首页> 外文期刊>African Journal of Pure and Applied Chemistry >Sorption of Cypermethrin from Alfisol and Inceptisol using acidified simulated rainwater in a soil column set-up
【24h】

Sorption of Cypermethrin from Alfisol and Inceptisol using acidified simulated rainwater in a soil column set-up

机译:在土壤柱中使用酸化的模拟雨水从氯氰菊酯和庚醇中吸附氯氰菊酯

获取原文
           

摘要

Cypermethrin is a synthetic, pyrethroid insecticide and used for agricultural practices. The leaching of this pesticide through soil is of great concern because of the possibility of contaminating ground and surface water. The mobility of pesticide in soil being the main environmental reservoir varies among soil orders and the concept is still under investigation. Hence, this study was aimed at investigating the sorption capability of Alfisol and Inceptisol at different soil depth when leached with simulated rainwater of different pH values. The leachates were determined for cypermethrin concentration using a new UV/Visible spectrometry method. The CEC, organic matter content of Alfisol were 4.05±0.03 cmol/kg and 1.74±0.02%, while the corresponding characteristics of Inceptisol were 4.45±0.05 cmol/kg and 1.03±0.01%, respectively. pH of Alfisol and Inceptisol soil orders were 5.92 and 6.25, respectively. Simulated rainwater (pH 4) of 50, 100 and 150 mL leached out 37.0±0.1, 43.1±0.1 and 59.4±0.2% of cypermethrin, respectively from Alfisol at soil depth of 10 cm. At pH 6.8, the corresponding volumes of simulated rainwater leached out 31.8±0.1, 35.4±0.1 and 37.4±0.1% of cypermethrin, respectively. For each soil order, these proportions of sorbed cypermethrin decreased progressively as soil depth increased from 10-30 cm. The proportions of cypermethrin sorbed by Inceptisol were more than the corresponding proportions sorbed by Afisol. Afisol has high clay and organic contents, which might be responsible for its surpassing potential to sorb cypermethrin compared to Inceptisol.
机译:氯氰菊酯是一种合成的拟除虫菊酯杀虫剂,用于农业实践。由于可能会污染地下水和地表水,这种农药通过土壤的淋洗非常令人关注。农药在作为主要环境储层的土壤中的迁移率随土壤阶数的变化而变化,这一概念仍在研究中。因此,本研究旨在研究当用不同pH值的模拟雨水浸出时,Alfisol和Inceptisol在不同土壤深度的吸附能力。使用新的紫外/可见光谱法测定浸出液中氯氰菊酯的浓度。 Alfisol的CEC,有机物含量分别为4.05±0.03 cmol / kg和1.74±0.02%,而Inceptisol的相应特征分别为4.45±0.05 cmol / kg和1.03±0.01%。 Alfisol和Inceptisol土壤阶的pH分别为5.92和6.25。 50、100和150 mL的模拟雨水(pH 4)在土壤深度10 cm处分别从Alfisol浸出了37.0±0.1、43.1±0.1和59.4±0.2%的氯氰菊酯。在pH 6.8时,相应体积的模拟雨水分别浸出了氯氰菊酯的31.8±0.1%,35.4±0.1%和37.4±0.1%。对于每种土壤顺序,随着土壤深度从10到30 cm增加,吸附的氯氰菊酯的这些比例逐渐降低。 Inceptisol吸附的氯氰菊酯的比例大于Afisol吸附的相应比例。 Afisol的粘土和有机物含量高,与Inceptisol相比,可能是其吸收氯氰菊酯的潜力巨大的原因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号