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Abstract

Aldicarb, Temik® 15 G, was incorporated in furrows at 3.37 and 6.73 kg ai (active ingredent)/ha and carrots (Caucus carota L.) were directly seeded on the same day. The numbers of nematode larvae were significantly suppressed in the treated plots; averages were 249, 74, and 51/ 50 cc soil samples for control (0), 3.37 and 6.73 kg ai/ha, respectively. Aldicarb treatment resulted in a 28% yield increase as compared to the untreated. Aldicarb residue in carrots was 28 ppb for the low treatment and 46 ppb for the high. Residual levels in soil of high treatment declined from 6l to 31 ppb during two weeks prior to harvest, meanwhile, those in the low decreased slightly from 13 to 12 ppb. Carrots placed in hydroponic solution containing aldicarb 14.5 ppm for 6 days, had an aldicarb residue of 10.26 ppb and the hydroponic solution, 2.7 ppb. Persistence of aldicarb residue was in carrot > in soil > in hydroponic solution.  相似文献   
2.
采用固相萃取超高效液相色谱串联质谱法(SPE-UPLC-MS/MS)同时测定地下水中涕灭威、克百威、2,4滴和五氯酚等4种农药残留,通过优化试验条件,使方法在10.0μg/L~200μg/L范围内线性良好,检出限为0.003μg/L~0.006μg/L.标准溶液低、中2个质量浓度水平的加标回收率为84.1% ~98.8...  相似文献   
3.
Adsorption kinetics and isotherms of pesticides onto activated carbon-cloth   总被引:11,自引:0,他引:11  
Ayranci E  Hoda N 《Chemosphere》2005,60(11):395-1607
Adsorption of pesticides ametryn, aldicarb, dinoseb and diuron from aqueous solution onto high specific area activated carbon-cloth was studied. Kinetics of adsorption was followed by in situ UV-spectroscopy and the data were treated according to various rate models. The extent of adsorption was determined at the end of 125 min adsorption period. Rate constants and the extent of adsorption for the four pesticides were found to follow the order: dinoseb > ametryn > diuron > aldicarb. Adsorption isotherms were derived at 25 °C on the basis of batch analysis. Isotherm data were treated according to Langmuir and Freundlich models. The fits of experimental data to these equations were examined. The types of interactions between the surface and pesticide molecules were discussed.  相似文献   
4.
用土壤薄层层析法研究单甲脒,单甲脒盐酸盐、灭幼脲和涕灭威等农药在不同土壤中的迁移行为,分别获得了这几种化合物的Rf值,它们分别为0.14、0.17,0.08,0.76,研究表明,单脒,单甲脒盐酸盐和灭幼脲不会污染地下水,而涕灭威则会对地下水污染构成严重的威胁。  相似文献   
5.
Degradation studies in soil of the insecticides aldicarb and carbofuran and their metabolites (aldicarb sulfoxide, aldicarb sulfone; 3-ketocarbofuran and 3-hydroxycarbofuran) were carried out using laboratory systems under controlled conditions (temperature, water content, light). The insecticides were added to soil samples and subsamples of the soil were analyzed at different times to assess both the bacterial abundance and the concentration of the different chemicals. The epifluorescence direct count method was applied to the subsamples to estimate microorganism numbers (N/g soil). Untreated samples of soil were used as controls for evaluating the effects of the application of the insecticides on microbial abundance. Subsamples treated with the pesticides were analyzed using HPLC and the DT 50 s of the different compounds studied were calculated. The DT 50 values show that neither the parent compounds nor the transformation products have a high persistence in soil and there is a general increase in the concentration of microorganisms as the pesticides diminish.  相似文献   
6.
建立了快速测定地表水和饮用水中甲萘威、灭多威、克百威、残杀威、涕灭威、杀线威6种氨基甲酸酯类农药的超高效液相色谱串联质谱分析方法。 水样用等体积乙腈提取,经微孔滤膜过滤后直接进样,在 UPLC BEH C18 色谱柱上分离,正离子电喷雾多反应监测模式(MRM)检测,外标法定量。线性范围为0.1~10μg/L或1~100μg/L,相关系数均大于 0.999;检出限为 0.01或0.1μg/L,5.0μg/L浓度水平的平均加标回收率为98%~101%(n=6),RSD均小于5%。方法专属、灵敏、快速、准确。  相似文献   
7.
Degradation studies in soil of the insecticides aldicarb and carbofuran and their metabolites (aldicarb sulfoxide, aldicarb sulfone; 3-ketocarbofuran and 3-hydroxycarbofuran) were carried out using laboratory systems under controlled conditions (temperature, water content, light). The insecticides were added to soil samples and subsamples of the soil were analyzed at different times to assess both the bacterial abundance and the concentration of the different chemicals. The epifluorescence direct count method was applied to the subsamples to estimate microorganism numbers (N/g soil). Untreated samples of soil were used as controls for evaluating the effects of the application of the insecticides on microbial abundance. Subsamples treated with the pesticides were analyzed using HPLC and the DT 50 s of the different compounds studied were calculated.

The DT 50 values show that neither the parent compounds nor the transformation products have a high persistence in soil and there is a general increase in the concentration of microorganisms as the pesticides diminish.  相似文献   
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