Remediation of heavy-metal-contaminated sediments in USA using ultrasound and ozone nanobubbles
Document Type
Article
Publication Date
2-18-2019
Abstract
The lower 12·875 km of the Passaic River (NJ, USA) is heavily contaminated due to industrial activities-specifically heavy metal extraction from chromium (Cr)-ore-processing plants and production of pesticides and herbicides. Conventional methods for remediating contaminated sediments have limited application due to the tidal action and urban development of the contaminated section of the Passaic River. Hence, this study proposes an in situ technology using ultrasound and ozone (O3) nanobubbles to remediate the sediments. Ultrasound is capable of desorbing heavy metals from soil, and ozone can oxidise the released heavy metals to a form that is mobile for ease of extraction. Nanobubbles are used as an effective ozone delivery method for the oxidation of heavy metals. Bench-scale tests were performed to evaluate the feasibility of the proposed technology. Ozone nanobubbles increased the solubility of ozone in water and reduced wastage. Also, due to the high ozone concentrations in water, chromium oxidation increased. A synthetic soil with a grain size distribution similar to that of actual river sediments was artificially contaminated with chromium and used in this research. Test results showed a 97·54% chromium removal efficiency, suggesting the feasibility of the proposed technology for pilot-scale studies.
Identifier
85067369538 (Scopus)
Publication Title
Journal of Environmental Engineering and Science
External Full Text Location
https://doi.org/10.1680/jenes.18.00012
e-ISSN
1496256X
ISSN
14962551
First Page
130
Last Page
138
Issue
2
Volume
14
Grant
1634857
Fund Ref
National Science Foundation
Recommended Citation
Batagoda, Janitha Hewa; Hewage, Shaini Dilsha Aluthgun; and Meegoda, Jay N., "Remediation of heavy-metal-contaminated sediments in USA using ultrasound and ozone nanobubbles" (2019). Faculty Publications. 7781.
https://digitalcommons.njit.edu/fac_pubs/7781
