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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 57, 2022 - Issue 13-14
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Research Article

Mn2O3 nanoparticle impregnated glycine max husks for the optimization of oil remediation in contaminated water

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Pages 1124-1137 | Received 06 Oct 2022, Accepted 12 Dec 2022, Published online: 29 Dec 2022

References

  • Abdelwahab, O.; Nasr, S. M.; Thabet, W. M. Palm Fibers and Modified Palm Fibers Adsorbents for Different Oils. Alexand. Eng. J. 2017, 56, 749–755. DOI: 10.1016/j.aej.2016.11.020.
  • Beyer, J.; Trannum, H. C.; Bakke, T.; Hodson, P. V.; Collier, T. K. Environmental Effects of the Deepwater Horizon Oil Spill: A Review. Mar Pollut Bull. 2016, 110, 28–51. DOI: 10.1016/j.marpolbul.2016.06.027.
  • Zhong, Z.; You, F. Oil Spill Response Planning with Consideration of Physicochemical Evolution of the Oil Slick: A Multiobjective Optimization Approach. Comput. Chem. Eng. 2011, 35, 1614–1630. DOI: 10.1016/j.compchemeng.2011.01.009.
  • Liu, H.; Geng, B.; Chen, Y.; Wang, H. Review on the Aerogel-Type Oil Sorbents Derived from Nanocellulose. ACS Sustainable Chem. Eng. 2017, 5, 49–66. DOI: 10.1021/acssuschemeng.6b02301.
  • Karan, C. P.; Rengasamy, R. S.; Das, D. Oil Spill Cleanup by Structured Fibre Assembly. Indian J. Fibre Text. Res. 2011, 36, 190–200.
  • Abdullah, M. A.; Rahmah, A. U.; Man, Z. Physico-Chemical and Sorption Characteristics of Malaysian Ceiba pentandra (L.) Gaertn as a Natural Oil Sorbent. J. Hazard. Mater. 2010, 177, 683–691. DOI: 10.1016/j.jhazmat.2009.12.085.
  • Akpomie, K. G.; Ezeofor, C. C.; Olikagu, C. S.; Odewole, O. A.; Ezeorah, C. J. Abstraction and Regeneration Potential of Temperature Enhanced Rice Husk Montmorillonite Combo for Oil Spill. Environ. Sci. Pollut. Res. Int. 2018, 25, 34711–34719.
  • Ogbu, I. C.; Ibeto, C. N.; Okoye, C. O. B. Application of Raw Vigna Subterranean Husks as Novel Sorbent for Abstraction of Petroleum from Contaminated Waters. Int. J. Environ. Sci. Technol. 2022, 19, 4869–4882. DOI: 10.1007/s13762-021-03447-3.
  • Akpomie, K. G.; Conradie, J. Enhanced Surface Properties, Hydrophobicity, and Sorption Behavior of ZnO Nanoparticle-Impregnated Biomass Support for Oil Spill Treatment. Environ. Sci. Pollut. Res. 2021, 28, 25283–25299. DOI: 10.1007/s11356-021-12451-6.
  • Logar, N. Z.; Kaucic, V. Nanoporous Materials: From Catalysis Hydrogen Storage to Wastewater Treatment. Acta Chim. Slov. 2006, 53, 117–113.
  • Grassini, P.; Cafaro La Menza, N.; Edreira, J. I. R.; Monzón, J. P.; Tenorio, F. A.; Specht, J. E. Chapter 8 – Soybean. In Crop Physiology Case Histories for Major Crops. London: Academic Press, 282–319, 2021. DOI: 10.1016/B978-0-12-819194-1.00008-6.
  • Shea, Z.; Singer, W.M.; Zhang, B. Soybean Production, Versatility, and Improvement. In Legume Crops – Prospects, Production and Uses. 2020, London, United Kingdom: Intech Open. DOI: 10.5772/intechopen.91778.
  • Olawale, A. S.; Olakunle, M. S.; Ajayi, O. A. Assessment of Soya Bean Husk for Crude Oil Spill Clean-up. J Nigerian Soc. Chem. Eng. 2020, 35, 40–49.
  • Amsaveni, P.; Nivetha, A.; Sakthivel, C.; Suresh Philip, C.; Prabha, I. Effectiveness of Surfactants for Unique Hierarchical Mn2O3 Nanomaterials as Enhanced Oxidative Catalysts, Antibacterial Agents, and Photocatalysts. J. Phys. Chem. Solids. 2020, 144, 109429. DOI: 10.1016/j.jpcs.2020.109429.
