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Arjun K Venkatesan

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Articles 40
Citations 329
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Recent Articles
1.
Tang Y, Wang M, Venkatesan A, Gobler C, Mao X
J Hazard Mater . 2025 Mar; 490:137827. PMID: 40048785
1,4-Dioxane is a persistent contaminant that is not effectively removed by conventional water treatment processes. In this study, bench-scale granular activated carbon (GAC)-based biologically active filtration (BAF) systems were developed...
2.
Shaffer K, Ye X, Lee C, Shipley O, McDonough C, Venkatesan A, et al.
Sci Total Environ . 2025 Feb; 967:178742. PMID: 39946876
Per- and polyfluoroalkyl substances (PFAS) are persistent organic pollutants in estuaries. In this study, 19 PFAS were quantified in surface waters, sediments, marine invertebrates (aquatic worms, Eastern oysters, and blue...
3.
Lee C, Shipley O, Ye X, Fisher N, Gallagher A, Frisk M, et al.
Environ Sci Technol . 2024 Jul; 58(29):13087-13098. PMID: 38995999
Per- and polyfluoroalkyl substances (PFAS) enter the marine food web, accumulate in organisms, and potentially have adverse effects on predators and consumers of seafood. However, evaluations of PFAS in meso-to-apex...
4.
Lee C, Venkatesan A
Chemosphere . 2024 Jun; 362:142614. PMID: 38878978
Several studies have demonstrated that air-bubbling and foam fractionation techniques can efficiently remove long-chain PFAS from contaminated water. However, removing short-chain PFAS is challenging due to its lower surface activity...
5.
Londhe K, Lee C, Grdanovska S, Smolinski R, Hamdan N, McDonough C, et al.
Environ Pollut . 2024 Mar; 348:123770. PMID: 38493862
The widespread detection of per- and polyfluoroalkyl substances (PFAS) in environmental compartments across the globe has raised several health concerns. Destructive technologies that aim to transform these recalcitrant PFAS into...
6.
Lee C, Wang M, Nanjappa D, Lu Y, Meliker J, Clouston S, et al.
J Expo Sci Environ Epidemiol . 2023 Dec; 34(3):448-456. PMID: 38052940
Background: The application of wastewater-based epidemiology to track the outbreak and prevalence of coronavirus disease (COVID-19) in communities has been tested and validated by several researchers across the globe. However,...
7.
Zhang Y, Thomas A, Apul O, Venkatesan A
J Hazard Mater . 2023 Aug; 460:132378. PMID: 37643572
We assessed the competitive adsorption between long-chain and short-chain PFAS and the impact of coexisting ions to understand the mechanisms leading to the early breakthrough of short-chain PFAS from granular...
8.
Lee C, Wang M, Clyde P, Mao X, Brownawell B, Venkatesan A
Chemosphere . 2023 Mar; 324:138304. PMID: 36871806
1,4-Dioxane is a recalcitrant pollutant in water and is ineffectively removed during conventional water and wastewater treatment processes. In this study, we demonstrate the application of nitrifying sand filters to...
9.
Tang Y, Wang M, Lee C, Venkatesan A, Mao X
Appl Microbiol Biotechnol . 2023 Jan; 107(2-3):955-969. PMID: 36625913
1,4-Dioxane is a contaminant of emerging concern that has been commonly detected in groundwater. In this study, a stable and robust 1,4-dioxane degrading enrichment culture was obtained from uncontaminated soil....
10.
Londhe K, Lee C, McDonough C, Venkatesan A
Environ Sci Technol . 2022 Oct; 56(22):15207-15219. PMID: 36314557
Many environmentally relevant poly-/perfluoroalkyl substances (PFASs) including perfluorooctane sulfonic acid (PFOS) and perfluorooctanoic acid (PFOA) exist in different isomeric (branched and linear) forms in the natural environment. The isomeric distribution...