Maria I. Dragila

Oregon State University, Corvallis, OR 
Soil Science Agriculture, Environmental Engineering, Microbiology Biology
"Maria Dragila"
Cross-listing: Envirotree

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Levintal E, Dragila MI, Zafrir H, et al. (2020) The role of atmospheric conditions in CO and radon emissions from an abandoned water well. The Science of the Total Environment. 722: 137857
Levintal E, Dragila MI, Lensky NG, et al. (2020) Borehole diameter controls thermal‐induced convection and evaporation from a shallow water table Geophysical Research Letters. 47
Levintal E, Dragila MI, Weisbrod N. (2019) Impact of wind speed and soil permeability on aeration time in the upper vadose zone Agricultural and Forest Meteorology. 294-304
Wanzek T, Keiluweit M, Baham J, et al. (2018) Quantifying biogeochemical heterogeneity in soil systems Geoderma. 324: 89-97
Almquist V, Brueck C, Clarke S, et al. (2018) Bioavailable water in coarse soils: A fractal approach Geoderma. 323: 146-155
Paradiś A, Brueck C, Meisenheimer D, et al. (2017) Sandy Soil Microaggregates: Rethinking Our Understanding of Hydraulic Function Vadose Zone Journal. 16: 1-10
Levintal E, Dragila MI, Kamai T, et al. (2017) Free and forced gas convection in highly permeable, dry porous media Agricultural and Forest Meteorology. 232: 469-478
Woolverton P, Dragila MI. (2014) Characterization of hydrophobic soils: a novel approach using mid-infrared photoacoustic spectroscopy. Applied Spectroscopy. 68: 1407-1410
Gray M, Johnson MG, Dragila MI, et al. (2014) Water uptake in biochars: The roles of porosity and hydrophobicity Biomass & Bioenergy. 61: 196-205
Ganot Y, Dragila MI, Weisbrod N. (2014) Impact of thermal convection on CO2 flux across the earth–atmosphere boundary in high-permeability soils Agricultural and Forest Meteorology. 184: 12-24
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