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个人简介

After completing his PhD in 1977, Professor Stan Kolaczkowski worked for seven years for Esso Petroleum Co Ltd, in a range of technical and managerial positions on environmentally related themes. In 1984 he joined the University of Bath as a lecturer, where he developed research interests in the field of Chemical Reaction Engineering, and in particular, in applications that relate to the solution of environmental problems. In 1997, Stan was awarded a Personal Chair and became a full Professor in Chemical Engineering. From 1997 to 2003, he was Head of the Department of Chemical Engineering, and led the Department through a challenging period that culminated in the construction of a new building. Since 1984, Stan has published more than 90 papers and been involved in more than 80 grants. He has supervised 22 PhD students, who have all completed and submitted their PhDs successfully. Since 2003, Stan has been the Director of the Catalysis and Reaction Engineering Group which consists of four academic members of staff and postgraduate students, research officers, and visitors. This is now one of the largest research groups in Chemical Reaction Engineering in the UK.

研究领域

Centre for Advanced Separations Engineering

Stan's main interest is in Chemical Reaction Engineering, in particular applications that have environmental benefits. This work involves the formation of mathematical models of chemical reactors, combined with associated experimental work - from laboratory bench-top to pilot-plant scale.

近期论文

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Kolaczkowski, S., Awdry, S., Smith, T., Thomas, D., Torkuhl, L. and Kolvenbach, R., 2016. Potential for metal foams to act as structured catalyst supports in fixed-bed reactors. Catalysis Today, 273, pp. 221-233. Le, C. D. and Kolaczkowski, S. T., 2015. Steam gasification of a refuse derived char:reactivity and kinetics. Chemical Engineering Research & Design, 102, pp. 389-398. Kolaczkowski, S., Awdry, S., Le, C., Nuckols, M. L., Smith, T. and Thomas, D., 2015. Removal of CO2 from a submersible atmosphere by scrubbing with water:Experiments in a single column. Chemical Engineering Research & Design, 100, 157 - 169. Le, C. D., Kolaczkowski, S. T. and McClymont, D. W. J., 2015. Using quadrupole mass spectrometry for on-line gas analysis - Gasification of biomass and refuse derived fuel. Fuel, 139, pp. 337-345. Al Badran, F., Awdry, S. and Kolaczkowski, S.T., 2013. Development of a continuous flow reactor for pharmaceuticals using catalytic monoliths:Pt/C selective oxidation of benzyl alcohol. Catalysis Today, 216, pp. 229-239. Robinson, K., Ye, S., Yap, Y. and Kolaczkowski, S., 2013. Application of a methodology to assess the performance of a full-scale diesel oxidation catalyst during cold and hot start NEDC drive cycles. Chemical Engineering Research & Design, 91 (7), pp. 1292-1306. Jod?owski, P.J., Go?a?b, R., Kryca, J., Ko?odziej, A., Iwaniszyn, M., Kolaczkowski, S.T. and ?ojewska, J., 2013. A comparison between monolithic and wire gauze structured catalytic reactors for CH4 and CO removal from biogas-fuelled engine exhaust. Topics in Catalysis, 56 (1-8), pp. 390-396. Ochońska, J., McClymont, D., Jod?owski, P.J., Knapik, A., Gil, B., Makowski, W., ?asocha, W., Ko?odziej, A., Kolaczkowski, S. T. and ?ojewska, J., 2012. Copper exchanged ultrastable zeolite Y - A catalyst for NH3-SCR of NOx from stationary biogas engines. Catalysis Today, 191 (1), pp. 6-11. Kolaczkowski, S., Ye, S., Yap, Y., Robinson, K. and Lukyanov, D., 2012. Transient experiments on a full-scale DOC - methodology and techniques to support modelling. Catalysis Today, 188 (1), pp. 53-61. Ye, S., Yap, Y. H., Kolaczkowski, S. T., Robinson, K. and Lukyanov, D., 2012. Catalyst ‘light-off’ experiments on a diesel oxidation catalyst connected to a diesel engine - methodology and techniques. Chemical Engineering Research & Design, 90 (6), pp. 834-845. Lamb, G. W., Al Badran, F. A., Williams, J. M. J. and Kolaczkowski, S. T., 2010. Production of pharmaceuticals: amines from alcohols in a continuous flow fixed bed catalytic reactor. Chemical Engineering Research & Design, 88 (12), pp. 1533-1540. Kolaczkowski, S. T., Asli, U. A. and Davidson, M. G., 2009. A new heterogeneous ZnL2 catalyst on a structured support for biodiesel production. Catalysis Today, 147 (Supplement), S220-S224. Crittenden, B. D., Kolaczkowski, S. T., Takemoto, T. and Phillips, D. Z., 2009. Crude Oil Fouling in a Pilot-Scale Parallel Tube Apparatus. Heat Transfer Engineering, 30 (10-11), pp. 777-785. Kolaczkowski, S. T., Chao, R., Awdry, S. and Smith, A., 2007. Application of a CFD code (FLUENT) to formulate models of catalytic gas phase reactions in porous catalyst pellets. Chemical Engineering Research & Design, 85 (A11), pp. 1539-1552. Nguyen, L. H., Vazhnova, T., Kolaczkowski, S. T. and Lukyanov, D. B., 2006. Combined experimental and kinetic modelling studies of the pathways of propane and n-butane aromatization over H-ZSM-5 catalyst. Chemical Engineering Science, 61 (17), pp. 5881-5894. Kolaczkowski, S. T. and Kim, S., 2006. Novel alumina 'KK Leaf Structures' as catalyst supports. Catalysis Today, 117 (4), pp. 554-558. Watt-Smith, M. J., Kolaczkowski, S. T., Rigby, S. P. and Chudek, J. A., 2006. Prediction of gas sorption kinetics for porous media using MRI. AIChE Journal, 52 (9), pp. 3278-3289. Kolaczkowski, S., 2006. Treatment of volatile organic carbon (VOC) emissions from stationary sources: catalytic oxidation of the gaseous phase. Chemical Industries, 110 (Structured Catalysts), pp. 147-170. Plucinski, P. K., Bavykin, D. V., Kolaczkowski, S. T. and Lapkin, A. A., 2005. Application of a structured multifunctional reactor for the oxidation of a liquid organic feedstock. Catalysis Today, 105 (3-4), pp. 479-483. Plucinski, P., Bavykin, D., Kolaczkowski, S. and Lapkin, A., 2005. Liquid phase oxidation of organic feedstock in a compact multichannel reactor. Industrial & Engineering Chemistry Research, 44, pp. 9683-9690.

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