Analytical Modeling of Counter-Current Drying Process

Author:

Pamuk Mehmet Turgay1ORCID

Affiliation:

1. OKAN ÜNİVERSİTESİ

Abstract

In this analytical study, spray drying of detergent particles of diameters 0.4-1 mm by using counter-current air heated at around 300oC is investigated using Matlab©. Particle drying using hot gases is a mature process with a vast variety of applications ranging from dried food to powdered detergent production. The study shows a strong relationship between the drying process (final water content) and particle size, drying gas temperature, as well as the tower dimensions since cross-sectional area of the tower has a direct control on vertical gas velocity, thus heat and mass transfer coefficients while the height of tower is closely related to residence time of particles in tower which guarantees the targeted drying level. The conclusions of this study can be a guide to have a better set of drying parameters such as inlet temperatures and humidity/water content as well as exit temperatures and humidity/water content and valuable information on how these relate to heat energy consumption necessary to heat the air from atmospheric conditions to the desired drying gas temperature. It is also worth indicating that the measurement of the absolute humidity in tower exhaust is a good parameter to control the drying process in an effective way.

Publisher

International Centre for Applied Thermodynamics (ICAT)

Reference19 articles.

1. A. S. Mujumdar and V. Jog, “Simple Procedure for Design of a Spray Dryer,” Journal of the Institution of Engineers (India): Chemical Engineering Division, vol. 57, pp. 134-138, Jun. 1977.

2. P. Wawrzyniak, M. Podyma, I. Zbicinski, Z. Bartczak and J. Rabaeva, “Modeling of Air Flow in an Industrial Counter current Spray-Drying Tower,” Drying Technology, vol. 30, no. 2, pp. 217-224, Nov. 2011, doi:10.1080/07373937.2011.618282.

3. M. Ali, “Numerical Modeling of a Counter-Current Spray Drying Tower,” Ph.D. dissertation, Ins. of Particle Sci. and Eng., School of Chemical and Process Eng., The Univ. of Leeds, Woodhouse, Leeds LS2 9JT, UK, 2014.

4. E.A. Afolabi and K. R. Onifade, “Simulation of Air Residence Time Distributions of Spray Droplets in A Counter-Current Spray Dryer,” ARPN Journal of Engineering and Applied Sciences, vol. 9, no. 2, pp. 145-152, Feb. 2014.

5. M. Ali, T. Mahmud, P.J. Heggs, M. Ghadiri, A. Bayly, H. Ahmadian and L. M. de Juan, “CFD Simulation of a Counter-Current Spray Drying Tower with Stochastic Treatment of Particle-Wall Collision,” Procedia Engineering, vol. 102, pp. 1284-1294, Jan. 2015, doi:10.1016/j.proeng.2015.01.259.

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