Quantifying Preferential Flow by Breakthrough of Sequentially Applied Tracers Silt Loam Soil

Author:

Kung K.-J. S.1,Kladivko E. J.2,Gish T. J.3,Steenhuis T. S.4,Bubenzer G.5,Helling C. S.3

Affiliation:

1. Dep. of Soil ScienceMadisonWIUSA

2. Dep. of AgronomyPurdue Univ.West LafayetteINUSA

3. Weed Science Lab.USDA‐ARS, BARC‐W10300 Baltimore Blvd.BeltsvilleMD20705‐2350USA

4. Dep. of Agric. and Biol. Eng.Cornell Univ.IthacaNY14850USA

5. Dep. of Biol. System Eng.Univ. of WisconsinMadisonWI53706‐1299USA

Funder

U.S. Department of Agriculture

Publisher

Wiley

Subject

Soil Science

Reference22 articles.

1. Alexander R.B. R.A.Smith andG.E.Schwarz 1995.The regional transport of point and nonpoint‐source nitrogen to the Gulf of Mexico. p.127–132.InProc. of the First Gulf of Mexico Hypoxia Manage. Conf. Hypoxia in the Northern Gulf of Mexico: Past present and future. Kenner LA. 5–6 Dec. 1995. Available athttp://www.gmpo.gov/nutrient/front.html(verified 11 May 2000).

2. Difluorobenzoates as Nonreactive Tracers in Soil and Ground Water

3. Forward modeling to simulate the ground‐penetrating radar patterns in heterogeneous sandy soils;Casper D.A.;Geophysics,1996

4. Herbicide and tracer movement to field drainage tiles under simulated rainfall conditions

5. Comparison of Tracer Mobilities under Laboratory and Field Conditions

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