Anaerobic degradation of dicamba and metribuzin in riparian wetland soils
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[1] R. B. Reneau,et al. Denitrification potential of nontidal riparian wetland soils in the Virginia Coastal Plain , 1996 .
[2] N. Snyder. Evaluation of a nontidal riparian wetland as a naturally occurring decontamination zone , 1995 .
[3] R. Kanwar,et al. Dissipation and Distribution of Herbicides in the Soil Profile , 1995 .
[4] S. Ragsdale,et al. Anaerobic pathway for conversion of the methyl group of aromatic methyl ethers to acetic acid by Clostridium thermoaceticum. , 1994, Biochemistry.
[5] J. Tiedje,et al. Analysis of competition in soil among 2,4-dichlorophenoxyacetic acid-degrading bacteria , 1994, Applied and environmental microbiology.
[6] J. Tiedje,et al. Use of gene probes to aid in recovery and identification of functionally dominant 2,4-dichlorophenoxyacetic acid-degrading populations in soil , 1994, Applied and environmental microbiology.
[7] R. Cooke,et al. Pesticide Contamination of Groundwater in Virginia: BMP Impact Assessment , 1993 .
[8] M. Eldan,et al. Metribuzin and metabolites in Wisconsin (U.S.A.) well water , 1993 .
[9] D. Berry,et al. Degradation of dicamba by an anaerobic consortium enriched from wetland soil , 1993, Applied and environmental microbiology.
[10] Stephen H. Zinder,et al. Physiological Ecology of Methanogens , 1993 .
[11] W. Inskeep,et al. Degradation and Transport of Dicamba in a Clay Soil , 1992 .
[12] T. Moorman,et al. Transformation and Mineralization of Metribuzin in Surface and Subsurface Horizons of a Mississippi Delta Soil , 1989 .
[13] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .
[14] William A. Jury,et al. Evaluation of Pesticide Groundwater Pollution Potential from Standard Indices of Soil‐Chemical Adsorption and Biodegradation , 1987 .
[15] J. Weber,et al. Adsorption, Mobility, and Efficacy of Metribuzin as Influenced by Soil Properties , 1985, Weed Science.
[16] T. Parkin,et al. Adaptation of Denitrifying Populations to Low Soil pH , 1985, Applied and environmental microbiology.
[17] F. T. Corbin,et al. The Determination of Metribuzin and Its Metabolites by High Pressure Liquid Chromatography , 1983 .
[18] D. Marx,et al. Fate of Metribuzin, Metolachlor, and Fluometuron in Soil , 1982, Weed Science.
[19] R. Hance,et al. Kinetics of linuron and metribuzin degradation in soil , 1979 .
[20] R. Train,et al. Quality criteria for water , 1979 .
[21] D. Penner,et al. Role of pH on Metribuzin Dissipation in Field Soils , 1976, Weed Science.
[22] G. Webster,et al. Field degradation of the herbicide metribuzin and its degradation products in a Manitoba sandy loam soil , 1976 .
[23] G. Stephenson,et al. Behavior and Fate of Metribuzin in Eight Ontario Soils , 1976, Weed Science.
[24] Allan E. Smith,et al. Microbiological degradation of the herbicide dicamba in moist soils at different temperatures , 1975 .
[25] A. Smith. Breakdown of the herbicide dicamba and its degradation product 3,6-dichlorosalicylic acid in prairie soils. , 1974, Journal of agricultural and food chemistry.
[26] R. Zimdahl,et al. Rate of Degradation of Metribuzin and Two Analogs in Soil , 1974, Weed Science.
[27] Allan E. Smith. DEGRADATION OF DICAMBA IN PRAIRIE SOILS , 1973 .
[28] J. F. Stritzke,et al. Degradation of Dicamba, Picloram, and Four Phenoxy Herbicides in Soils , 1973, Weed Science.
[29] Allan E. Smith. Transformation of dicamba in Regina heavy clay , 1973 .
[30] T. Lavy,et al. Dissipation and Phytotoxicity of Dicamba , 1969, Weed Science.
[31] F. T. Corbin,et al. Influence of pH on Detoxication of Herbicides in Soil , 1967 .