INTERNATIONAL JOURNAL OF CHEMISTRY AND CHEMICAL PROCESSES (IJCCP )

E-I SSN 2545-5265
P- ISSN 2695-1916
VOL. 10 NO. 1 2024
DOI: 10.56201/ijccp.v10.no1.2024.pg73.78


Volatile Constituents of the Wild Green Leaf (Amaranthus viridis) Growing in the Niger Delta Region of Nigeria

Edet O. Odokwo and Martha S. Onifade


Abstract


The volatile constituents of the leaves of Amarathus viridis collected from the wild have been identified and quantitied. Fresh leaves of the plant material were subjected to extraction via hydrodistillation technique. The volatile extract was analyzed for its phyto-composition with the aid of a gas chromatography-mass spectrometry (GC-MS). Eight (8) major phyto-compounds which include: propanoic acid, 2,3-dihydroxy- (10.22%), 2-furancarboxaldehyde 5-methyl- (5.92%), propanedioic acid, propyl- (5.76%), 2-isopropoxyethylamine (5.36%), 2-propanone, 1- hydroxy- (4.82%), catechol (4.78%), acetic acid (4.60%) and dodecanoic acid (4.12%) were identified and quantified. The present study has established the volatile phytochemical constituents of the leaves of Amarathus viridis collected from the wild.


volatile extract, Amarathus viridis leaves, GC-MS


References:


Deshmukh, G. and Manyar, H. (2024). Production pathways of acetic acid and it’s versatile
applications in the food industry. School of Chemistry and Chemical Engineering, Queen’s
University Belfast, UK.
Goldberg, I. and Rokem, J.S. (2009). Organic and fatty acid production, microbial, in:
Encyclopedia of microbiology, 3rd ed. The Hebrew University of Jerusalem, Jerusalem,
Isreal, pp. 421-442.
Hamilton-Amachree, A. and Odokwo, O.E. (2022). GC-MS analysis of the volatile activity of the
crude honey residue from Takum Local Government Area of Taraba State, Nigeria. African
Scientist, 23(3): 193-199.Odokwo, E.O. and Onifade, M.S. (2020). Volatile constituents of the leaves and stem of Justicia
secunda Vahl. Communication in Physical Sciences, 6(2): 827- 834.
Odokwo, O.E. and Uzoekwe, N.M., 2022. Gas chromatography-mass spectrometry analysis of the
solvent-solvent extract of Vernonia hymenolepsis leaves. Communication in Physical
Sciences, 8(4): 620-625.
Paulpati, S., Babu, S.B. and Nanasu, M.L. (2014). Phytochemical and pharmacological potential
of Amaranthus viridis L. International Journal of Phytomedicine, 6: 3222-3226.
Sandhya, S., Talukdar, J. and Bhaishya, D. (2016). Chemical and biological properties of lauric
acid: A review. International Journal of Advanced Research, 4(7): 1123-1128.
Schweigert, N., Zehnder, J.B. and Eggen, R.I.L. (2001). Chemical properties of catechols and their
molecular modes of toxic action in cells, from microorganisms to mammals.
Environmental Microbiology, 3(2): 81-91.
Shmuel, Y. (2004). Dictionary of food compounds with CD-ROM: Additives, flavors, and
ingredients. Chapman & Hall/CRC, Boca Raton.
Sunday, E.A., Gift, W.P. and Boobondah, W.J. (2021). Phytochemistry and antioxidant activity of
Amaranthus viridis L (green leaf). World Journal of Advanced Research and Reviews,
12(02): 306-314.
Thanikachalam, V. and Jayaraj, I.A. (2021). Phytochemistry of Amaranthus viridis: GC-MS
analysis. International Journal of Current Research and Review, 13(07): 162-166.
Uzoekwe, N.M. and Odokwo, E.O. (2023). Phytoester profiling of the nut of Spondias mombin.
Faculty of Natural and Applied Sciences Journal of Scientific Innovations, 5(2): 158-160.
Yisak, H., Yaya, E.E., Chandravanshi, B.S. and Redi-Abshiro, M. (2021). Volatile compounds in
two varieties of teff ((Erogrostis tef (Zuccagni) Trotter) cultivated in Ethiopa by gas
chromatography-mass spectrometry. International Journal of Food Properties, 24(1):
1279-1288.
Yoshitaka, T. and Nguyen, V. (2007). Edible wild plants of Vietnam: the bountiful garden. Orchid
Press, Thailand.


DOWNLOAD PDF

Back