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Silver Iodide Nanoparticles Using a Spinning Disk Reactor

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Silver Iodide Nanoparticles Using a Spinning Disk Reactor ( silver-iodide-nanoparticles-using-spinning-disk-reactor )

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The 1st International Seminar on Fundamental and Application ISFAChE 2010 of Chemical Engineering November 3-4, 2010, Bali-Indonesia Nomenclature LA flow rate with an aqueous solution of AgNO3 and protecting agent (L/min) LB flow rate with an aqueous solution of KI (L/min) N rotation speed of the spinning disk (rpm) References 1. Cafiero, L. M., Baffi, G.,Chianese, A., and Jachuck, R. J. J. (2002) Process intensification: precipitation of barium sulfate using a spinning disk reactor. Ind. Eng. Chem. Res., 41: 5240- 5246. 2. Tai, C. Y., Tai, C. T., and Liu, H. S. (2006) Synthesis of submicron barium carbonate using a high-gravity technique. Chem. Eng. Sci. 61: 7179-7186. 3. Tai, C. Y., Tai, C. T., Chang, M. H., and Liu, H. S. (2007) Synthesis of magnesium hydroxide and oxide nanoparticles using a spinning disk reactor. Ind. Eng. Chem. Res. 46: 5536-5541. 4. Tai, C. Y., Wang, Y. H., and Liu, H. S. (2008) A green process for preparing silver nanoparticles using spinning disk reactor. AIChE J. 54: 445-452. 5. Wang, Y., Mo, J., Cai, W., Yao, L., and Zhang, L. (2002) Large-scale synthesis of α-AgI nanoparticles. Mater. Lett. 56: 502-506. 6. Shaviv, R., Westrum E. F., Gronvold F., Stolen S., Inaba A., Fujii H., and Chihara H. (1989) Heat capacity, thermodynamic properties, and transitions of silver iodide, J. Chem. Thermodyn 21: 631-651. 7. Berry, C. R. (1967) Structure and optical absorption of AgI microcrystals Phys. ReV., 161 : 848- 85. E002-6

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