  • Bharti, V. K.; Pathak, A. D.; Sharma, C. S.; Khandelwal, M. Ultra-High-Rate Lithium-Sulfur Batteries with High Sulfur Loading Enabled by Mn2O3-Carbonized Bacterial Cellulose Composite as a Cathode Host. Electrochim. Acta. 2022, 422, 140531. DOI: 10.1016/j.electacta.2022.140531.
  • Eze, S. I.; Akpomie, K. G.; Ezeofor, C. C.; Osunkunle, A. A.; Maduekwe, O. B.; Okenyeka, O. U. Isotherm and Kinetic Evaluation of Dialium Guineense Seed Husk and Its Modified Derivative as Efficient Sorbent for Crude Oil Polluted Water Treatment. Water Conserv. Sci. Eng. 2019, 4, 21–31. DOI: 10.1007/s41101-019-00065-6.
  • Kumar, H.; Manisha; Sangwan, P. Synthesis and Characterization of MnO2 Nanoparticle Using Co-Precipitation Technique. Int. J. Chem. Chem. Eng. 2013, 3, 155–160.
  • Ogbu, I. C.; Akpomie, K. G.; Osunkunle, A. A.; Eze, S. I. Sawdust-Kaolinite Composite as Efficient Sorbent for Heavy Metal Ions. Bangladesh J. Sci. Ind. Res. 2019, 54, 99–110. DOI: 10.3329/bjsir.v54i1.40736.
  • Anirudhan, T. S.; Radhakrishnan, P. G. Thermodynamics and Kinetics of Adsorption of Cu(II) from Aqueous Solution onto a New Cation Exchanger Derived from Tamarind Fruit Shell. J. Chem. Thermodyn. 2008, 40, 702–709. DOI: 10.1016/j.jct.2007.10.005.
  • Akpomie, K. G.; Ezeofor, C. C.; Ani, J. U.; Eze, S. I.; Odo, C. C.; Onoabedje, E. A. Equilibrium Isotherms Modeling of Crude Oil Sorption from Aqua Mixture onto Codiaeum Variegatum Stem Powder. Petrol Sci. Technol. 2019, 37, 329–336. DOI: 10.1080/10916466.2018.1547751.
  • Jingya, W.; Alicia, K.; Jiaxin, G.; Eui-Jong, L.; Muhammad, U. S.; Sanghyun, J. CNTs Reinforced Super-Hydrophobic-Oleophilic Electro Spun Polystyrene Oil Sorbent for Enhanced Sorption Capacity and Reusability. Chem. Eng. J. 2017, 314, 526–536.
  • Das, B.; Mondal, N. K. Calcareous Soil as a New Adsorbent to Remove Lead from Aqueous Solution, Equilibrium Kinetic and Thermodynamic Study. Univers. J. Environ. Res. Technol. 2011, 1, 515–530.
  • Nwadinigwe, C. A.; Alumona, T. N. NAASAR Procedure for Quantitative Assessment of n-Alkanes, Asphaltenes and Resins in Crudes. J. Petrol Explor. Prod. Technol. 2015, 5, 383–390. DOI: 10.1007/s13202-014-0145-7.
  • Azubuike, C. P.; Okhamafe, A. O. Physicochemical, Spectroscopic and Thermal Properties of Microcrystalline Cellulose Derived from Corn Cobs. Int. J. Recycl. Org. Waste. 2012, 1, 67–73.
  • Gautam, R. K.; Mudhoo, A.; Lofrano, G.; Chattopadhyaya, M. G. Biomass Derived Biosorbents for Metal Ions Sequestration: adsorbent Modification and Activation Methods and Adsorbent Regeneration. J. Environ. Chem. Eng. 2014, 2, 239–259. DOI: 10.1016/j.jece.2013.12.019.
  • Anthony, R. S.; Smart Robin Son, D. S.; Pillai, B. C.; Lee Robert Lindon, C. Parametric Studies on Pyrolysis of Pungam Oil Cake in Electrically Heated Fluidized Bed Research Reactor. Res J. Chem. Sci. 2011, 1, 70–80.
  • Okoronkwo, E. A.; Imoisili, P. E.; Olubayode, S. A.; Olusunle, S. O. O. Development of Silica Nanoparticle from Corn Cob Ash. Adv. Nanopart. 2016, 5, 135-139.
  • Azat, S.; Korobeinyk, A. V.; Moustakas, K.; Inglezakis, V. J. Sustainable Production of Pure Silica from Rice Husk Waste in Kazakhstan. J. Cleaner Prod. 2019, 217, 352–359. DOI: 10.1016/j.jclepro.2019.01.142.
