The phytocomponents of the leaf and root extracts of Phyllanthus amarus (Euphorbiaceae) were studied. The constituents of the leaves and roots were identified and quantified by using GC-MS. Result from the phytochemical analyses showed the presence of saponins, tannins, phenolics, anthocyanins, and glycosides in both leaves and root of the plant. Alkaloids and triterpenoids were, however only absent in the root of P. amarus but present in the leaves of the plant. Flavonoids, coumarins and steroids were absent in the leaves but present in the root part. The mean concentration of the phytochemicals investigated in leaves are 0.73±0.01%, 1.85±0.03%, 1.12±0.01%, 1.80±0.01%, 1.59±0.50%, 0.13±0.10%, and 0.86±0.01%, for saponins, tannins, phenolics, anthocyanins, alkaloids, triterpenoids, and glycosides respectively, while the mean concentration of the phytochemicals investigated in roots are 0.91±0.01%, 1.53±0.03%, 0.70±0.01%, 2.97±0.10%, 2.47±0.03%, 0.62±0.01%, 0.90±0.01% and 2.02±0.10% for saponins, tannins, phenolics, steroids, flavonoids, anthocyanins, glycosides and coumarins respectively. Furthermore, the GC-MS analysis of methanol extracts of the leaves and root of P. amarus revealed the presence of three medicinally important bioactive compounds, which are: 9-Octadecenoic acid which has percentage of abundance of 92.23% and 82.46% in leaves and roots of the plant respectively, followed by n-Hexadecanoic acid and Tetradecanoic acid with their corresponding percentage of abundance of 7.7% and 17.54% for leaves and root. These analytical results suggest the plantto possess a significant role in phyto-medicine. The importance of this plant was discussed in line with the role they play in ethnomedicinal life of the people. Keywords: Phyllanthus amarus; Phytochemicals; GC-MS; methanolic extract; Phytocomponents
The zinc oxide nanoparticle was synthesized via precipitation method. It was characterized using SEM-EDX, FTIR and TEM for morphology, elemental, functional groups and internal structure respectively. The physicochemical behaviour of a refinery effluent was assessed. The untreated raw refinery effluent from the point of discharge contained very high concentrations of pollutants for all the parameters, ranging between, pH (6.52-6.82), Turbidity (10-12 NTU), conductivity (266-289μs/cm), COD (116-138 mg/l), BOD (14-18.5 mg/l), DO (7.5-15.6 mg/l), TDS (436-486 mg/l), TSS (127-133 mg/l), Oil and grease (14.8-16.3 mg/l), sulphate (113-125 mg/l) and chloride (240-280 mg/l). The effluent was treated with ZnO nanoparticle and reduced the pollutants to the normal permissible limit set by WHO, FEPA and NESREA standard for portable water. The treated effluent sample showed values ranging between, pH (6.55-6.6), Turbidity (4.2-4.5 NTU), conductivity (245-246 μs/cm), COD (39-40 mg/l), BOD (10 mg/l), DO (5.6-10.4 mg/l), TDS (151-183 mg/l), TSS (24-28 mg/l), Oil and grease (7.3-9.5 mg/l), sulphate (100 mg/l) and chloride (200 mg/l). The heavy metals profile that was investigated are Fe, Cu, Zn, Pb, Cd and Cr of which were found above the WHO and FEPA permissible limit, however, on the contact with the adsorbent therefore reduced the metals to the permissible limit. It can be ascertain that ZnO nanoparticle can be used as an effective adsorbent for the treatment of petrochemical effluent.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
customersupport@researchsolutions.com
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Copyright © 2024 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.