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2,4-D在厌氧条件下土壤中的降解
引用本文:王翔,郭健,张恒星,马腾达,张浩,王国林. 2,4-D在厌氧条件下土壤中的降解[J]. 吉林农业科学, 2012, 37(4): 30-32,35
作者姓名:王翔  郭健  张恒星  马腾达  张浩  王国林
作者单位:1. 吉林农业大学资源与环境学院,长春,130118
2. 陕西省西安热力研究院有限公司,西安,710032
3. 63850部队后勤部,吉林白城,137000
基金项目:吉林省国际科技合作计划项目(20120742)
摘    要:2,4-二氯苯氧酸(2,4-D)是一种世界上广泛应用的除草剂,能够存在于多种土壤环境中,但在某些厌氧条件下会被降解转化。本实验研究了2,4-D在棕壤和黑钙土两种不同土壤中的降解速率及CO2的释放。在两种土壤中分别加入质量为1 mg/kg的2,4-D,培养55 d后,对2,4-D的降解率进行了测定。结果表明,两种土壤的矿化程度没有明显不同,2,4-D的矿化程度均达到70%~80%,而在有氧与厌氧两种不同条件下,土壤中2,4-D的降解存在区别,有氧条件下2,4-D在棕壤和黑钙土中完全降解分别需要约50 d和45 d,而厌氧条件下,在两种土壤中完全降解均需要50~60 d。

关 键 词:2,4-D  厌氧条件  淹水土壤  矿化作用

Degradation of the Herbicide 2,4-D in Anaerobic Soil Conditions
WANG Xiang , GUO Jian , ZHANG Heng-xing , MA Tengda , ZHANG Hao , WANG Guo-lin. Degradation of the Herbicide 2,4-D in Anaerobic Soil Conditions[J]. Journal of Jilin Agricultural Sciences, 2012, 37(4): 30-32,35
Authors:WANG Xiang    GUO Jian    ZHANG Heng-xing    MA Tengda    ZHANG Hao    WANG Guo-lin
Affiliation:1.College of Resources and Environment,Jilin Agricultural University,Changchun 130118; 2.Shannxi Province Xi’an Thermal Academy Co,Ltd.Xi’an 710032; 3.Logistics Department of 63850 Army,Baicheng 137000,China)
Abstract:2,4-dichlorophenoxyacetic acid(2,4-D) is a herbicide widely used in the world.The compound persists under most environmental conditions,yet it is rapidly transformed under certain anaerobic conditions.A experiment was conducted to determine the degradation of 2,4-D and CO2 evolution in brown earth and chernozems.2,4-D was added to each soil at rates of 1mg/kg of soil.After 55 days of incubation,degradation of the 2,4-D was measured.The results showed that extent of mineralization was about 70-80%,with no significant differences between the two soils.Degradation of 2,4-D was difference under aerobic condition as compared to anaerobic conditions for two soils.Under aerobic conditions,all of 2,4-D was degraded in brown earth and chernozem in approximately 45d and 50d respectively.While under anaerobic conditions,the degradation needed 50-60d.
Keywords:2,4-D  Anaerobic conditions  Flooded soil  Mineralization
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