  • Cuong Manh Vu, C. M.; Van-Huy Nguyen, V.-H.; Quang-Vu Bach, Q.-V. Phosphorous-Jointed Epoxidized Soybean Oil and Rice Husk-Based Silica as the Novel Additives for Improvement Mechanical and Flame Retardant of Epoxy Resin. J. Fire Sci. 2020, 38, 3–27.
  • Abdul, S. G.; Taleb, H. I.; Mustafa, I. K.; Yehya, E. Application of Eggplant Peels Powder for the Removal of Oil from Produced Water. Desalin. Water Treat. 2015, 57, 15724–15732. DOI: 10.1080/19443994.2015.1130661.
  • Okie, K.; El-Sayed, M.; El-Kady, M. Y. Treatment of Oil Water Emulsions by Adsorption onto Activated Carbon, Bentonite and Deposited Carbon. Egypt. J. Pet. 2011, 20, 9–15. DOI: 10.1016/j.ejpe.2011.06.002.
  • El-Gendy, N. S.; Nassar, H. N. Study on the Effectiveness of Spent Waste Sugarcane Bagasse for Adsorption of Different Petroleum Hydrocarbon Water Pollutants: kinetic and Equilibrium Isotherm. Desalin. Water Treat. 2016, 57, 5514–5528. DOI: 10.1080/19443994.2015.1004598.
  • Sokker, H. H.; El-Sawy, N. M.; Hassan, M. A.; El-Anadouli, B. E. Adsorption of Crude Oil from Aqueous Solution by Hydrogel of Chitosan-Based Polyacrylamide Prepared by Radiation Induced Graft Polymerization. J. Hazard Mater. 2011, 190, 359–365. DOI: 10.1016/j.jhazmat.2011.03.055.
  • Li, J.; Luo, M.; Zhao, C. J.; Li, C. Y.; Wang, W.; Zu, Y. G.; Fu, Y. J. Oil Removal from Water with Yellow Horn Shell Residues Treated by Ionic Liquid. Bioresour Technol. 2013, 128, 673–678.
  • Kenes, K.; Yerdos, O.; Zulkhair, M.; Yerlan, D. Study on Effectiveness of Thermally Treated Rice Husks for Petroleum Adsorption. J. Non-Cryst. Solid. 2012, 358, 2964–2969. DOI: 10.1016/j.jnoncrysol.2012.07.017.
  • Nikkhah, A. A.; Zilouei, H.; Asadinezhad, A.; Keshavarz, A. Removal of Oil from Water Using Polyurethane Foam Modified Nanoclay. Chem. Eng. J. 2015, 262, 278–285. DOI: 10.1016/j.cej.2014.09.077.
  • Anirudhan, T. S.; Suchithra. P. S.;. Equilibrium Kinetic and Thermodynamic Modeling for the Adsorption of Heavy Metals onto Chemically Modified Hydrotalcite. Indian J. Chem. Technol. 2010, 17, 247–259.
  • Teli, M. D.; Valia, S. P. Application of Modified Coir fiber as Eco-Friendly Oil Sorbent. J. Fashion Technol. Textile Eng. 2013, 1, 1–5.
  • Barka, N.; Abdennouri, M.; El Makhfouk, M.; Qourzal, S. Biosorption Characteristics of Cadmium and Lead onto Eco-Friendly Dried Cactus (Opuntiaficusindica) Cladodes. J. Environ. Chem. Eng. 2013, 1, 144–149. DOI: 10.1016/j.jece.2013.04.008.
  • Akpomie, K. G.; Dawodu, F. A.; Adebowale, K. O. Mechanism on the Sorption of Heavy Metals from Binary Solution by a Low-Cost Montmorillonite and Its Desorption Potential. Alex. Eng. J. 2015, 54, 757–767. DOI: 10.1016/j.aej.2015.03.025.
  • Meitei, M. D.; Prasad, M. N. V. Pb(II) and Cd(II) Biosorption on Spirodela Polyhiza Scheleiden Biomass. J. Environ. Chem Eng. 2013, 1, 200–207. DOI: 10.1016/j.jece.2013.04.016.
  • Wang, J.; Zheng, Y.; Wang, A. Kinetic and Thermodynamic Studies on the Removal of Oil from Water Using Superhydrophobic Kapok Fiber. Water Environ. Res. 2014, 8, 360–365.
  • Li, Y.; Xia, B.; Zhao, Q.; Liu, F.; Zhang, P.; Du, Q.; Wang, D.; Li, D.; Wang, Z.; Xia, Y. Removal of Copper Ions from Aqueous Solution by Calcium Alginate Immobilized Kaolin. J. Environ. Sci. 2011, 23, 404–411.
  • Nessim, R. B.; Bassiouny, A. R.; Zaki, H. R.; Moawad, M. N.; Kandeel, K. M. Biosorption of Pb and Cd Using Marine Algae. Chem. Ecolo. 2011, 27, 579–594. DOI: 10.1080/02757540.2011.607439.

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