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Research Article Open access CC BY 4.0

Sustainable Utilization of Rice Husk Activated Charcoal Through Phytoremediation

E. O. Olagunju, L. O. Ajala, A. G. Farombi

Physical Science International Journal · pp. 81–87 · Published 6 Nov 2014

10.9734/PSIJ/2015/12318

Abstract

The performance of rice husk-based activated carbon prepared by carbonization and chemical activation with zinc chloride was tested with effluent from 7UP Bottling Company, Ngwo, Enugu State, Nigeria, using standard protocols. The result indicated a significant (P<0.05) increase in the pH and temperature of rice husk-based activated carbon treated effluent compared to control with no significant (P>0.05) difference. Overall, the result revealed that there was a general significant (P<0.05) decrease in the total hardness, alkanility, chemical  oxygen demand, biological oxygen demand, nitrate, total dissolved solid, total suspended solid, total solid, sulphate, nitrate, chloride, and metals in rice husk acivated carbon treated filtrate when compared to the untreated. Although, values of physicochemical parameters obtained in filtrate from rice husk-based activated carbon were generally lower than that of commercial, the difference were not statistically significant (P>0.05). The results showed that waste water treated with rice husk activated carbon met the international standards for maximum limits of effluent discharge to sewage, stream and drinking water. The study therefore recommends the use of rice husk-based activated carbon as an efficient and environmental friendly water treament option.

Activated carbon rice husk effluent adsorption environmental pollution waste management

Cited by 2

Design of locally sourced activated charcoal filter from maize cob for wastewater decontamination: an approach to fight waste with waste

Lawrence Olusegun Ajala, Ewa Ezeali Ali, Emmanuel Okewe Nnachi · Physical Sciences Reviews · 2021

Insights into purification of contaminated water with activated charcoal derived from hamburger seed coat

L. O. Ajala, E. E. Ali, N. A. Obasi · International Journal of Environmental Science and Technology · 2021

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