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Solids handling for intensified process technology

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Solids handling for intensified process technology ( solids-handling-intensified-process-technology )

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IbD PU Deliverable 3.1 Ma, X., Birnie, M., Riffat, S.B. and Gillott, M. (2008) 'Experimental investigation of a side- emitting optical fibre mop fan for air cleaning', International Journal of Low-Carbon Technologies, 3(2), pp. 126-136. Macpherson, S.A., Iveson, S.M. and Galvin, K.P. (2010) 'Density based separations in the Reflux Classifier with an air–sand dense–medium and vibration', Minerals Engineering, 23(2), pp. 74-82. Maejima, T., Kubo, M., Osawa, T., Nakajima, K. and Kobayashi, M. (1998) 'Application of tumbling melt granulation (TMG) method to prepare controlled-release fine granules', Chem Pharm Bull (Tokyo), 46(3), pp. 534-6. Mahajan, A.J. and Kirwan, D.J. (1996) 'Micromixing effects in a two-impinging-jets precipitator', AIChE Journal, 42(7), pp. 1801-1814. Mandal, T.K. (1995) 'Evaluation of Microwave Drying for Pharmaceutical Granulations', Drug Development and Industrial Pharmacy, 21(14), pp. 1683-1688. Masngut, N., Harvey, A.P. and Ikwebe, J. (2010) 'Potential uses of oscillatory baffled reactors for biofuel production', Biofuel, 1(4), pp. 605-619. MatsuboCorp. (2009) Elbow-Jet Air Classifier/Simultaneous Multi-product Air Classifier. Available at: http://www.matsubo.co.jp/english/product/division/cat04/cat04_03/file064.html (Accessed: 26-02-2016). McCarthy, E.D., Dunk, W.A.E. and Boodhoo, K.V.K. (2007) 'Application of an intensified narrow channel reactor to the aqueous phase precipitation of barium sulphate', Journal of Colloid and Interface Science, 305(1), pp. 72-87. McDonough, J.R., Phan, A.N. and Harvey, A.P. (2015) 'Rapid process development using oscillatory baffled mesoreactors – A state-of-the-art review', Chemical Engineering Journal, 265, pp. 110-121. MCKO (2010) Facilities for Micronization. Available at: http://www.mcko.de/micronization- facilities.shtml (Accessed: 25 January). McMinn, W.A.M., Farrell, G. and Magee, T.R.A. (2007) 'Prediction of Microwave Drying Behavior of Pharmaceutical Powders Using Thin-Layer Models', Drying Technology, 25(9), pp. 1551-1569. 106

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