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Professor Sam Kingman was awarded a personal chair at Nottingham in 2006, which at the time made him one of the youngest Professors in the UK. He is also the Director of the National Centre for Industrial Microwave Processing (NCIMP) which is one of the largest activities of its type in the world. In addition to unique dielectric metrology and microwave processing facilities, the Centre currently supports staff and students who are working on a wide range of highly multi-disciplinary research, development and commercialisation projects in the field of industrial microwave processing. In the past 8 years, Professor Kingman has published over 70 journal papers and he holds a number of patents in the field of industrial microwave processing. In 2008, the work of the NCIMP was recognised through the award of The Engineer Technology and Innovation Prize for Environmental Technology and the Environmental Prize of the Society of Petroleum Engineers. Professor Kingman has presented numerous international invited and keynote lectures including a recent Friday Evening Discourse at The Royal Institution of Great Britain. In 2011 he was the recipient of the Bielby medal and Prize award by the Society of Chemical Industry, the Royal Society of Chemistry and the Institute of Materials, Minerals and Mining. He is currently Associate Dean for Research in the Faculty of Engineering at the University of Nottingham.

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BUTTRESS, A. J., BINNER, E., YI, C., PALADE, P., ROBINSON, J. P. and KINGMAN, S. W., 2016. Development and evaluation of a continuous microwave processing system for hydrocarbon removal from solids: Chemical Engineering Journal Chemical Engineering Journal. 283, 215-222 ZHAO, H., YANG, G., GAO, X., PANG, C. H., KINGMAN, S. W. and WU, T., 2016. Hg0 Capture over CoMoS/γ-Al2O3 with MoS2 Nanosheets at Low Temperatures: Environmental Science and Technology Environmental Science and Technology. 50(2), 1056-1064 LAYBOURN, A., KATRIB, J., PALADE, P. A., EASUN, T. L., CHAMPNESS, N. R., SCHR?DER, M. and KINGMAN, S. W., 2016. Understanding the electromagnetic interaction of metal organic framework reactants in aqueous solution at microwave frequencies: Physical Chemistry Chemical Physics Physical Chemistry Chemical Physics. 18(7), 5419-5431 UDOUDO, O., FOLORUNSO, O., DODDS, C., KINGMAN, S. and URE, A., 2015. Understanding the performance of a pilot vermiculite exfoliation system through process mineralogy: Minerals Engineering Minerals Engineering. ROBINSON, J., DODDS, C., STAVRINIDES, A., KINGMAN, S., KATRIB, J., WU, Z., MEDRANO, J. and OVEREND, R., 2015. Microwave pyrolysis of biomass: Control of process parameters for high pyrolysis oil yields and enhanced oil quality: Energy and Fuels Energy and Fuels. 29(3), 1701-1709 ORLA WILLIAMS, CAROL EASTWICK, SAM KINGMAN, DONALD GIDDINGS, STEPHEN LORMOR and EDWARD LESTER, 2015. Investigation into the applicability of Bond Work Index (BWI) and Hardgrove Grindability Index (HGI) tests for several biomasses compared to Colombian La Loma coal Fuel. 158, 379–387 BUTTRESS, A.J, JONES, D.A, DODDS, C., DIMITRAKIS, G, CAMBELL, C.J, DAWSON, A. and KINGMAN, S.W., 2015. Understanding the scabbling of concrete using microwave energy Cement and Concrete Research. 75, 75-90 BATCHELOR, A. R., JONES, D. A., PLINT, S. and KINGMAN, S. W., 2015. Deriving the ideal ore texture for microwave treatment of metalliferous ores: Minerals Engineering Minerals Engineering. 84, 116-129 KATRIB, J., FOLORUNSO, O., DODDS, C., DIMITRAKIS, G. and KINGMAN, S. W., 2015. Improving the design of industrial microwave processing systems through prediction of the dielectric properties of complex multi-layered materials: Journal of Materials Science Journal of Materials Science. 