By Lukman Ismail, Khairun Azizi Azizli, Thanabalan Murugesan, Saibal Ganguly, Yoshimitsu Uemura

ISBN-10: 3038350524

ISBN-13: 9783038350521

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Boucher, and H. Angue Mintsa, Temperature and particle-size dependent viscosity data for water-based nanofluids – Hysteresis phenomenon, Int. J. Heat Fluid Flow 28 (2007) 1492-1506. [28] W. Yu, H. Xie, L. Chen, and Y. Li, Investigation of thermal conductivity and viscosity of ethylene glycol based ZnO nanofluid, Thermochim. Acta 491 (2009) 92-96. [29] P. K. Namburu, D. P. Kulkarni, D. Misra, and D. K. Das, Viscosity of copper oxide nanoparticles dispersed in ethylene glycol and water mixture, Exp.

It is found in previous studies that effective densities of nanofluids increase with the increase in volume fraction of nanoparticles in the fluid. It is found in the previous studies that the effective viscosity of nanofluids increases with the increase in particle diameter and particle concentration and decrease with the increase in temperature. For the effective thermal conductivity, with an increase in particle concentration and temperature, there is a rise in thermal conductivity of nanofluids.

0001g on a analytical balance (Mettler AJ 100). Experiments were repeated with further three different concentrations (100,200 and 400ppm) of thiourea and surfactants CTAB, SDS and triton X-100 at pre-micellar, CMC and post micellar concentration 3M solution of HCl at room temperature. The difference in weight of the coupons was again taken as the weight loss. The synergistic effect of thiourea and surfactants is studied on stainless steel 316 in 3M HCl. e. thiourea and its synergistic effect with cationic, anionic and nonionic surfactants on the corrosion inhibition of Stainless steel 316 in acidic environments.

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Process Engineering and Advanced Materials 2012 by Lukman Ismail, Khairun Azizi Azizli, Thanabalan Murugesan, Saibal Ganguly, Yoshimitsu Uemura


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