The pollution caused by the oil industries, refineries and tanker's uploading are one of the biggest challenges. since the recent accident with spreading oil spill on the surface of sea water, the need for environmentally friendly oil sorbents has intensified. The investigation deal with the sorption of crude oil by Nano perlite and Nano zeolite, as a mineral sorbent. Results showed at the maximum level of initial oil concentration, the sorption capacity of Nano perlite and Nano zeolite are 3.11 and 2.89 g/g respectively. It woud be worth mention that the sorption capacity of Nano perlite is higher than Nano zeolite. Brunauer-Emmett-Teller (BET) surface area and X-Ray diffraction analyses were performed to characterize the properties of Nano adsorbents.
Keywords: Oil pollution; oil sorbent; nano perlite; nano zeolite
References:
ASTM Standard F726-06. (2006). Standard Test Method for sorbent Performance of Adsorbent. In 2006 Annual Book of ASTM Standards; American Society for Testing and Materials (ASTM): West Conshohocken, PA.
ASTM, D1533-00. (2005). Annual Book of ASTM Standards. American Society of Testing and Materials, 10(3).
Gonen, F., Onalan, F. (2015). Adsorptive Removal Behaviour of procion MX-R dye from SRDW by Chitosan. Applied Ecology and Environmental Research, 14(1): 77-98. http://dx.doi.org/10.15666/aeer/1401_077098
Jain, D., Khatri, C., Rani, A. (2011). Synthesis and characterization of novel solid base catalyst from fly ash. Fuel, 90: 2083-2088.
Javeed, S. H., Naveed, S., Feroze, N., Zafar, M. (2010). Crystal and Amorphous Silica from KMnO4 treated and untreated Rice Husk Ash. Journal of Quality and Technology Management, 6(1): 81-90.
JCPDS files Card Nos. 025-1349 (2000).
Nwadiogbu, J. O., Ajiwe, V. I. E., Okoye, P. A. C. (2016). Removal of Crude Oil from aqueous medium by sorption hydrophobic corncobs:Equilibrium and Kinetic Studies. Journal of Taibah University for Science, 10: 56-63.
Adebajo, M. O., Frost, R. L., Klorogge, J. T., Carmody, O. (2003). Porous Materials for Oil Spill Cleanup:AReview of Synthesis and Absorbing Properties. Journal of Porous Materials, 10(3): 159-170.
Rafeah, W., Luqman, C. A., Thomas, C. S., Zainab, N. Y., Mohsen, N. M. (2013). Oil Removal from Aqueous state by Natural Fibrous Sorbent:An Overview, Separation and Purification Technology. http://dx.doi.org/10.1016/j.seppur.2013.04.015
Sayed, S. A., Zayed, A. M. (2005). Investigation of the effectiveness of some adsorbent materials in oil spill clean-ups. Desalination 194(2006), 90-100.
[1]
P. Okoye,et al.
Removal of crude oil from aqueous medium by sorption on hydrophobic corncobs: Equilibrium and kinetic studies
,
2016
.
[2]
Önen.
ADSORPTIVE REMOVAL BEHAVIOUR OF PROCION MXR DYE FROM SRDW BY CHITOSAN
,
2015
.
[3]
Download Here,et al.
Annual Book Of Astm Standards
,
2014
.
[4]
T. Choong,et al.
Oil removal from aqueous state by natural fibrous sorbent: An overview
,
2013
.
[5]
A. Rani,et al.
Synthesis and characterization of novel solid base catalyst from fly ash
,
2011
.
[6]
S. Javed,et al.
CRYSTAL AND AMORPHOUS SILICA FROM KMnO 4 TREATED AND UNTREATED RICE HUSK
,
2010
.
[7]
A. Zayed,et al.
Investigation of the effectiveness of some adsorbent materials in oil spill clean-ups
,
2006
.
[8]
R. Frost,et al.
Porous Materials for Oil Spill Cleanup: A Review of Synthesis and Absorbing Properties
,
2003
.