期刊文献+

Compost Effect on Diuron Retention and Transport in Structured Vineyard Soils 被引量:2

Compost Effect on Diuron Retention and Transport in Structured Vineyard Soils
原文传递
导出
摘要 Diuron is frequently detected in surface- and groundwater under the vineyards, where organic amendments are often used, in Burgundy of France. Undisturbed column experiments were conducted to study the influence of three composted organic amendments on diuron leaching through columns of two vineyard soils from Vosne-Roman′ee(VR, calcareous Cambisol) and Beaujolais(Bj, sandy Leptosol), France. Bromide(used as non-reactive tracer) and diuron breakthrough curves(BTCs) were analyzed using convectivedispersive equation(CDE), two-region(mobile-immobile, MIM) and two-site models. No influence of the composts was observed on the bromide recovery rates. The CDE model described well the bromide BTCs for all columns of the Bj soil and seven of the VR soil, suggesting a homogeneous water flow. However, for five VR soil columns, the MIM model fitted better, suggesting a partition of the water flow(15%–50% of matrix flow). The texture, the coarse material content and the tillage of the VR soil could explain this heterogeneity. However, for all columns, diuron leaching was greater through the Bj soil(46%–68%) than the VR soil(28%–39%). The compost addition resulted in a contrasting effect on diuron leaching: no difference or a decrease was observed for the VR soil, probably due to an increase of adsorption sites, whereas no difference or an increase was observed for the Bj soil possibly because of interactions and/or competition of diuron with the compost water-extractable organic matter which could facilitate its transport. All the diuron BTCs were best described using the two-site model, suggesting a large proportion of time-dependent sorption sites(30%–50%). The soil type and the nature of the amendments had contrasting influences on diuron transport. Composts with a high water-soluble fraction must be avoided in sandy soils to reduce the risk of groundwater contamination. Diuron is frequently detected in surface- and groundwater under the vineyards, where organic amendments are often used, in Burgundy of France. Undisturbed column experiments were conducted to study the influence of three composted organic amendments on diuron leaching through columns of two vineyard soils from Vosne-Roman′ee(VR, calcareous Cambisol) and Beaujolais(Bj, sandy Leptosol), France. Bromide(used as non-reactive tracer) and diuron breakthrough curves(BTCs) were analyzed using convectivedispersive equation(CDE), two-region(mobile-immobile, MIM) and two-site models. No influence of the composts was observed on the bromide recovery rates. The CDE model described well the bromide BTCs for all columns of the Bj soil and seven of the VR soil, suggesting a homogeneous water flow. However, for five VR soil columns, the MIM model fitted better, suggesting a partition of the water flow(15%–50% of matrix flow). The texture, the coarse material content and the tillage of the VR soil could explain this heterogeneity. However, for all columns, diuron leaching was greater through the Bj soil(46%–68%) than the VR soil(28%–39%). The compost addition resulted in a contrasting effect on diuron leaching: no difference or a decrease was observed for the VR soil, probably due to an increase of adsorption sites, whereas no difference or an increase was observed for the Bj soil possibly because of interactions and/or competition of diuron with the compost water-extractable organic matter which could facilitate its transport. All the diuron BTCs were best described using the two-site model, suggesting a large proportion of time-dependent sorption sites(30%–50%). The soil type and the nature of the amendments had contrasting influences on diuron transport. Composts with a high water-soluble fraction must be avoided in sandy soils to reduce the risk of groundwater contamination.
机构地区 UMR UMR
出处 《Pedosphere》 SCIE CAS CSCD 2015年第1期25-36,共12页 土壤圈(英文版)
关键词 土壤类型 运输结构 敌草隆 葡萄园 堆肥 地下水污染 有机添加物 模型分析 groundwater contamination,leaching,organic amendment,soil type,sorption,water-extractable organic matter
  • 相关文献

