[1] H. Adejenwo, “The production of activated carbon from elemi (canarium
schweinfurthii) Nutshell using chemical method, A research project, department
of chemical engineering, Ahmadu Bello University, Zaria,” 2006.
[2] R. H. Bradley, I. Sutherland, and E. Sheng, “Carbon surface: Area,
porosity, chemistry, and energy,” Journal of Colloid and Interface Science,
vol. 179, no. 2, pp. 561–569, 1996, doi: 10.1006/jcis.1996.0250.
[3] J. Romanos, “Nanospace engineering of KOH activated carbon,”
Nanotechnology, vol. 23, no. 1, p. 015401, 2012, doi:
10.1088/0957-4484/23/1/015401.
[4] O. P. Olatidoye, S. S. Sobowale, J. V. Akinlotan, and O. O. Olorode,
“Chemical composition and physicochemical characteristics of tropical almond
nuts (terminalia catappia l) cultivated in southwest Nigeria,” Journal of
Medical and Applied Biosciences, 2011.
[5] Y. Soo, N. Chada, M. Beckner, J. Romanos, J. Burress, and P. Pfeifer,
“Adsorbed Methane Film Properties in Nanoporous Carbon Monoliths,” Bulletin of
the American Physical Society, 2013.
[6] World Health Organization, “World Health Organization model list of
essential medicines: 21st list 2019,” Geneva: World Health Organization, 2019,
hdl:10665/325771. WHO/MVP/EMP/IAU/2019.06.
[7] I. K. Adewumi, “Activated carbon for water treatment in Nigeria:
Problems and Prospects,” in Appropriate Technologies for Environmental
Protection in the Developing World, E. K. Yanful, Ed. Dordrecht: Springer,
2009, doi: 10.1007/978-1-4020-9139-1_13.
[8] D. Adinata, W. M. Ashri, and M. K. Aroua, “Preparation and
characterization of activated carbon from palm shell by chemical activation
with K2CO3,” Bioresour Technol, vol. 98, pp. 145–149, 2007.
[9] F. Ahmad, W. M. A. W. Daud, M. A. Ahmad, and R. Radzi, “The effects of
acid leaching on porosity and surface functional groups of cocoa (Theobroma
cacao)-shell based activated carbon,” Chemical Engineering Research and Design,
vol. 91, pp. 1028–1038, 2013.
[10] L. Ai, C. Zhang, F. Liao, Y. Wang, M. Li, L. Meng, and J. Jiang,
“Removal of methylene blue from aqueous solution with magnetite loaded
multi-wall carbon nanotube: kinetic, isotherm and mechanism analysis,” Journal
of hazardous materials, vol. 198, pp. 282–290, 2011.
[11] Li Y., Du Q., Liu T., Peng X., Wang J., Sun J.,
Wang Y., Wu S., Wang Z., Xia Y. "Comparative study of methylene blue dye
adsorption onto activated carbon, graphene oxide, and carbon nanotubes."
Chemical Engineering Research and Design, vol. 91, pp. 361-368, 2013.
[12] Mondal N.K., Kar S. "Potentiality of banana
peel for the removal of Congo red dye from aqueous solution: isotherm, kinetics,
and thermodynamics studies." Applied Water Science, vol. 8, no. 4, p. 157,
2018.
[13] Rahmat N.A., Ali A.A., Hussain N., Muhamad M.S.,
Kristanti R.A., Hadibarata T. "Removal of Remazol Brilliant Blue R from
aqueous solution by adsorption using pineapple leaf powder and lime peel
powder." Water, Air, & Soil Pollution, vol. 227, no. 3, p. 105, 2016.
[14] Meena, A. K., Kadirvelu, K., Mishra, G., & Rajagopal, C. (2022).
Activated carbon from agricultural wastes: A review on potential and
challenges. Journal of Environmental Chemical Engineering, 10(1), 108482.
[15] Ahmad, M. A., Ahmad, N., & Bello, M. M. (2021). Agricultural
waste-derived activated carbon as a sustainable adsorbent for wastewater
treatment: A review. Journal of Cleaner Production, 306, 127834.
[16] Yan, L., & Wang, X. (2021). A review on the applications of
activated carbon for air pollution control. Journal of Cleaner Production, 306,
127784.
[17] Acharya, J., Lenka, N., Rath, P., & Sahoo, B. K. (2021). A
comprehensive review on activated carbon: Development, properties,
characterization and applications. Journal of Environmental Chemical
Engineering, 9(6), 105487.
[18] Wu, X., Gao, J., Zhang, L., Li, M., & Zhou, J. (2021). A review on
the preparation and modification of activated carbon materials and their
applications in environmental fields. Journal of Cleaner Production, 315,
128134.