Affiliation:
1. School of Chemical and Environmental Engineering, China University of Mining and Technology-Beijing, Beijing 100083, China
2. Technical Centre for Soil, Agriculture and Rural Ecology and Environment, Ministry of Ecology and Environment, Beijing 100012, China
Abstract
The migration of light non-aqueous phase liquids (LNAPLs) trapped in porous media is a complex phenomenon. Groundwater table fluctuation can not only affect contaminant migration but also redox conditions, bacterial communities, and contaminant degradation. Understanding LNAPLs’ (e.g., benzene, toluene, ethylbenzene, and xylene (BTEX)) behavior within porous media is critical for the high efficiency of most in situ remediation systems. A laboratory study of single- and double-lithology soil column investigation of the groundwater table fluctuation effect on BTEX transport, using benzene and toluene as typical compounds, in a typical representative model of aquifers subjected to water table fluctuation was undertaken in this study. The results show that benzene and toluene migration in single-lithology soil columns packed with sand was mainly affected by flushing due to the hydraulic force induced by water table fluctuations and that the double-lithology soil column packed with sand and silt was significantly affected by retention due to the higher adsorption induced by 10 cm of silt. The dissolution mainly correlated with the BTEX migration in saturated zones, and the contaminant concentration increased when the water table fell and decreased when the water table rose. For a contaminated site with a single-lithology structure consisting of sand, more attention should be paid to organic contaminant removal within the groundwater, and a double-lithology structure containing silt is more suited to the removal of organic contaminants from the silt layer. The difference in biodegradation kinetics between the groundwater table fluctuation (GTF) zone and the saturated zone should be better understood for the remediation of BTEX compounds.
Funder
National Natural Science Foundation of China
National Key R&D Program of China
Subject
Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology
Reference59 articles.
1. Li, Y., Bai, G., Zou, X., Qu, J., and Wang, L. (2021). Nitrogen Migration and Transformation Mechanism in the Groundwater Level Fluctuation Zone of Typical Medium. Water, 13.
2. (2023, June 10). Technical Guide For Addressing Petroleum Vapor Intrusion At Leaking Underground Storage. U.S. Environmental Protection Agence, Office of Underground Storage Tanks, Washington, DC, USA, Available online: https://www.epa.gov/vaporintrusion/technical-guide-addressing-petroleum-vapor-intrusion-leaking-underground-storage.
3. The role of predicted chemotactic and hydrocarbon degrading taxa in natural source zone depletion at a legacy petroleum hydrocarbon site;Murphy;J. Hazard. Mater.,2022
4. LNAPL Recovery Endpoints: Lessons Learnt Through Modeling, Experiments, and Field Trials;Lari;Groundw. Monit. Remediat.,2020
5. Chronic Toxic Effects of Flutolanil on the Liver of Zebrafish (Danio rerio);Teng;Chem. Res. Toxicol.,2019
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