INTERNATIONAL JOURNAL OF CHEMISTRY AND CHEMICAL PROCESSES (IJCCP )

E-I SSN 2545-5265
P- ISSN 2695-1916
VOL. 10 NO. 3 2024
DOI: 10.56201/ijccp.v10.no3.2024.pg35.41


Comparative Analysis of Elemental Composition of Palm Kernel (Elaeis guineensis) and Coconut (Cocosnucifera) Shells

Inetianbor Oseghale Cyril, Irabor Godwin Eromosele and Osagie Kingsley Ehikioya


Abstract


The elemental compositions present in the shells of palm kernel and coconut were determined using atomic absorption spectrophotometer (AAS) and flame photometer after digestion. The concentration of the elements in coconut shell were; calcium (24.00±0.26 mg/kg), iron (27.41±0.21 mg/kg), zinc (17.05±0.26 mg/kg) and magnesium (125.20±0.21 mg/kg) were higher when compared to their compositions in palm kernel shell with calcium (15.00±0.03 mg/kg), iron (14.57±0.03 mg/kg), zinc (10.00±0.26 mg/kg) and magnesium (98.20±0.03 mg/kg). Other element concentrations were; potassium (220.20±0.03 mg/kg), sodium (10.40±0.01 mg/kg) and copper (4.64±0.03 mg/kg) in palm kernel shell were higher as compared to coconut shell with potassium (198.05±0.17 mg/kg), sodium (15.40±0.32 mg/kg) and copper (3.00±0.21 mg/kg). However, lead was below detectable limit. Palm kernel and coconuts shell have similar metals present although in different concentrations. This study revealed that the shells of palm kernel and coconut contains substantial amount of mineral elements which make them suitable alternative cheap sources for these minerals element.


keywords:

Biochemical, Cocosnucifera, Composition, Elaeis guineensis, Macro-element, Mineral


References:


Adrogue, H.J., and Madias, N.E., (2014). “The impact of sodium and potassium on hypertension
risk”. Semin Nephrol. 34(3): 257-72.
Akpakpan,A.E., Eduok, U.M., Udiong, D.S., Udo, I.E., Ntukuyoh, A.I. (2012). Levels of Metals in
Kernels and Shells of Oil Palm and Coconut Fruits. International Journal of Modern
Chemistry. 2(1): 20-27.
Alloway, B.J., Jackson, A.P., and Morgan, H. (1990). “The accumulation of cadmium by vegetables
grown on soils contaminated from a variety of sources”. Sci Total Environ. 91: 223–36.
Baldwin, D. R. and Marshall, W. J. (1999). Heavy metal poisoning and its laboratory
investigation,” Annals of Clinical Biochemistry. 36(3): 267–300.
Beard, J.L. (2001). “Iron biology in immune function, muscle metabolism and neuronal
functioning”. J. Nutr. 131: 5685-5695.
Berdanier, C.D., Dwyer, J.T. and Heber, D. (2013). “Handbook of Nutrition and Food”. Third
Edition. CRC Press. 211–224.
Chinthani, D.L. and Mevan, P. (2015). A Physio-Chemical Analysis of Coconut Shell Powder.
Procedia Chemistry. 16: 222 – 228
Ekebafe, L.O., Imanah, J.E., Okiemien, F.E. (2010). Physico-Mechanical Properties of Rubber Seed
Shell Carbon-filled Natural Rubber Compounds. Chemical Industry & Chemical
Engineering Quarterly. 16 (2): 149?156
Erum, S. and Ahmad, S.S. (2010). “Integrated Assessment of Heavy Metals (Fe, Zn, Pb, Ni, Cd and
Cr) Pollution along Motorway M-2, Pakistan”. Soil and Environment, 29: 110-116.
Galan, P., Viteri, F., Bertrais, S., Czernichow, S. and Faure,, H. (2005). “Serum concentrations of
beta carotene, vitamins C and E, zinc and selenium are influenced by sex, age, diet, smoking
status, alcohol consumption and corpulence in a general French adult population”. Eur. J.
Clin. Nutr. 59: 1181-1190.
Geleijnse, J. M., Kok, F. J., and Grobbee, D. E., (2004). "Impact of dietary and lifestyle factors on
the prevalence of hypertension in Western populations". European Journal of Public
Health. 14(3): 235–239.
Igwenyi, I.O., Agwor, A.S., Nwigboji, I.U., Agbafor, K.N., and Offor, C.E., (2014). “Proximate
Analysis, Mineral and Phytochemical Composition of Euphorbia Hyssopifolia”. IOSR
Journal of Dental and Medical Sciences. 13(6): 41-43.
Jackson, M.L. (1973). Soil and plant chemical analysis. Prentice Hall of India Pvt. Ltd., New Delhi.
James, C.S. (1995). Nut consumption and body weight. America Journal of Clinical Nutrition. 78
(Suppl.):647S-650S.
Malhotra, V.K. (1998). “Biochemistry for Students”. Tenth Edition. Jaypee Brothers Medical
Publishers (P) Ltd, New Delhi, India.
Micronutrient Information Center, (2016). “Minerals”. Linus Pauling
Institute, regon State
University, Corvallis.
Murray, R.K., Granner, D.K., Mayes, P.A. and Rodwell, V.W. (2000). “Harper’s Biochemistry”.
25th Edition, McGraw-Hill, Health Profession Division, USA.
National Research Council (US) Subcommittee on the Tenth Edition of the Recommended Dietary
Allowances (1989). "10". In National Academies Press (US). Recommended Dietary
Allowances. National Academies Press (US).
Ogundiran, M.B., Babayemi, J.O., Nzeribe, C.G. (2011). Determination of metal content and an
assessment of the potential use of waste cashew nut ash (CNSA) as a source for potash
production. BioRes. 6(1): 529-536.
Okonkwo, C.O. and Ozoude, U.J. (2015). “The impact of processing on the nutritional, mineral and
vitamin composition of palm kernel nut (Elaeis guineensis)”. African Journal of Food
Science. 9(10): 504 – 507.
Prasad, A.S. (1993). “Essential and Toxic Elements in Human Health and Disease: an Update”.
Wiley-Liss. New York.
Sunday, E.A., Israel, A.U. and Magu, T.O. (2016). “Proximate analysis and mineral element
composition of false yam (icacina trichantha) tuber and
oyster
mushroom
(pleurotus
ostreatus)”. Int J Chem Sci 1: 31-39.
Sunggyu, L. (2005). “Encyclopedia of Chemical Processing. Edn 3. CRC Press. 1: 31-33.
Tan, J.C., Burns, D.L. and Jones, H.R. (2006). “Severe ataxia, myelopathy and peripheral
neuropathy due to acquired copper deficiency in a patient with history of gastrectomy”. J.
Paenteral Nutr. 30: 446-450.
Udayakumar, R. and Begum, V.H. (2004). “Elemental analysis of Medicinal Plants used in
controlling infectious diseases”. Hamdard Medicus. 67: 35-6.


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