P. Schuck, R. Jeantet, B. Bhandari, X. D. Chen, I. T. Perrone et al., Recent advances in spray drying relevant to the dairy industry: A comprehensive critical review, Drying Technology, vol.34, pp.1773-1790, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01454652

A. Sosnik and K. P. Seremeta, Advantages and challenges of the spray-drying technology for the production of pure drug particles and drugloaded polymeric carriers, Advances in Colloid and Interface Science, vol.223, pp.40-54, 2015.

S. Keshani, W. R. Daud, M. M. Nourouzi, F. Namvar, and M. Ghasemi, Spray drying: An overview on wall deposition, process and modeling, Journal of Food Engineering, vol.146, pp.152-162, 2015.

K. Masters, Spray Drying Handbook, 1991.

R. Vehring, Pharmaceutical particle engineering via spray drying, Pharmaceutical Research, vol.25, pp.999-1022, 2008.

A. Paudel, Z. A. Worku, J. Meeus, S. Guns, G. Van-den et al., Manufacturing of solid dispersions of poorly water soluble drugs by spray drying : Formulation and process considerations, International Journal of Pharmaceutics, vol.453, pp.253-284, 2013.

S. M. Thaker, P. A. Mahanwar, V. V. Patil, and B. N. Thorat, Synthesis and Spray Drying of Water-Redispersible Polymer Synthesis and Spray Drying of Water-Redispersible Polymer, vol.3937, 2010.

M. Pal, L. Wan, Y. Zhu, Y. Liu, Y. Liu et al., Scalable synthesis of mesoporous titania microspheres via spray-drying method, Journal of Colloid And Interface Science, vol.479, pp.150-159, 2016.

F. Iskandar, Nanoparticle processing for optical applications -A review, Advanced Powder Technology, vol.20, pp.283-292, 2009.

M. Ré, Formulating Drug Delivery Systems by Spray Drying, Drying Technology, vol.24, pp.433-446, 2006.

S. Zellmer, G. Garnweitner, T. Breinlinger, T. Kraft, and C. Schilde, Hierarchical Structure Formation of Nanoparticulate Spray-Dried Composite Aggregates, ACS Nano, vol.9, pp.10749-10757, 2015.

A. B. Nandiyanto and K. Okuyama, Progress in developing spray-drying methods for the production of controlled morphology particles: From the nanometer to submicrometer size ranges, Advanced Powder Technology, vol.22, pp.1-19, 2011.

M. Munoz-ibanez, M. Nuzzo, C. Turchiuli, B. Bergenståhl, E. Dumoulin et al., The microstructure and component distribution in spray-dried emulsion particles, Food Structure, vol.8, pp.16-24, 2016.

M. A. Schutyser, E. M. Both, I. Siemons, E. M. Vaessen, and L. Zhang, Gaining insight on spray drying behavior of foods via single droplet drying analyses, Drying Technology, vol.37, pp.525-534, 2019.

R. De-souza-lima, M. Ré, and P. Arlabosse, Drying droplet as a template for solid formation: A review, Powder Technology, vol.359, pp.161-171, 2020.
URL : https://hal.archives-ouvertes.fr/hal-02310713

D. A. Leclair, E. D. Cranston, Z. Xing, and M. R. Thompson, Optimization of Spray Drying Conditions for Yield, Particle Size and Biological Activity of Thermally Stable Viral Vectors, Pharmaceutical Research, vol.33, pp.2763-2776, 2016.

J. Bahadur, D. Sen, S. Mazumder, B. Paul, H. Bhatt et al., Control of buckling in colloidal droplets during evaporation-induced assembly of nanoparticles, Langmuir, vol.28, pp.1914-1923, 2012.

X. Li, N. Anton, T. M. Ta, M. Zhao, N. Messaddeq et al., Microencapsulation of nanoemulsions: novel Trojan particles for bioactive lipid molecule delivery, International journal of nanomedicine, vol.6, pp.1313-1325, 2011.

E. M. Both, A. M. Karlina, R. M. Boom, and M. A. Schutyser, Morphology development during sessile single droplet drying of mixed maltodextrin and whey protein solutions, Food Hydrocolloids, vol.75, pp.202-210, 2018.

