Biosynthesized silica-based zinc oxide nanocomposites for the sequestration of heavy metal ions from aqueous solutionsopen access
- Authors
- Garg, Rishav; Garg, Rajni; Eddy, Nnabuk Okon; Almohana, Abdulaziz Ibrahim; Almojil, Sattam Fahad; Khan, Mohammad Amir; Hong, Seung Ho
- Issue Date
- Jun-2022
- Publisher
- King Saud University
- Keywords
- Heavy metal ions; Water treatment; Adsorption; Nanocomposites; Chemisorption
- Citation
- Journal of King Saud University - Science, v.34, no.4, pp 1 - 8
- Pages
- 8
- Indexed
- SCIE
SCOPUS
- Journal Title
- Journal of King Saud University - Science
- Volume
- 34
- Number
- 4
- Start Page
- 1
- End Page
- 8
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/107691
- DOI
- 10.1016/j.jksus.2022.101996
- ISSN
- 1018-3647
2213-686X
- Abstract
- In the present study, biosynthesized silica-based zinc oxide nanocomposites (nano-SZO) have been explored as nanoadsorbent for sequestrating heavy metal ions viz. Ni2+, Cd(2+& nbsp;)and Cu2+ from synthetic medium. The nanocomposites have been obtained by utilization of agricultural waste by means of green synthetic approach with an average particle size of 30.52 nm and a pH at zero-point charge as 4.8. The process has been optimized at a pH equal to 5.0 for Ni2+ and 6.0 for Cu2+ and Cd2+. Adsorption was best described by Langmuir isotherm and the highest value of maximum adsorption capacity, qm of nano-SZO was obtained for Cu2+ (32.53 mg/g), Ni2+ (32.10 mg/g), and Cd2+ (30.98 mg/g). The studied heavy metal ions are considerably adsorbed by the nano-SZO through chemisorption by active binding with polyhydroxy functionalities attached at the surface of the nanoadsorbent confirming the utilization of biosynthesized nano-SZO as eco-friendly and efficient nano adsorbents for the sequestration of heavy metal ions. (C)& nbsp;2022 The Author(s). Published by Elsevier B.V. on behalf of King Saud University.
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