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Drying Technology
An International Journal
Volume 41, 2023 - Issue 2
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Research Article

Characteristic drying curve behavior of whey and casein micelle proteins via thin-film drying

, , , ORCID Icon & ORCID Icon
Pages 308-321 | Received 07 Feb 2022, Accepted 20 Jun 2022, Published online: 15 Jul 2022

References

  • Jayasundera, M.; Adhikari, B.; Adhikari, R.; Aldred, P. The Effect of Protein Types and Low Molecular Weight Surfactants on Spray Drying of Sugar-Rich Foods. Food Hydrocolloids 2011, 25, 459–469. DOI: 10.1016/j.foodhyd.2010.07.021.
  • Anandharamakrishnan, C.; Gimbun, J.; Stapley, A.; Rielly, C. D. A Study of Particle Histories during Spray Drying Using Computational Fluid Dynamic Simulations. Drying Technol. 2010, 28, 566–576. DOI: 10.1080/07373931003787918.
  • Haggag, Y. A.; Faheem, A. M. Evaluation of Nano Spray Drying as a Method for Drying and Formulation of Therapeutic Peptides and Proteins. Front. Pharmacol. 2015, 6, 140. DOI: 10.3389/fphar.2015.00140.
  • Schuck, P.; Jeantet, R.; Bhandari, B.; Chen, X. D.; Perrone, Í. T.; de Carvalho, A. F.; Fenelon, M.; Kelly, P. Recent Advances in Spray Drying Relevant to the Dairy Industry: A Comprehensive Critical Review. Drying Technol. 2016, 34, 1773–1790. DOI: 10.1080/07373937.2016.1233114.
  • Koç, B.; Sakin-Yılmazer, M.; Kaymak-Ertekin, F.; Balkır, P. Physical Properties of Yoghurt Powder Produced by Spray Drying. J. Food Sci. Technol. 2014, 51, 1377–1383. DOI: 10.1007/s13197-012-0653-8.
  • McSweeney, D. J.; Maidannyk, V.; Montgomery, S.; O’Mahony, J. A.; McCarthy, N. A. The Influence of Composition and Manufacturing Approach on the Physical and Rehydration Properties of Milk Protein Concentrate Powders. Foods 2020, 9, 236. DOI: 10.3390/foods9020236.
  • Carter, B.; Patel, H.; Barbano, D. M.; Drake, M. The Effect of Spray Drying on the Difference in Flavor and Functional Properties of Liquid and Dried Whey Proteins, Milk Proteins, and Micellar Casein Concentrates. J. Dairy Sci. 2018, 101, 3900–3909. DOI: 10.3168/jds.2017-13780.
  • Masum, A.; Huppertz, T.; Chandrapala, J.; Adhikari, B.; Zisu, B. Physicochemical Properties of Spray-Dried Model Infant Milk Formula Powders: Influence of Whey Protein-to-Casein Ratio. Int. Dairy J. 2020, 100, 104565. DOI: 10.1016/j.idairyj.2019.104565.
  • Fyfe, K.; Kravchuk, O.; Nguyen, A.; Deeth, H.; Bhandari, B. Influence of Dryer Type on Surface Characteristics of Milk Powders. Drying Technol. 2011, 29, 758–769. DOI: 10.1080/07373937.2010.538481.
  • Gaiani, C.; Mullet, M.; Arab-Tehrany, E.; Jacquot, M.; Perroud, C.; Renard, A.; Scher, J. Milk Proteins Differentiation and Competitive Adsorption during Spray-Drying. Food Hydrocolloids 2011, 25, 983–990. DOI: 10.1016/j.foodhyd.2010.09.013.
  • Lum, A.; Mansouri, S.; Hapgood, K.; Woo, M. W. Single Droplet Drying of Milk in Air and Superheated Steam: Particle Formation and Wettability. Drying Technol. 2018, 36, 1802–1813. DOI: 10.1080/07373937.2017.1416626.
  • Tran, T.; Jaskulski, M.; Avila-Acevedo, J.; Tsotsas, E. Model Parameters for Single-Droplet Drying of Skim Milk and Its Constituents at Moderate and Elevated Temperatures. Drying Technol. 2017, 35, 444–464. DOI: 10.1080/07373937.2016.1182548.
