Transport and distribution of organic and biological compounds in unsaturated porous media depend on the chemical and physical properties of the media, the fluid and gas properties, and the characteristics of these substances. Because of the complexity of the transport processes in natural soils, needs exist to study these properties in experimental settings that closely mimic the natural complexities. On the other hand, it is often necessary to simplify the experimental setups to isolate single transport mechanisms of interest. In the proposed study, they intend to design and develop an intermediate- scale core facility to study flow and transport in variably-saturated soils. The laboratory will consist of two parts: a 1-m column and a 2 x 1 m sandbox. Both will be made of stainless steel and teflon and will be instrumented to monitor moisture content distributions, gas and fluid pressure and will have access ports for gas and liquid sampling. The column and the sandbox will be used to study 1-D and 2-D flow and transport of biological and organic compounds under well-controlled saturated or unsaturated conditions. In addition, the sandbox will permit studies of the effects of physical and chemical soil heterogeneities, such as lenses and layers, on unsaturated flow and transport. The facility will be available to all University of Arizona superfund research groups and it is currently anticipated that it will be used by at least three of the proposed superfund projects.

Project Start
Project End
Budget Start
Budget End
Support Year
7
Fiscal Year
1996
Total Cost
Indirect Cost
Thomas, Andrew N; Root, Robert A; Lantz, R Clark et al. (2018) Oxidative weathering decreases bioaccessibility of toxic metal(loid)s in PM10 emissions from sulfide mine tailings. Geohealth 2:118-138
Yan, Ni; Liu, Fei; Liu, Boyang et al. (2018) Treatment of 1,4-dioxane and trichloroethene co-contamination by an activated binary persulfate-peroxide oxidation process. Environ Sci Pollut Res Int :
Dehghani, Mansooreh; Sorooshian, Armin; Nazmara, Shahrokh et al. (2018) Concentration and type of bioaerosols before and after conventional disinfection and sterilization procedures inside hospital operating rooms. Ecotoxicol Environ Saf 164:277-282
Keshavarzi, Behnam; Abbasi, Sajjad; Moore, Farid et al. (2018) Contamination Level, Source Identification and Risk Assessment of Potentially Toxic Elements (PTEs) and Polycyclic Aromatic Hydrocarbons (PAHs) in Street Dust of an Important Commercial Center in Iran. Environ Manage 62:803-818
Dodson, Matthew; de la Vega, Montserrat Rojo; Harder, Bryan et al. (2018) Low-level arsenic causes proteotoxic stress and not oxidative stress. Toxicol Appl Pharmacol 341:106-113
Soltani, Naghmeh; Keshavarzi, Behnam; Sorooshian, Armin et al. (2018) Oxidative potential (OP) and mineralogy of iron ore particulate matter at the Gol-E-Gohar Mining and Industrial Facility (Iran). Environ Geochem Health 40:1785-1802
Simon-Pascual, Alvaro; Sierra-Alvarez, Reyes; Ramos-Ruiz, Adriana et al. (2018) Reduction of platinum (IV) ions to elemental platinum nanoparticles by anaerobic sludge. J Chem Technol Biotechnol 93:1611-1617
Lyu, Ying; Brusseau, Mark L; Chen, Wei et al. (2018) Adsorption of PFOA at the Air-Water Interface during Transport in Unsaturated Porous Media. Environ Sci Technol 52:7745-7753
Zeng, Chao; Nguyen, Chi; Boitano, Scott et al. (2018) Cerium dioxide (CeO2) nanoparticles decrease arsenite (As(III)) cytotoxicity to 16HBE14o- human bronchial epithelial cells. Environ Res 164:452-458
Zeb, Bahadar; Alam, Khan; Sorooshian, Armin et al. (2018) On the Morphology and Composition of Particulate Matter in an Urban Environment. Aerosol Air Qual Res 18:1431-1447

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