple in design and operation so that data can be collected quickly and easily. (Author/JN)
Descriptors: Chemical Engineering, Engineering Education, Heating, Higher Education
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Daniel E. Rivera – Chemical Engineering Education, 2005
From 1992 through 2003 the Chemical Engineering program at Arizona State offered an integrated series of core courses that taught students how conservation and accounting principles can be applied to describe engineering phenomena across disciplines. A brine-water mixing tank experiment was introduced in the third course in the series (ECE 394C:…
Descriptors: Chemical Engineering, Engineering Education, Scientific Research, Capstone Experiences
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Debelak, Kenneth A.; Roth, John A. – Chemical Engineering Education, 1982
Reviews a one-semester senior plant design/laboratory course, focusing on course structure, student projects, laboratory assignments, and course evaluation. Includes discussion of laboratory exercises related to process waste water and sludge. (SK)
Descriptors: Chemical Industry, College Science, Course Descriptions, Engineering Education