03036nam a2200277 a 4500001001400000003000700014005001700021008004100038020002200079039006500101040000800166090003300174100001900207245015600226260003400382300005200416502009000468504002700558520176500585650001802350650001902368952012702387952013702514999002502651999008202676vtls000057275KUKTEM20251114204436.0111213t2010 my a f m 000 0 eng d aTHE0004445(Local) 9a201905161541brohanac201112130926dFiday201112130924zFida aUMP aTP248.25.N35 A85 2010 rs Bc.0 aNur Atikah Ali10aPreparation and characterisation of physicochemical properties of aluminium oxide (Al2O3) – water nanofluids using two step methods /cNur Atikah Ali aKuantan, Pahang :bUMP,c2010 axvi, 54 p. :bill. ;c30 cm. +e1 computer disc aProject paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang - 2010 aBibliography: p. 44-473 aNanofluids is a kind of new engineering material which consisting of solid nanoparticles with size typically of 1-100nm by dispersing it into based fluids. This research presents the preparation of Aluminium Oxide (Al2O) nanofluids by using two-step methods. This nanofluids was prepared by dispersing Al32O nanoparticles (<50nm) in distilled water based fluids with the addition of calculated amount of Sodium Dodecylbenzene Sulphonate (SDBS) as a surfactant and absence of SDBS surfactant. The nanofluids were sonicated with ultrasonic vibrator at power of 700 Watt and frequency of 40k Hz for 15 minutes. It was tested that with the presence of surfactant in the nanofluids, the nanofluids was stable for 2 weeks. Absence of surfactant cause the small amount of particle aggregates had settled out of suspension after 1 day. Stabilization of the Al2O33 nanofluids with and without surfactant can be obtained with Transmission Electron Microscopy (TEM). Distilled water based fluids display Newtonian behavior but it transform to non-Newtonian fluid with the addition of Al2O3 nanoparticles. Viscosity of the Al2O nanofluids was measured both as a function of Al2O3 3 nanoparticles volume fraction and temperature between 30oC and 60oC using Brookfield DV- II Pro Viscometer and results showed that no anomolous effects of viscosity with increasing of temperatures. The range of the viscosity from 30oC and 60oC is between 4.05 cP to 2.55 cP and viscosity of nanofluids increase with the Al2O nanoparticles volume concentration. The result then was compared with the previous researcher’s experimental data. Thermal conductivity of the Al2O3 3 nanofluids water based was predicted using regression equation then compared it with previous experimental data. 0aNanoparticles 0aNanotechnology 00104071a10000b10000d2019-09-04l0oTP248.25.N35 A85 2010 rs Bc.p0000060196r2019-09-04 00:00:00t1w2019-09-04yPSM 00104071a10000b10000d2019-09-04l0oCD 5481 | TP248.25.N35 A85 2010 rs Bc.p0000060197r2019-09-04 00:00:00t1w2019-09-04yPSM aVIRTUA40c2107d2113 aVTLSSORT0080*0200*0400*0900*1000*2450*2600*3000*5020*5040*5200*6500*6501*9992