Study of Sulfur Purification from Bituminous Material in The Mishraq Sulfur Mine Using Acidic Sulfur Waste (Foam)
Year 2024,
Volume: 11 Issue: 4, 1545 - 1552, 03.12.2024
Hala Jasim
,
Deena Abd Al- Jawad
Thaer Hallow
,
Mote`a Abdulla
Abstract
In conclusion, the sulfur wastes obtained from chemical and thermal methods for sulfur purification in the Mashreq field has been present for decades in significant quantities, approaching two million tons, with its harmful impact on the environment. Our research focused on using a different approach by utilizing the acidic sulfur wastes (foam) as a source of sulfuric acid and elemental sulfur containing bituminous materials. The goal was to make use of the sulfuric acid present in the sulfur wastes to oxidize bituminous materials. This was achieved by mixing various proportions of elemental sulfur at a temperature of 150-160 °C to achieve the best viscosity while monitoring chemical and spectroscopic changes using SEM, XRD, and FTIR devices. The aim was to eliminate the negative effects of bituminous and acidic materials and repurpose sulfur wastes, converting it into economically and scientifically valuable materials. The filtration of molten elemental sulfur from foam was conducted using a specially designed metal filter for the filtration process, along with the use of a filtration aid. This process successfully recovered 81% of the elemental sulfur, and the results met the Iraqi Standard Specification 2199.
Supporting Institution
Non
Thanks
We extend our thanks to the Presidency of the University of Mosul and the Deanship of the College of Education for Pure Sciences for the assistance they provided in facilitating the conduct of this research.
References
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Year 2024,
Volume: 11 Issue: 4, 1545 - 1552, 03.12.2024
Hala Jasim
,
Deena Abd Al- Jawad
Thaer Hallow
,
Mote`a Abdulla
References
- 1. Al-jubori M. Study of the purification of sulfur raw materials and its refining products and their use in the chemical in-dustries. Doctoral dissertation, Ph. D. thesis, University of Mosul-College of Education; 2011.
- 2. Jasim H, halo thaer, Al jbouri M. A Study of the chemical nature of sulfur-containing rocks and Frasch sulfur in the Al-Mishraq Sulfur field. J Educ Sci [Internet]. 2021 Mar 1;30(1):1–9. Available from: <URL>.
- 3. Ibrahim JA. Pollution of mining industry sulfur purification plant at al mishraq. J Eng [Internet]. 2011;5(17):1159–73. Available from: <URL>.
- 4. Alkhafaji MW, Connan J, Engel MH, AL-Jubouri SW. Origin, biodegradation, and water washing of bitumen from the Mishraq Sulfur Mine, northern Iraq. Mar Pet Geol [Internet]. 2021 Feb;124:104786. Available from: <URL>.
- 5. Shareef SS, H TA, A andMotèa O. Concentration and study of the carbon-sulfur residues resulting from the thermal purification of Fracsh sulfur in the Al-Mishraq sulfur mine. J Surv Fish Sci [Internet]. 2023 May 4;10(1S):5355–67. Available from: <URL>.
- 6. Patwardhan A. Industrial solid waste [Internet]. NewDelhi: The Energy and Resources Institute (TERI); 2013. Available from: <URL>.
- 7. Masotta M, Rocchi I, Pazzagli G, D’Ambrosio R, Seggiani M. Recovery of sulfur from sulfur-rich filter cakes in a rotary kiln: Process optimization. Waste Manag [Internet]. 2021 May;126:567–77. Available from: <URL>.
- 8. Golub G, Subovich J, Garden O, Garden I. Recovery of sulfur from sulfur-containing waste [Internet]. United States patent US 9.216,904 B2, 2012. Available from: <URL>.
- 9. Mohammud B. The use of sulfur residues from mishraq sulfur as a raw material in the preparation of nanoparticle sul-fur. Master’s thesis, University of Mosul-College of Education for Girls; 2021.
- 10. Shareef SS, Halo TA, Abdulla MO. Recovery of sulfur from the residues of the chemical method for the purification of sulfur from the farsch mine in the Al-Mishraq Mine. Iraqi J Ind Res [Internet]. 2023 Jun 14;10(1):15–25. Available from: <URL>.
- 11. Louie DK. Handbook of sulphuric acid manufacturin [Internet]. Ontario, Canada: DKL Engineering, Inc.; 2005. Available from: <URL>.
- 12. Lipps D. Process for heat-treating liquid sulfur containing carbonaceous impurities [Internet]. Vol. 316. United States patent US 3,316,063, 1967. p. 63. Available from: <URL>.