二级参考文献36

  • 1Agarwal, A. S., Singh, B. R. and Kanehiro, Y. 1971. Ionic effect of salts on mineral nitrogen release in an allophanic soil. Soil Sci. Soc. Am. J. 35: 454-457.
  • 2Anderson, J. M. and Ingram, J. S. I. 1993. Tropical Soil Biology and Fertility: A Handbook of Methods. 2nd Edition. CAB International, Wallingford.
  • 3Berg, B. and McClaugherty, C. 2007. Plant Litter: Decompo- sition, Humus Hormation, Carbon Sequestration. Springer, Berlin.
  • 4Bouyoucos, G. J. 1936. Directions for making mechanical analy- ses of soils by the hydrometer method. Soil Sci. 42: 225-229.
  • 5Brindley, G. Wl and Brown, G. 1980. Crystal Structures of Clay Minerals and Their X-ray Identification. Mineralogical Soci- ety, London.
  • 6Burford, J. R. and Bremner, J. M. 1975. Relationships between the denitrification capacities of soils and total, water-solu- ble and readily decomposable soil organic matter. Soil Bi- ol. Biochem. 7:389 394.
  • 7Chenu, C., Le Bissonnais, Y. and Arrouays, D. 2000. Organic matter influence on clay wettability and soil aggregate sta- bility. Soil Sci. Soc. Am. J. 64: 1479-1486.
  • 8Chorom, M. and Rengasamy, P. 1995. Dispersion and zeta po- tential of pure clays as related to net particle charge under varying pH, electrolyte concentration and cation type. Eur. J. Soil Sci. 46: 657-665.
  • 9Guggenberger, G. and Kaiser, K. 2003. Dissolved organic mat- ter in soil: challenging the paradigm of sorptive preservation. Geoderma. 113: 293-310.
  • 10Hall, D. J. M., Jones, H. R., Crabtree, W. L. and Daniels, T. L. 2010. Claying and deep ripping can increase crop yields and profits on water repellent sands with marginal fertility in southern Western Australia. Aust. J. Soil Res. 48: 178-187.

共引文献2

同被引文献38

  • 1Gagliardi B, Pettigrove, V. Removal of intensive ag riculture from the landscape improves aquatic ecosys tem health[J]. Agr. Ecosyst. Environ, 2013, 176 1-8.
  • 2Yadav I C, Devi N L, Syed J H, et al. Current status of persistent organic pesticides residues in air, water, and soil, and their possible effect on neighboring countries: A comprehensive review of India[J]. Sci. Total Environ, 2015, 511:123 137.
  • 3Lu Y L, Song S, Wang R S, et al. Impacts of soil and water pollution on food safety and health risks in China[J]. Environ. Int., 2015, 77: 5-15.
  • 4Pimentel D, Levitan L. Pesticides: amounts applied and amounts reaching pests[J]. Bioscience, 1986, 36 : 86-91.
  • 5Mahmoud M, Janssen M, Janssen N, et al. The impact of olive mill wastewater application on flow and transport properties in soils [J]. Soil Till. Res., 2010, 107: 36-41.
  • 6Garcia-Jaramillo M, Cox L, Cornejo J, et al. Effect of soil organic amendments on the behavior of benta zone and tricyclazole[J]. Sci. Total Environ, 2014, 466:906-913.
  • 7Song N H, Yin X L, Chen G F, et al. Biological re sponses of wheat (Triticum aestivum) plants to the herbicide chlorotoluron in soils [J]. Chemosphere, 2007, 68: 1779-1787.
  • 8Jiang L, Yang H. Prometryne-induced oxidative stress and impact on antioxidant enzymes in wheat [J]. Ecotox. Environ. Safe,2009, 72: 1687-1693.
  • 9Ohkawa H, Ohishi N,Yagi Y. Assay for lipid peroxides in animal tissue by thiobarbituric acid reaction [J].Anal. Biochem, 1979, 95: 351-358.
  • 10Dhindsa R S, Plumb-Dhindsa P, Throne T A. Leaf senescence: correlated with increased levels of membrane permeability and lipid peroxidation and decreased levels of superoxide dismutase and catalase[J]. J. Expt. Bot. , 1981, 32: 93-101.

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部