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Over the years teaching responsibilities include a broad range of materials science and chemical engineering topics including process design, unit operations, reaction kinetics and particulate processing. Research activities include colloidal particle processing, precipitation, crystallization inhibition, thin film sensors and ceramics processing. He was a member of a DOE/OIT team that produced a CFD model of crystallization systems. He has published one book on Ceramic Powder Processing, >180 articles on particle processing and has 4 patents and 9 patent applications. His recent work is on high-speed imaging, image analysis and laser diagnostics of flames and optical analysis of soot and ash particles produced in flames as well as their deposits. He has been an engineering consultant for many of the largest companies in the world. While many of these consulting jobs have been confidential, some that were not have included the design of the aerosol reactor for the largest chloride-based producer of titanium dioxide in China, the design of five chloride-based high purity poly silicon plants three in China, one in South Korea and one in Malaysia (for a Japanese firm) all of which are operating successfully, patent infringement work for drug companies and microelectronics companies, work on the fundamentals of chemical mechanical polishing for a microelectronics company, process engineering work for a solar cell company and a carbon nanotubes company. In many of these processes he has been responsible for fluid bed reactor design, aerosol reactor design, cyclone design, heat exchanger design, distillation column design and absorber design. He brings to his class room relevant practical experience of the industrial world.
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