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  1. Home
  2. Browse by Author

Browsing by Author "Tyler, Scott W."

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    Life in a Fishbowl : prospects for the endangered Devils Hole pupfish (Cyprinodon diabolis) in a changing climate
    (2014) Hausner, Mark B.; Wilson, Kevin P.; Gaines, D. Bailey; Suárez Poch, Francisco Ignacio; Scoppettone, Gary; Tyler, Scott W.
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    Polymictic pool behaviour in a montane meadow, Sierra Nevada, CA.
    (2016) Lucas, Ryan G.; Suárez Poch, Francisco Ignacio; Tyler, Scott W.; Moran, Jean E.; Conklin, Martha H.
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    Projecting the effects of climate change and water management on Devils Hole pupfish (Cyprinodon diabolis) survival
    (2016) Hausner, Mark; Wilson, Kevin P.; Gaines, D. Bailey; Suárez Poch, Francisco Ignacio; Scoppettone, G. Gary; Tyler, Scott W.
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    Quantifying coupled deformation and water flow in the rhizosphere using X-ray microtomography and numerical simulations
    (2014) Aravena, Jazmín E.; Berli, Markus; Ruiz , Siul; Suárez Poch, Francisco Ignacio; Ghezzehei, Teamrat A.; Tyler, Scott W.
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    Renewable water : direct contact membrane distillation coupled with solar ponds
    (2015) Suárez Poch, Francisco Ignacio; Ruskowitz, Jeffrey A.; Tyler, Scott W.; Childress, Amy E.; CEDEUS (Chile)
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    The Response of Playa and Sabkha Hydraulics and Mineralogy to Climate Forcing
    (2006) Tyler, Scott W.; Muñoz Pardo, José Francisco; Wood, Warren W.
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    The shallow thermal regime of Devils Hole, Death Valley National Park
    (2013) Hausner, Mark B.; Wilson, Kevin P.; Gaines, D. Bailey; Suárez Poch, Francisco Ignacio; Tyler, Scott W.
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    Transport of simazine in unsaturated sandy soil and predictions of its leaching under hypothetical field conditions
    (ELSEVIER, 2007) Suarez, Francisco; Bachmann, Jaime; Munoz, Jose F.; Ortiz, Cristian; Tyler, Scott W.; Alister, Claudio; Kogan, Marcelo
    The potential contamination of groundwater by herbicides is often controlled by processes in the vadose zone, through which herbicides travel before entering groundwater. In the vadose zone, both physical and chemical processes affect the fate and transport of herbicides, therefore it is important to represent these processes by mathematical models to predict contaminant movement. To simulate the movement of simazine, a herbicide commonly used in Chilean vineyards, batch and miscible displacement column experiments were performed on a disturbed sandy soil to quantify the primary parameters and processes of simazine transport. Chloride (Cl-) was used as a non-reactive tracer, and simazine as the reactive tracer. The Hydrus-1D model was used to estimate the parameters by inversion from the breakthrough curves of the columns and to evaluate the potential groundwater contamination in a sandy soil from the Casablanca Valley, Chile. The two-site, chemical non-equilibrium model was observed to best represent the experimental results of the miscible displacement experiments in laboratory soil columns. Predictions of transport under hypothetical field conditions using the same soil from the column experiments were made for 40 years by applying herbicide during the first 20 years, and then halting the application and considering different rates of groundwater recharge. For recharge rates smaller than 84 mm year(-1), the predicted concentration of simazine at a depth of I m is below the U.S. EPA's maximum contaminant levels (4 mu g L-1). After eight years of application at a groundwater recharge rate of 180 mm year I (approximately 50% of the annual rainfall), simazine was found to reach the groundwater (located at 1 m depth) at a higher concentration (more than 40 mu g L-1) than the existing guidelines in the USA and Europe. (c) 2007 Elsevier B.V.. All rights reserved.
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    Understanding the expected performance of large-scale solar ponds from laboratory-scale observations and numerical modeling
    (2014) Suarez Poch, Francisco; Ruskowitz, Jeffrey A.; Childress, Amy E.; Tyler, Scott W.

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