  • Sadek, C.; Li, H.; Schuck, P.; Fallourd, Y.; Pradeau, N.; Le Floch-Fouéré, C.; Jeantet, R. To What Extent Do Whey and Casein Micelle Proteins Influence the Morphology and Properties of the Resulting Powder? Drying Technol. 2014, 32, 1540–1551. DOI: 10.1080/07373937.2014.915554.
  • Both, E.; Nuzzo, M.; Millqvist-Fureby, A.; Boom, R.; Schutyser, M. Morphology Development during Single Droplet Drying of Mixed Component Formulations and Milk. Food Res. Int. 2018, 109, 448–454. DOI: 10.1016/j.foodres.2018.04.043.
  • Both, E.; Tersteeg, S.; Boom, R.; Schutyser, M. Drying Kinetics and Viscoelastic Properties of Concentrated Thin Films as a Model System for Spray Drying. Colloids Surf, A 2020, 585, 124075. DOI: 10.1016/j.colsurfa.2019.124075.
  • Yu, M.; Le Floch-Fouéré, C.; Pauchard, L.; Boissel, F.; Fu, N.; Chen, X. D.; Saint-Jalmes, A.; Jeantet, R.; Lanotte, L. Skin Layer Stratification in Drying Droplets of Dairy Colloids. Colloids Surf, A 2021, 620, 126560. DOI: 10.1016/j.colsurfa.2021.126560.
  • Sadek, C.; Pauchard, L.; Schuck, P.; Fallourd, Y.; Pradeau, N.; Le Floch-Fouéré, C.; Jeantet, R. Mechanical Properties of Milk Protein Skin Layers after Drying: Understanding the Mechanisms of Particle Formation from Whey Protein Isolate and Native Phosphocaseinate. Food Hydrocolloids 2015, 48, 8–16. DOI: 10.1016/j.foodhyd.2015.01.014.
  • Okuzono, T.; Ozawa, K.; Doi, M. Simple Model of Skin Formation Caused by Solvent Evaporation in Polymer Solutions. Phys. Rev. Lett. 2006, 97, 136103.
  • Sadek, C.; Schuck, P.; Fallourd, Y.; Pradeau, N.; Jeantet, R.; Le Floch-Fouere, C. Buckling and Collapse during Drying of a Single Aqueous Dispersion of Casein Micelle Droplet. Food Hydrocolloids 2016, 52, 161–166. DOI: 10.1016/j.foodhyd.2015.06.016.
  • Schmitz-Schug, I.; Kulozik, U.; Foerst, P. Modeling Spray Drying of Dairy Products–Impact of Drying Kinetics, Reaction Kinetics and Spray Drying Conditions on Lysine Loss. Chem. Eng. Sci. 2016, 141, 315–329. DOI: 10.1016/j.ces.2015.11.008.
  • Paula, R. R.; Vimercati, W. C.; Araújo, CdS.; Macedo, L. L.; Teixeira, L. J. Q.; Saraiva, S. H. Drying Kinetics and Physicochemical Properties of Whey Dried by Foam Mat Drying. J. Food Process. Preserv. 2020, 44, e14796. DOI: 10.1111/jfpp.14796.
  • Gómez-Narváez, F.; Gómez-Narváez, S.; Contreras-Calderón, J.; Builes-Rivera, J.; Pérez-Martínez, A. Design and Construction of a Thin-Film Drying Channel equipment - Modeling the Drying Kinetics of Nanofiltered Whey. J. Food Eng. 2019, 263, 359–365. DOI: 10.1016/j.jfoodeng.2019.07.018.
  • Fu, N.; Woo, M. W.; Chen, X. D. Single Droplet Drying Technique to Study Drying Kinetics Measurement and Particle Functionality: A Review. Drying Technol. 2012, 30, 1771–1785. DOI: 10.1080/07373937.2012.708002.
  • Chen, X. D. The Basics of a Reaction Engineering Approach to Modeling Air-Drying of Small Droplets or Thin-Layer Materials. Drying Technol. 2008, 26, 627–639. DOI: 10.1080/07373930802045908.
  • Langrish, T. A. G.; Kockel, T. K. The Assessment of a Characteristic Drying Curve for Milk Powder for Use in Computational Fluid Dynamics Modelling. Chem. Eng. J. 2001, 84, 69–74. DOI: 10.1016/S1385-8947(00)00384-3.
  • Schmitz-Schug, I.; Kulozik, U.; Foerst, P. Modeling Spray Drying of Dairy products - Impact of Drying Kinetics, Reaction Kinetics and Spray Drying Conditions on Lysine Loss. Chem. Eng. Ence 2016, 141, 315–329. DOI: 10.1016/j.ces.2015.11.008.
