Mechanisms for 1,3-Dichloropropene Dissipation in Biochar-Amended Soils.
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Dong Wang | Aocheng Cao | Dongdong Yan | Kurt Spokas | K. Spokas | Dong Wang | A. Cao | D. Yan | Qiuxia Wang | Suduan Gao | Suduan Gao | Qiuxia Wang
[1] M. Kleber,et al. Redox properties of plant biomass-derived black carbon (biochar). , 2014, Environmental science & technology.
[2] Michael Jerry Antal,et al. Do All Carbonized Charcoals Have the Same Chemical Structure? 1. Implications of Thermogravimetry−Mass Spectrometry Measurements , 2007 .
[3] K. Y. Foo,et al. Insights into the modeling of adsorption isotherm systems , 2010 .
[4] Dong Wang,et al. Emission reduction of 1,3-dichloropropene by soil amendment with biochar. , 2014, Journal of environmental quality.
[5] T. Trout,et al. Effect of water seal on reducing 1,3-dichloropropene emissions from different soil textures. , 2009, Journal of environmental quality.
[6] A. Winer,et al. A study of the atmospheric reactions of 1,3-dichloropropene and other selected organochlorine compounds , 1984 .
[7] D. Do,et al. The Dubinin-Radushkevich equation and the underlying microscopic adsorption description , 2001 .
[8] S. Yates,et al. Effects of environmental factors on 1,3-dichloropropene hydrolysis in water and soil. , 2004, Journal of Environmental Quality.
[9] S. Yates,et al. Effect of organic material on field-scale emissions of 1,3-dichloropropene. , 2011, Journal of environmental quality.
[10] B. Wimmer,et al. Biochar application to temperate soils: Effects on soil fertility and crop growth under greenhouse conditions , 2014 .
[11] J. Lehmann,et al. The influence of feedstock and production temperature on biochar carbon chemistry: a solid-state 13C NMR study , 2014 .
[12] S. Yates,et al. Effect of temperature, organic amendment rate and moisture content on the degradation of 1,3-dichloropropene in soil. , 2001, Pest management science.
[13] A. Koelmans,et al. Extensive sorption of organic compounds to black carbon, coal, and kerogen in sediments and soils: mechanisms and consequences for distribution, bioaccumulation, and biodegradation. , 2005, Environmental science & technology.
[14] Dandan Zhou,et al. Bisolute sorption and thermodynamic behavior of organic pollutants to biomass-derived biochars at two pyrolytic temperatures. , 2012, Environmental science & technology.
[15] J. O. Becker,et al. Degradation of soil fumigants as affected by initial concentration and temperature. , 2001, Journal of environmental quality.
[16] S. Yates,et al. Effect of sequential surface irrigations on field-scale emissions of 1,3-dichloropropene. , 2008, Environmental science & technology.
[17] J. O. Becker,et al. Surface application of ammonium thiosulfate fertilizer to reduce volatilization of 1,3‐dichloropropene from soil , 2000 .
[18] Dong Wang,et al. Interactive effect of organic amendment and environmental factors on degradation of 1,3-dichloropropene and chloropicrin in soil. , 2009, Journal of agricultural and food chemistry.
[19] N. Bolan,et al. Biochar as a sorbent for contaminant management in soil and water: a review. , 2014, Chemosphere.
[20] Maria Strömqvist,et al. A systematic approach for modelling the affinity coefficient in the Dubinin–Radushkevich equation , 2002 .
[21] J. O. Becker,et al. Acceleration of 1,3-dichloropropene degradation by organic amendments and potential application for emissions reduction , 1998 .
[22] Scott R. Yates,et al. Temperature and moisture effects on fumigant degradation in soil , 1999 .
[23] Yimin Li,et al. Effectiveness of low-temperature biochar in controlling the release and leaching of herbicides in soil , 2013, Plant and Soil.
[24] S. Yates,et al. Organic matter effects on phase partition of 1,3-dichloropropene in soil. , 2003, Journal of agricultural and food chemistry.
[25] L. Tsechansky,et al. Sorption, Volatilization, and Efficacy of the Fumigant 1,3-Dichloropropene in a Biochar-Amended Soil , 2011 .
[26] R. T. Yang,et al. Theoretical basis for the Dubinin-Radushkevitch (D-R) adsorption isotherm equation , 1997 .
[27] H. Teng,et al. Pore‐size effects on activated‐carbon capacities for volatile organic compound adsorption , 2002 .
[28] Gaylon S. Campbell,et al. Soil Physics with Python: Transport in the Soil-Plant-Atmosphere System , 2015 .