50(23), 7591-7599 JOHN, R. S., BATCHELOR, A. R., IVANOV, D., UDOUDO, O. B., JONES, D. A., DODDS, C. and KINGMAN, S. W., 2015. Understanding microwave induced sorting of porphyry copper ores: Minerals Engineering Minerals Engineering. 84, 77-87 BINNER, E. R., ROBINSON, J. P., SILVESTER, S. A., KINGMAN, S. W. and LESTER, E. H., 2014. Investigation into the mechanisms by which microwave heating enhances separation of water-in-oil emulsions FUEL. 116, 516-521 KITCHEN, HELEN J., VALLANCE, SIMON K., KENNEDY, JENNIFER L., TAPIA-RUIZ, NURIA, CARASSITI, LUCIA, HARRISON, ANDREW, WHITTAKER, A. GAVIN, DRYSDALE, TIMOTHY D., KINGMAN, SAMUEL W. and GREGORY, DUNCAN H., 2014. Modern Microwave Methods in Solid-State Inorganic Materials Chemistry: From Fundamentals to Manufacturing CHEMICAL REVIEWS. 114(2), 1170-1206 NGUYEN, NAM T., GREENHALGH, EDWARD, KAMARUDDIN, MOHD J., EL HARFI, JAOUAD, CARMICHAEL, KIM, DIMITRAKIS, GEORGIOS, KINGMAN, SAMUEL W., ROBINSON, JOHN P. and IRVINE, DEREK J., 2014. Understanding the acceleration in the ring-opening of lactones delivered by microwave heating TETRAHEDRON. 70(4), 996-1003 KAMARUDDIN, MOHD J., NGUYEN, NAM T., DIMITRAKIS, GEORGIOS A., EL HARFI, JAOUAD, BINNER, ELEANOR R., KINGMAN, SAM W., LESTER, EDWARD, ROBINSON, JOHN P. and IRVINE, DEREK J., 2014. Continuous and direct 'in situ' reaction monitoring of chemical reactions via dielectric property measurement: controlled polymerisation RSC ADVANCES. 4(11), 5709-5717 BINNER, E., MEDIERO-MUNOYERRO, M., HUDDLE, T., KINGMAN, S., DODDS, C., DIMITRAKIS, G., ROBINSON, J. and LESTER, E., 2014. Factors affecting the microwave coking of coals and the implications on microwave cavity design: Fuel Processing Technology Fuel Processing Technology. 125, 8-17 ADLINGTON, K., MCSWEENEY, R., DIMITRAKIS, G., KINGMAN, S. W., ROBINSON, J. P. and IRVINE, D. J., 2014. Enhanced 'in situ' catalysis via microwave selective heating: Catalytic chain transfer polymerisation: RSC Advances RSC Advances. 4(31), 16172-16180 ROBINSON, J., BINNER, E., SAEID, A., AL-HARAHSHEH, M. and KINGMAN, S., 2014. Microwave processing of Oil Sands and contribution of clay minerals: Fuel Fuel. 135, 153-161 XU, J., 2014. Microwave Pretreatment. In: Pretreatment of Biomass: Processes and Technologies 157-172 BINNER, E.R., ROBINSON, J.P., KINGMAN, S.W., LESTER, E.H., AZZOPARDI, B.J., DIMITRAKIS, G. and BRIGGS, J., 2013. Separation of oil/water emulsions in continuous flow using microwave heating Energy and Fuels. 27(6), 3173-3178 ADLINGTON, K., JONES, G.J., EL HARFI, J., DIMITRAKIS, G., SMITH, A., KINGMAN, S.W., ROBINSON, J.P. and IRVINE, D.J., 2013. Mechanistic investigation into the accelerated synthesis of methacrylate oligomers via the application of catalytic chain transfer polymerization and selective microwave heating Macromolecules. 46(10), 3922-3930 ZHAO, H., WU, T., HE, J., KINGMAN, S., SHI, K., SHEN, D. and ZHANG, Y., 2013. Simultaneous removal of SOx and NOx in flue gas at power stations over a Cu/Na-13X zeolite catalyst Advanced Materials Research. 650, 125-129 AL-OTOOM, A., AL-HARAHSHEH, M., ALLAWZI, M., KINGMAN, S., ROBINSON, J., AL-HARAHSHEH, A. and SAEID, A., 2013. Physical and thermal properties of Jordanian tar sand Fuel Processing Technology. 106, 174-180 CHANG, H., DIMITRAKIS, G., XU, F., YI, C., KINGMAN, S. and ZHU, Y., 2013. Microwave dielectric properties of inorganic fullerene-like tungsten disulfide nanoparticles Chemical Physics Letters. 555, 159-163 A. AL-OTOOM, M. AL-HARAHSHEH, M. ALLAWZI, S. KINGMAN, J. ROBINSON and A. AL-HARAHSHEH, 2012. Physical and thermal properties of Jordanian tar sand Fuel Processing Technology. EL HARFI, J., KINGMAN, S.W., DIMITRAKIS, G., ROBINSON, J.P. and IRVINE, D.J., 2012. Dielectric properties of free radical initiators-investigation of thermal decomposition products Industrial and Engineering Chemistry Research. 51(49), 15811-15820

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