Transport of Anions and Herbicides in a Loamy and a Sandy Field Soil
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- Type
- article
- Published
- 1995-04-01
- Cited by
- 141
- References
- 33
- OpenAlex
- https://openalex.org/W1992547599
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:128406478
Keywords
Terbuthylazine, Loam, Atrazine, Infiltration (HVAC), Environmental science
References
- Atrazine and Bromide Movement through a Silt Loam Soil
- Pesticides in groundwater: the aldicarb story in Suffolk County, NY.
- Factors Affecting Preferential Flow of Water and Atrazine through Earthworm Burrows under Continuous No‐Till Corn
- Effect of conventional vs. No-tillage on pesticide leaching to shallow groundwater
- Pesticide and Nutrient Movement into Subsurface Tile Drains on a Silt Loam Soil in Indiana
- Influence of amount and method of irrigation water application on leaching of atrazine
- Bromide in the Natural Environment: Occurrence and Toxicity
- Sorption and Retention of Herbicides in Vertically Oriented Earthworm and Artificial Burrows
- Field Study of Solute Movement in a Highly Aggregated Oxisol with Intermittent Flooding: II. Picloram 1
- Degradation and movement of aldicarb residues in Florida citrus soils
- Preferential flow in a sandy vadose zone: 1. Field observation
- Single column ion chromatography. I: Analysis of inorganic anions in soils
- Stability Analysis of Water Movement in Unsaturated Porous Materials: 3. Experimental Studies
- A Field Study Using Dyes to Characterize Preferential Flow of Water
- A Field Study to Evaluate Leaching of Aldicarb, Metolachlor, and Bromide in a Sandy Loam Soil
- SUSCEPTIBILITY OF SOILS TO PREFERENTIAL FLOW OF WATER : A FIELD STUDY
- Leaching of Atrazine in the Root Zone of an Alluvial Soil in Nebraska 1
- Occurrence of 38 pesticides in various French surface and ground waters
- Werner Perkow, Wirksubstanzen der Pflanzenschutz‐ und Schädlingsbekämpfungsmittel (Loseblatt‐Sammlung in Plastikordner). 624 S. Berlin‐Hamburg 1971: Paul Parey, DM 116,00
- Preferential movement of pesticides and tracers in agricultural soils
Cited by
- Leaching of Terbuthylazine and Bromacil Through Field Soils
- Transport modes and pathways of the strongly sorbing pesticides glyphosate and pendimethalin through structured drained soils.
- Concentration of selected sulfonylurea, sulfonamide, and imidazolinone herbicides, other pesticides, and nutrients in 71 streams, 5 reservoir outflows, and 25 wells in the Midwestern United States, 1998
- Assessment and simulation of atrazine as influenced by drainage and irrigation: an interface between RZWQM and ArcView GIS
- Soil column leaching of pesticides.
- Site S-7 VOC Transport modeling for the Vadose Zone Monitoring System (VZMS), McClellan AFB - 1999 Semi-Annual Report
- Application of the vadose zone monitoring system at a TCE-contaminated site: Field data and modeling summary
- Dominant controls on pesticide transport from tile to catchment scale: Lessons from a minimalist model
- Assessing pesticide leaching at the regional scale : a case study for atrazine in the Dyle catchment/
- Fate of heavy metals in a strongly acidic shooting‐range soil: small‐scale metal distribution and its relation to preferential water flow
- Experiments in hydrologic solute transport
- Water and solute movement in soil as influenced by macropore characteristics. 2. Macropore tortuosity
- Modeling the effect of rainfall intermittency on the variability of solute persistence at the soil surface
- Side effects of the herbicide triasulfuron on collembola under laboratory conditions
- Using TDR and modeling tools to investigate effects of interactive factors on preferential flow and transport in field sandy clay soil
- Modeling Solute Leaching in Soils by Diffusion-Limited Aggregation: Basic Concepts and Application to Conservative Solutes
- Solute movement in an intact soil core under different ponding heights
- The fate of terbuthylazine in test microcosms
- Identification of Transport Processes in Soil Cores Using Fluorescent Tracers
- Modelling of solute transport in a large undisturbed lysimeter, during steady-state water flux
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