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Foam stability performance enhanced with rice husk ash nanoparticles

Chuah, Kai Jie and Jaafar, Mohd. Zaidi and Wan Sulaiman, Wan Rosli (2019) Foam stability performance enhanced with rice husk ash nanoparticles. Jurnal Teknologi, 81 (4). pp. 87-96. ISSN 2180-3722

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Official URL: https://dx.doi.org/10.11113/jt.v81.13536

Abstract

The objective is to study the effectiveness of using nano-sized rice husk ash (nano-RHA) as an additive to stabilize normal gas generated surfactant foam used in enhanced oil recovery. To decrease the size of the RHA into nano range, planetary ball mill was used in both dry grinding and wet grinding. Different surfactants including anionic and non-ionic were used to study the polydispersity index of the dispersion and the hydrodynamic diameter using dynamic light scattering in dilute suspension. Besides, the nano-RHA was characterized using FESEM, EDX, XRD and the change in specific area after grinding process was studied using BET. The foamability of different surfactants were then studied using minor concentration of nano-RHA. Next, the concentration of the nano-RHA was varied from 0.1wt% to 0.9wt% in normal gas bulk foam stability test using the suitable surfactant, the texture of foam was observed as well. Moreover, the effect of oil on bulk foam was also studied. Finally, the result was compared using pure silica nanoparticles as the foam addictive at the same variation of concentrations. Dispersion stability tests showed that both anionic and non-ionic surfactants can be used to disperse nano-RHA in water. Furthermore, in the presence of 0.9wt% of nano-RHA concentration, the bulk foam stability test results revealed that the sodium dodecyl sulfate bulk foam half-life increased by 17.9% without the presence of oil, and gave an increment of 20.7% half-life in the presence of oil. Therefore, the study showed a potential of utilizing nano-RHA in stabilizing bulk foam.

Item Type:Article
Uncontrolled Keywords:Foam stability, surfactant, EOR, nano-rice husk ash, ball-milling
Subjects:T Technology > TP Chemical technology
Divisions:Chemical Engineering
ID Code:84764
Deposited By: Fazli Masari
Deposited On:27 Feb 2020 04:59
Last Modified:27 Feb 2020 04:59

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