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山东烟台地区苹果果园土壤中DDTs和HCHs残留分布特征与来源解析

史冰洁, 李小娜, 帅琴, 庞绪贵, 代杰瑞, 胡圣虹

史冰洁, 李小娜, 帅琴, 庞绪贵, 代杰瑞, 胡圣虹. 山东烟台地区苹果果园土壤中DDTs和HCHs残留分布特征与来源解析[J]. 岩矿测试, 2012, 31(2): 318-324.
引用本文: 史冰洁, 李小娜, 帅琴, 庞绪贵, 代杰瑞, 胡圣虹. 山东烟台地区苹果果园土壤中DDTs和HCHs残留分布特征与来源解析[J]. 岩矿测试, 2012, 31(2): 318-324.
SHI Bing-jie, LI Xiao-na, SHUAI Qin, PANG Xu-gui, DAI Jie-rui, HU Sheng-hong. Distribution Characteristics and Source Apportionment of DDTs and HCHs in Soils from Apple Orchards in Yantai, Shandong Province[J]. Rock and Mineral Analysis, 2012, 31(2): 318-324.
Citation: SHI Bing-jie, LI Xiao-na, SHUAI Qin, PANG Xu-gui, DAI Jie-rui, HU Sheng-hong. Distribution Characteristics and Source Apportionment of DDTs and HCHs in Soils from Apple Orchards in Yantai, Shandong Province[J]. Rock and Mineral Analysis, 2012, 31(2): 318-324.

山东烟台地区苹果果园土壤中DDTs和HCHs残留分布特征与来源解析

基金项目: 

山东省东部地区农业生态地球化学调查项目(鲁国土资字[2006]709号)

国家自然科学基金项目(40973021)

Distribution Characteristics and Source Apportionment of DDTs and HCHs in Soils from Apple Orchards in Yantai, Shandong Province

  • 摘要: 为研究不同土壤类型中有机氯农药的残留特征、降解程度和来源途径,采集了山东烟台9个不同地质单元苹果园根系土壤和剖面土壤样品,用电子捕获检测器气相色谱法测定其中的滴滴涕(DDTs)和六六六(HCHs)。结果表明,研究区所有类型根系土壤中DDTs和HCHs均未超出《土壤环境质量标准》的二级土壤限值 (500 ng/g);土壤中DDTs的残留量及检出率均高于HCHs,DDTs检出率为100%,平均残留量为71.7 ng/g,而HCHs的检出率为19.70%,平均残留量为7.9 ng/g;根系土壤中DDTs各异构体平均浓度依次为p,p'-DDT> p,p'-DDE> o,p'-DDT > p,p'-DDD,而HCHs大部分以α-HCH形式存在,部分以β-HCH、γ-HCH存在。不同类型土壤中有机氯农药残留分布特征明显不同:DDTs在棕壤土(臧家庄)中最高(145.5 ng/g), 在中粗粒砂土(武宁)中最低(24.1 ng/g);而HCHs在细砂质壤土(蛇窝泊)中最高(27.9 ng/g)。各剖面土壤DDTs均在<20 cm层位中残留最高。DDTs和HCHs来源解析表明:研究区土壤为好氧条件;麻砂棕壤(官道和桃村)、黏细壤土(牟平)、细砂质壤土(蛇窝泊)和棕壤土(臧家庄)近年来仍有新的DDTs输入;大部分根系土壤均未发现HCHs新来源,但麻砂棕壤(桃村)在HCHs禁用后可能仍存在林丹的使用。
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  • 收稿日期:  2011-09-13

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