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氮肥对绿麦隆在土壤中吸附-解吸作用的影响

Impact of Nitrogen Fertilizers on Adsorption-desorption Characteristics of Chlorotoluron in Soil
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摘要 通过室内模拟试验,研究了硫铵、尿素对绿麦隆在土壤中吸附、解吸作用的影响。结果表明,当绿麦隆与硫铵或尿素同时施入土壤后,土壤对绿麦隆的吸附作用增加,并随氮肥浓度的增加吸附作用增强;用氮肥培养土壤6d后加入绿麦隆,吸附能力为尿素处理>对照>硫铵处理,与未经培养的处理相比降低了6.18% ̄30.99%,这与土壤中DOC的含量和种类有关。解吸试验表明,绿麦隆从未经硫铵或尿素培养土壤上的解吸能力高于对照10.53% ̄38.60%,而其从用硫铵和尿素培养6d土壤上的解吸能力与对照无明显差异。另外,其与未经培养的土壤相比,解吸能力增加了大约2倍。这些结果表明,硫铵和尿素影响绿麦隆在土壤中的吸附、解吸作用,从而影响绿麦隆在土体中的迁移。 The impact of ammonium sulfate and urea on adsorption-desorption of chlorotoluron in soil was studied by batch experiments. The results showed that the sorption of chlorotoluron increased with the increase of nitrogen fertilizers concentration as chlorotoluron and nitrogen fertilizers were applied into soil at the same time. After the soil was pre-incubated with demonized water, ammonium sulfate or urea for 6 days, chlorotoluron adsorption decreased by 6.18%-30.99% at 0-6 d. The sorption decreased in the order of urea treatment〉control〉ammonium sulfate treatment, and was affected by the content and species of DOC. When nitrogen fertilizers and chlorotoluron were applied into soil at the same time, chlorotoluron desorption increased by 10.53%~38.60%, while, compared to the control, which showed no significant difference from that incubated 6 d with nitrogen fertilizers. Desorption capability of chlorotoluron.in incubated soils was twice as much as that in un-incubated soil. The results suggested that chlorotoluron movement may be affected by nitrogen fertilizers such as ammonium sulfate and urea.
出处 《农业环境科学学报》 CAS CSCD 北大核心 2006年第3期694-698,共5页 Journal of Agro-Environment Science
基金 国家自然科学基金资助重点项目(29837170)
关键词 氮肥 吸附 解吸 绿麦隆 nitrogen fertilizer adsorption desorption chlorotoluron
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  • 1Zhoujing Liu, Sharon A Clay, David E Clay, et al. Ammonia fertilizer influences atrazine adsarption-desorption characteristics [J]. J Agric Food Chem, 1995a, 43: 815-819.
  • 2Zhoujing Liu, Sharon A Clay, David E Clay, et al. Ammonia impacts on atrazine leaching through undisturbed soil column [J]. J Environ Qual,1995b, 24: 7770-1173.
  • 3Neera Singh. Organic manure and urea effect on metolachlor transport through packed soil column [J]. JEnviron Qual, 2003, 32: 1743-1749.
  • 4Sven Alffeld, Thilo Streck, Jorg Richter. Effect of air-drying on sorption kinetics of the herbicide chlortoluron in soil[J]. J Environ Qual, 1999,28:1154-1161.
  • 5Christine M Fouque-Brouard, Josette M Foumier. Adsorption-desorption and leaching of phenylurea herbicides on soils[J]. Talana, 1996, 43:1793-1802.
  • 6Yolanda Lechoch, Consuelo Sanchez-Brunete, Jooe L Tadeo. Influence of the laboratory incubation method on chlorotoluron and terbutryn degradation in soil [J]. J Agric Food Chem, 1997, 45: 951-954.
  • 7Thilo Streck, Jorg Richer. Field-scale study of chlorotoluron movment in sandy soil over winter: Ⅱ Modeling [J]. J Enviro Qual, 1999, 28: 1824-1831.
  • 8Walker A, Rodriguez-Cruz M S, Mitchell M J. Influence of ageing of residues on the availability of herbicides for leaching[J]. Environ Pollu,2005, 133: 43-51.
  • 9Christine Zander, et al. Field-scale study of ehlorotoluron movment in sandy soiloverwinter: I Experiment [J]. J Environ Qual, 1999, 28:1817-1823.
  • 10李德平.绿麦隆在土壤-植物中的物理化学行为[J].农业环境保护,1994,13(2):73-77. 被引量:2

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