N. Fu, M. W. Woo, and X. D. Chen, Single Droplet Drying Technique to Study Drying Kinetics Measurement and Particle Functionality: A Review, Drying Technology, vol.30, pp.1771-1785, 2012.

C. Sadek, P. Schuck, Y. Fallourd, N. Pradeau, C. L. Floch-fouéré et al., Drying of a single droplet to investigate process-structure-function relationships: a review, Dairy Science and Technology, vol.95, pp.771-794, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01209717

S. Manukyan, H. M. Sauer, I. V. Roisman, K. A. Baldwin, D. J. Fairhurst et al., Imaging internal flows in a drying sessile polymer dispersion drop using Spectral Radar Optical Coherence Tomography (SR-OCT), Journal of Colloid and Interface Science, vol.395, pp.287-293, 2013.

C. Sadek, P. Schuck, Y. Fallourd, N. Pradeau, R. Jeantet et al., Buckling and collapse during drying of a single aqueous dispersion of casein micelle droplet, Food Hydrocolloids, vol.52, pp.161-166, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01454517

A. Saha, S. Basu, and R. Kumar, Particle image velocimetry and infrared thermography in a levitated droplet with nanosilica suspensions, Experiments in Fluids, vol.52, pp.795-807, 2012.

J. D. Griffith, A. E. Bayly, and M. L. Johns, Magnetic resonance studies of detergent drop drying, Chemical Engineering Science, vol.63, pp.3449-3456, 2008.

F. Lemoine and G. Castanet, Temperature and chemical composition of droplets by optical measurement techniques: A state-of-the-art review, Experiments in Fluids, vol.54, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01431048

J. Quiño, T. Hellwig, M. Griesing, W. Pauer, H. U. Moritz et al., One-dimensional Raman spectroscopy and shadowgraphy for the analysis of the evaporation behavior of acetone/water drops, International Journal of Heat and Mass Transfer, vol.89, pp.406-413, 2015.

B. J. Dennis-smither, K. L. Hanford, N. , .. A. Kwamena, R. E. Miles et al., Phase , Morphology , and Hygroscopicity of Mixed Oleic Acid / Sodium Chloride / Water Aerosol Particles before and after Ozonolysis, pp.6159-6168, 2012.

A. Marzo, A. Barnes, and B. W. Drinkwater, TinyLev: A multi-emitter single-axis acoustic levitator, Review of Scientific Instruments, vol.88, p.85105, 2017.

A. Braeuer, O. S. Knauer, J. Quiño, and A. Leipertz, Quantification of the mass transport in a two phase binary system at elevated pressures applying Raman spectroscopy: Pendant liquid solvent drop in a supercritical carbon dioxide environment, International Journal of Heat and Mass Transfer, vol.62, pp.729-740, 2013.

C. S. Handscomb, M. Kraft, and A. E. Bayly, A new model for the drying of droplets containing suspended solids, Chemical Engineering Science, vol.64, pp.628-637, 2009.

C. Holzammer, A. Finckenstein, S. Will, and A. Braeuer, How Sodium Chloride Salt Inhibits the Formation of CO2 Gas Hydrates, The Journal of Physical Chemistry B, vol.120, pp.2452-2459, 2016.

M. Mezhericher, A. Levy, and I. Borde, Multi-Scale Multiphase Modeling of Transport Phenomena in Spray-Drying Processes, Drying Technology, vol.33, pp.2-23, 2014.

M. Mathlouthi and P. Reiser, Sucrose: Properties and Applications, 1995.

Y. Rong, Probing the structure of dextran systems and their organization, 2008.

A. Saha, S. Basu, and R. Kumar, Velocity and rotation measurements in acoustically levitated droplets, Physics Letters, Section A: General, Atomic and Solid State Physics, vol.376, pp.3185-3191, 2012.

A. T. Shih and C. M. Megaridis, Suspended droplet evaporation modeling in a laminar convective environment, Combustion and Flame, vol.102, pp.256-270, 1995.

Y. Wei, W. Deng, and R. H. Chen, Effects of internal circulation and particle mobility during nanofluid droplet evaporation, International Journal of Heat and Mass Transfer, vol.103, pp.1335-1347, 2016.