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Liu Kun's personal profile
He presided over five national, provincial, municipal and university scientific research projects and participated in the National Natural Science Foundation 1 project.

Mainly engaged in teaching and scientific research of chemical engineering and technology. The main courses that can be offered are: separation engineering and transfer principle for master students, chemical engineering principle for undergraduate students, chemical engineering foundation and process control foundation.

Main awards: won the school-level excellent teaching achievement award twice, won the school-level excellent teaching quality award six times, and won the "good teacher in my heart" selected by students.

He published more than 20 academic papers, of which 12 was included by SCI, EI and ISTP. The representative academic papers in recent years are as follows:

Drying characteristics of cassava starch residue in rotary flash dryer (Chemical Engineering, 2003, (5), including EI, PP 17- 19)

Critical Moisture and Drying Curve of Cassava Distiller's Grains (Chemical Engineering, 1999(3), EI, PP2 1-23)

Discussion on energy-saving method of thin-layer drying of aluminum hydroxide (Progress of Chemical Industry, 2003, 22(8), pp. 854-857)

New progress of pervaporation technology in liquid separation (Modern Chemical Industry, 2005 (7), 18-2 1, included in EI)

Study on preparation of single-cell protein feed from cassava residue by solid-state fermentation with industrial glucoamylase (journal of chemical engineering of chinese universities, 2007, (4), EI included).

Adsorption properties of PEBA membrane, a component of butyl acetate esterification reaction system (Journal of University Chemistry, 2009, (1), published in EI).

Study on swelling and pervaporation behavior of PEBA membrane (Journal of University Chemistry, 20 10, (1), EI).

Study on swelling and pervaporation properties of PEBA/PVDF composite membrane (Membrane Science and Technology, 20 10, (1))

Research direction:

Membrane separation technology; Original technology of producing single cell protein feed by fermentation of agricultural and sideline products waste; Drying technology; Extracting effective components from natural materials; Comprehensive utilization of minerals.