  • Van Meel, D. Adiabatic Convection Batch Drying with Recirculation of Air. Chem. Eng. Sci. 1958, 9, 36–44. DOI: 10.1016/0009-2509(58)87005-0.
  • Le, K. H.; Hampel, N.; Kharaghani, A.; Bück, A.; Tsotsas, E. Superheated Steam Drying of Single Wood Particles: A Characteristic Drying Curve Model Deduced from Continuum Model Simulations and Assessed by Experiments. Drying Technol. 2018, 36, 1866–1881. DOI: 10.1080/07373937.2018.1444633.
  • Woo, M. W.; Daud, W. R. W.; Mujumdar, A. S.; Talib, M. Z. M.; Hua, W. Z.; Tasirin, S. M. Comparative Study of Droplet Drying Models for CFD Modelling. Chem. Eng. Res. Des. 2008, 86, 1038–1048. DOI: 10.1016/j.cherd.2008.04.003.
  • Myllymaa, T.; Holmberg, H.; Ahtila, P. Economic Evaluation of Drying of Soot Sludge and Sawdust Mixture at Low Temperatures Using the Characteristic Drying Curve Method. ChemEngineering 2020, 4, 6. DOI: 10.3390/chemengineering4010006.
  • Holmberg, H.; Ahtila, P.; Ahtila, O. Experimental Study on Drying of Bark in Fixed Beds. Drying Technol. 2011, 29, 953–960. DOI: 10.1080/07373937.2010.551305.
  • Tran, T.; Jaskulski, M.; Tsotsas, E. Reduction of a Model for Single Droplet Drying and Application to CFD of Skim Milk Spray Drying. Drying Technol. 2017, 35, 1571–1583. DOI: 10.1080/07373937.2016.1263204.
  • Benavides-Morán, A.; Cubillos, A.; Gómez, A. Spray Drying Experiments and CFD Simulation of Guava Juice Formulation. Drying Technol. 2021, 39, 450–465. DOI: 10.1080/07373937.2019.1708382.
  • Ferrari, G.; Meerdink, G.; Walstra, P. Drying Kinetics for a Single Droplet of Skim-Milk. J. Food Eng. 1989, 10, 215–230. DOI: 10.1016/0260-8774(89)90027-7.
  • Chen, X. D.; Xie, G. Fingerprints of the Drying Behaviour of Particulate or Thin Layer Food Materials Established Using a Reaction Engineering Model. Food Bioprod. Process. 1997, 75, 213–222. DOI: 10.1205/096030897531612.
  • Chong, L. V.; Chen, X. D. A Mathematical Model of the Self-Heating of Spray-Dried Food Powders Containing Fat, Protein, Sugar and Moisture. Chem. Eng. Sci. 1999, 54, 4165–4178. DOI: 10.1016/S0009-2509(99)00115-3.
  • Ha, M.; Bekhit, A. E.-D.; McConnell, M.; Mason, S.; Carne, A. Fractionation of Whey Proteins from Red Deer (Cervus Elaphus) Milk and Comparison with Whey Proteins from Cow, Sheep and Goat Milks. Small Rumin. Res. 2014, 120, 125–134. DOI: 10.1016/j.smallrumres.2014.04.012.
  • El-Hatmi, H.; Jrad, Z.; Salhi, I.; Aguibi, A.; Nadri, A.; Khorchani, T. Comparison of Composition and Whey Protein Fractions of Human, Camel, Donkey, Goat and Cow Milk. Mljekarstvo: časopis za Unaprjeđenje Proizvodnje i Prerade Mlijeka 2015, 65, 159–167. DOI: 10.15567/mljekarstvo.2015.0302.
  • Zbiciński, I.; Piatkowski, M.; Prajs, W. Determination of Spray-Drying Kinetics in a Small Scale. Drying Technol. 2005, 23, 1751–1759. DOI: 10.1081/DRT-200065197.
  • Kemp, I. C.; Fyhr, B. C.; Laurent, S.; Roques, M. A.; Groenewold, C. E.; Tsotsas, E.; Sereno, A. A.; Bonazzi, C. B.; Bimbenet, J.-J.; Kind, M. Methods for Processing Experimental Drying Kinetics Data. Drying Technol. 2001, 19, 15–34. DOI: 10.1081/DRT-100001350.
  • Escobedo-Avellaneda, Z.; Pérez-Pérez, C.; Bárcenas-Pozos, M. E.; Guerrero-Beltrán, J.; Welti-Chanes, J. Analysis of the Drying Process of Mexican Hot Salsa Using the Characteristic Curve Model. J. Food Process. Preserv. 2013, 37, 441–448. DOI: 10.1111/j.1745-4549.2011.00662.x.

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