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Evaluation of the solar photocatalytic degradation of organochlorine compound trichloroethanoic acid using titanium dioxide and zinc oxide in the Caribbean region

Paul, P.; Tota-Maharaj, K.

Authors

P. Paul



Abstract

© IWA Publishing 2015. Advanced oxidation processes driven by solar energy can be an efficient method in removing organochlorine compounds from river water especially in tropical environments like the Caribbean region. The feasibility of solar photocatalytic degradation of an organochlorine compound, namely trichloroethanoic acid (TCA), which is commonly used in the Caribbean islands of Trinidad and Tobago, was separately assessed using titanium dioxide and zinc oxide as photocatalysts in suspended solution. Overall the prototype solar photoreactor operated and performed efficiently for the photodegradation of TCA. This study showed that a basic photocatalytic oxidation method for treating water using solar energy as the primary driver gives enhanced decomposition rates of the organochlorine compound when coupled to the additional application of the two separate semiconductor photocatalysts. The results further showed that for varying concentrations of TCA and photocatalysts alike, the organochlorine compound could be completely photocatalytically degraded using short exposure times under the applied influx of solar radiation. This means that this process could be optimised by judicious use of sensors so that dosage rates of the photocatalyst could be altered with variations in influent contamination levels, and the exposure time in the reactor could be altered according to daily variations in solar radiation intensity.

Citation

Paul, P., & Tota-Maharaj, K. (2015). Evaluation of the solar photocatalytic degradation of organochlorine compound trichloroethanoic acid using titanium dioxide and zinc oxide in the Caribbean region. Water Science and Technology: Water Supply, 15(3), 559-568. https://doi.org/10.2166/ws.2015.005

Journal Article Type Article
Acceptance Date Jan 20, 2015
Online Publication Date Jan 20, 2015
Publication Date Jan 1, 2015
Deposit Date Aug 16, 2019
Journal Water Science and Technology: Water Supply
Print ISSN 1606-9749
Electronic ISSN 1607-0798
Publisher IWA Publishing
Peer Reviewed Peer Reviewed
Volume 15
Issue 3
Pages 559-568
DOI https://doi.org/10.2166/ws.2015.005
Keywords photocatalysis, small island developing states, solar disinfection, titanium dioxide, trichloroethanoic acid, zinc oxide
Public URL https://uwe-repository.worktribe.com/output/2273325
Publisher URL https://doi.org/10.2166/ws.2015.005