Hydro Starch Nanoparticles Precip Spinning Disc Reactor

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Nanomaterials 2020, 10, 2202 16 of 16 50. Chen, X.; Smith, N.M.; Iyer, K.S.; Raston, C.L. Controlling nanomaterial synthesis, chemical reactions and self assembly in dynamic thin films. Chem. Soc. Rev. 2014, 43, 1387–1399. [CrossRef] [PubMed] 51. Oxley, P.; Brechtelsbauer, C.; Ricard, F.; Lewis, N.; Ramshaw, C. Evaluation of spinning disk reactor technology for the manufacture of pharmaceuticals. Ind. Eng. Chem. Res. 2000, 39, 2175–2182. [CrossRef] 52. Khan, W.H.; Rathod, V.K. Process intensification approach for preparation of curcumin nanoparticles via solvent–nonsolvent nanoprecipitation using spinning disc reactor. Chem. Eng. Process. Process Intensif. 2014, 80, 1–10. [CrossRef] 53. Burns, J.R.; Jachuck, R.J.J. Determination of liquid–solid mass transfer coefficients for a spinning disc reactor using a limiting current technique. Int. J. Heat Mass Transf. 2005, 48, 2540–2547. [CrossRef] 54. Boodhoo, K.V.K.; Al-Hengari, S.R. Micromixing Characteristics in a Small-Scale Spinning Disk Reactor. Chem. Eng. Technol. 2012, 35, 1229–1237. [CrossRef] 55. Boodhoo, K. Spinning disc reactor for green processing and synthesis. In Process Intensification for Green Chemistry; John Wiley & Sons, Ltd.: Chichester, UK, 2013; pp. 59–90. [CrossRef] 56. Jacobsen, N.C.; Hinrichsen, O. Micromixing Efficiency of a Spinning Disk Reactor. Ind. Eng. Chem. Res. 2012, 51, 11643–11652. [CrossRef] 57. Mohammadi, S.; Boodhoo, K.V.K. Online conductivity measurement of residence time distribution of thin film flow in the spinning disc reactor. Chem. Eng. J. 2012, 207, 885–894. [CrossRef] 58. Boodhoo, K.V.K.; Jachuck, R.J. Process intensification: Spinning disk reactor for styrene polymerisation. Appl. Therm. Eng. 2000, 20, 1127–1146. [CrossRef] 59. Emslie, A.G.; Bonner, F.T.; Peck, L.G. Flow of a Viscous Liquid on a Rotating Disk. J. Appl. Phys. 1958, 29, 858–862. [CrossRef] 60. Boodhoo, K. Process Intensification: Spinning Disc Reactor for the Polymerisation of Styrene. Ph.D. Thesis, Newcastle University, Newcastle upon Tyne, UK, 1999. 61. Shevchuk, I.V. Modelling of Convective Heat and Mass Transfer in Rotating Flows; Springer International Publishing: Cham, Switzerland, 2015; pp. 1–235. [CrossRef] 62. Ozar, B.; Cetegen, B.M.; Faghri, A. Experiments on the flow of a thin liquid film over a horizontal stationary and rotating disk surface. Exp. Fluids 2003, 34, 556–565. [CrossRef] 63. Saw, C.B.; Anderson, G.K.; Howarth, C.R.; Porter, J.E. Application of the spinning disc reactor as an ozone contractor. In Proceedings of the Industrial Waste Conference, Purdue University, West Lafayette, IN, USA, 14–16 May 1985; pp. 813–823. 64. Khan, J.R. Heat Transfer on a Rotating Surface with and Without Phase Change. Ph.D. Thesis, Newcastle University, Newcastle Upon Tyne, UK, 1986. 65. Mohammadi, S. Nano-TiO2 Precipitation in SDRs: Experimental and Modelling Studies. Ph.D. Thesis, Newcastle University, Newcastle Upon Tyne, UK, 2014. 66. Basu, S.; Cetegen, B.M. Analysis of hydrodynamics and heat transfer in a thin liquid film flowing over a rotating disk by the integral method. J. Heat Transf. 2006, 128, 217–225. [CrossRef] 67. Leneweit, G.; Roesner, K.G.; Koehler, R. Surface instabilities of thin liquid film flow on a rotating disk. Exp. Fluids 1999, 26, 75–85. [CrossRef] 68. Scheichl, B.; Kluwick, A. Laminar spread of a circular liquid jet impinging axially on a rotating disc. J. Fluid Mech. 2019, 864, 449–489. [CrossRef] 69. Rauscher, J.W.; Kelly, R.E.; Cole, J.D. An Asymptotic Solution for the Laminar Flow of a Thin Film on a Rotating Disk. J. Appl. Mech. 1973, 40, 43–47. [CrossRef] 70. Prieling, D. Computational Investigation of Liquid Film Flow on Rotating Disks. Master’s Thesis, Graz University of Technology, Graz, Austria, 2013. 71. Allen, M.P. The problem of multicollinearity. In Understanding Regression Analysis; Springer: Boston, MA, USA, 1997; pp. 176–180. Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

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