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Environmental Science & Technology
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March 29, 2022
Modeling the Reduction Kinetics of Munition Compounds by Humic Acids
Kevin P Hickey, Jimmy Murillo-Gelvez, Dominic M Di Toro, et al.
Journal of Environmental Monitoring : JEM
|
May 8, 2010
Environmental behavior of arsenic(III) and (V) in soils
Fabiana F Dias, Herbert E Allen, José Roberto Guimarães, et al.
Environmental Science & Technology
|
December 13, 2006
A terrestrial biotic ligand model. 1. Development and application to Cu and Ni toxicities to barley root elongation in soils
Sagar Thakali, Herbert E Allen, Dominic M Di Toro, et al.
Environmental Toxicology and Chemistry
|
October 14, 2003
Development and field validation of a predictive copper toxicity model for the green alga Pseudokirchneriella subcapitata
Karel A De Schamphelaere, Flavio M Vasconcelos, Dagobert G Heijerick, et al.
Environmental Science & Technology
|
September 9, 2020
Reduction of 3-Nitro-1,2,4-Triazol-5-One (NTO) by the Hematite-Aqueous Fe(II) Redox Couple
Paula A Cárdenas-Hernández, Katelyn A Anderson, Jimmy Murillo-Gelvez, et al.
Environmental Science & Technology
|
February 6, 2025
Predicting Abiotic Reduction Rate Constants of Munition Compounds in Soils
Paula A Cárdenas-Hernández, Jimmy Murillo-Gelvez, Juan C Rincón-Rodríguez, et al.
Environmental Science & Technology
|
September 26, 2024
Comparative Evaluation of Mediated Electrochemical Reduction and Chemical Redox Titration for Quantifying the Electron Accepting Capacities of Soils and Redox-Active Soil Constituents
Juan C Rincón-Rodríguez, Paula A Cárdenas-Hernández, Jimmy Murillo-Gelvez, et al.
Environmental Science & Technology
|
December 13, 2006
Terrestrial biotic ligand model. 2. Application to Ni and Cu toxicities to plants, invertebrates, and microbes in soil
Sagar Thakali, Herbert E Allen, Dominic M Di Toro, et al.
Page
of 5
Search research articles
Search
Showing results (41-50 of 48) with videos related to
Sort By:
Page
of 5
You have reached the last page of results.
This site can display upto 48 results.
Environmental Science & Technology
|
March 29, 2022
Modeling the Reduction Kinetics of Munition Compounds by Humic Acids
Kevin P Hickey, Jimmy Murillo-Gelvez, Dominic M Di Toro, et al.
Journal of Environmental Monitoring : JEM
|
May 8, 2010
Environmental behavior of arsenic(III) and (V) in soils
Fabiana F Dias, Herbert E Allen, José Roberto Guimarães, et al.
Environmental Science & Technology
|
December 13, 2006
A terrestrial biotic ligand model. 1. Development and application to Cu and Ni toxicities to barley root elongation in soils
Sagar Thakali, Herbert E Allen, Dominic M Di Toro, et al.
Environmental Toxicology and Chemistry
|
October 14, 2003
Development and field validation of a predictive copper toxicity model for the green alga Pseudokirchneriella subcapitata
Karel A De Schamphelaere, Flavio M Vasconcelos, Dagobert G Heijerick, et al.
Environmental Science & Technology
|
September 9, 2020
Reduction of 3-Nitro-1,2,4-Triazol-5-One (NTO) by the Hematite-Aqueous Fe(II) Redox Couple
Paula A Cárdenas-Hernández, Katelyn A Anderson, Jimmy Murillo-Gelvez, et al.
Environmental Science & Technology
|
February 6, 2025
Predicting Abiotic Reduction Rate Constants of Munition Compounds in Soils
Paula A Cárdenas-Hernández, Jimmy Murillo-Gelvez, Juan C Rincón-Rodríguez, et al.
Environmental Science & Technology
|
September 26, 2024
Comparative Evaluation of Mediated Electrochemical Reduction and Chemical Redox Titration for Quantifying the Electron Accepting Capacities of Soils and Redox-Active Soil Constituents
Juan C Rincón-Rodríguez, Paula A Cárdenas-Hernández, Jimmy Murillo-Gelvez, et al.
Environmental Science & Technology
|
December 13, 2006
Terrestrial biotic ligand model. 2. Application to Ni and Cu toxicities to plants, invertebrates, and microbes in soil
Sagar Thakali, Herbert E Allen, Dominic M Di Toro, et al.
Page
of 5