Experimental modeling of the spraying process polymer for creating coating layer to produce smart urea fertilizers
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nguyenhuutrungtt@gmail.comTừ khóa:
biodegradable polymer, dimensional analysis, modelling, modified starch, mart urea fertilizer, spraying processTóm tắt
The objective of the study is to determine the experimental mathematical model of the spraying process biodegradable polymer solution in coating technology for production smart urea fertilizer (SUFs). This polymer is synthesized from phosphated distarch phosphate (PDSP), polyvinyl alcohol (PVA) and polyacrylic acid (PAA), which is low cost, environmentally friendly. By image analysis method, the obtained results show the width of spray area (cone form) mean (B) at fluid flow of 1.5 mLPM, pressure of 1.8 MPa, spray distance (L) is 30 cm, was 40 cm and the sauter mean diameter (SMD) of droplet (d32) was 0.638 mm. The experimental model was determined by dimensional analysis method and the least squares regression line. The model was also evaluated and compatible with experiment. In which, the droplet’s SMD (d32) was calculated according to 4 dimensionless number and can be applied to calculate and adjust the spraying process
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Tài liệu tham khảo
A. H. Lefebvre and V. G. Mcdonell, Atomization and Sprays, 2nd ed. Taylor & Francis Group, 2017.
M. Y. Naz and S. A. Sulaiman, “Slow release coating remedy for nitrogen loss from conventional urea: A review,” J. Control. Release, vol. 225, pp. 109–120, 2016.
S. Nukiyama and Y. Tanasawa, “Experiments on the atomization of liquids in an aircstream,” Trans. Soc. Mech. Eng., vol. 4, no. 14, pp. 86–93, 1939.
E. Teunou and D. Poncelet, “Batch and continuous fluid bed coating - review and state of the art,” J. Food Eng., vol. 53, no. 53, pp. 325–340, 2002.
R. Müller and P. Kleinebudde, “Comparison of a laboratory and a production coating spray gun with respect to scale-up.,” AAPS PharmSciTech, vol. 8, no. 1, p. 3, 2007.
C. M. Varga, J. C. Lasheras, and E. J. Hopfinger, “Initial breakup of a small-diameter liquid jet by a high-speed gas stream,” J. Fluid Mech., vol. 497, pp. 405–434, 2003.
A. Aliseda, E. J. Hopfinger, J. C. Lasheras, D. M. Kremer, A. Berchielli, and E. K. Connolly, “Atomization of viscous and non-newtonian liquids by a coaxial, high-speed gas jet. Experiments and droplet size modeling,” Int. J. Multiph. Flow, vol. 34, no. 2, pp. 161–175, 2008.
P. N. Yushchenko and K.I. Lapin, “Technical requirements to quality of water dispersion with fire-fighting installations,” Горноспасательное дело, vol. Вып. 48 УД, pp. 95–105, 2011.
M. Y. Naz, S. A. Sulaiman, and B. Ariwahjoedi, “Effect of the borax mass and pre-spray medium temperature on droplet size and velocity vector distributions of intermittently sprayed starchy solutions,” R. Soc. Chem., vol. 3704, no. 17, pp. 3704–3714, 2015.
N. H. Trung and T. Van Dung, “Biodegradable polymer layers for production of smart urea fertilizer by coating pan system,” Tech. Educ. Sci., vol. 48, no. 1, pp. 23–28, 2018.
Mathworks, Image Processing Toolbox TM User ’ s Guide R 2016 b. 2016.
H. Hanche-Olsen, “Buckingham’s pi-theorem,” Math. Model., 2004.
T. H. Nguyen, D. Van Doan, and D. Van Trinh, “Synthesis of Biodegradable Mixing-Polymer as Coating Material for Controlled-Release Urea Fertilizer,” Adv. Mater. Res., vol. 1152, no. 3, pp. 43–51, 2019
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