梯度薄膜扩散技术(DGT)与传统化学方法评估黑麦草吸收Cd的对比

宋宁宁, 王芳丽, 沈跃, 宋正国, 冯人伟, 刘仲齐. 梯度薄膜扩散技术(DGT)与传统化学方法评估黑麦草吸收Cd的对比[J]. 环境化学, 2012, 31(12): 1960-1967.
引用本文: 宋宁宁, 王芳丽, 沈跃, 宋正国, 冯人伟, 刘仲齐. 梯度薄膜扩散技术(DGT)与传统化学方法评估黑麦草吸收Cd的对比[J]. 环境化学, 2012, 31(12): 1960-1967.
SONG Ningning, WANG Fangli, SHEN Yue, SONG Zhengguo, FENG Renwei, LIU Zhongqi. Comparison of the method of diffusive gradients in thin films with traditional chemical extraction techniques for evaluating cadmium bioavailability in ryegrass[J]. Environmental Chemistry, 2012, 31(12): 1960-1967.
Citation: SONG Ningning, WANG Fangli, SHEN Yue, SONG Zhengguo, FENG Renwei, LIU Zhongqi. Comparison of the method of diffusive gradients in thin films with traditional chemical extraction techniques for evaluating cadmium bioavailability in ryegrass[J]. Environmental Chemistry, 2012, 31(12): 1960-1967.

梯度薄膜扩散技术(DGT)与传统化学方法评估黑麦草吸收Cd的对比

  • 基金项目:

    国家自然科学基金(41071217, 21107055)资助.

Comparison of the method of diffusive gradients in thin films with traditional chemical extraction techniques for evaluating cadmium bioavailability in ryegrass

  • Fund Project:
  • 摘要: 为研究不同方法评估黑麦草吸收Cd的效果,采集了16个不同理化性质实际Cd污染土壤,盆栽试验种植黑麦草,采用梯度薄膜扩散技术(DGT)测定黑麦草根际土Cd的生物有效性,并与离心法采集土壤溶液、乙酸(HAc)和乙二胺四乙酸二钠(EDTANa2)3种传统提取方法所提取土壤有效态Cd含量进行比较,研究其与黑麦草地上部和地下部Cd含量的相关关系.结果表明,DGT提取的土壤有效态Cd含量与黑麦草中Cd含量的相关性显著高于化学提取法.运用多元统计分析研究土壤pH、阳离子交换量(CEC)、有机质(OM)和土壤颗粒组成等理化指标的影响,提取出两种主成分因子,建立了多元回归模型.第一主成分与OM和黏粒(clay)之间呈显著相关,定义为土壤中影响重金属生物有效性的"有机指标", 第二主成分则与土壤pH和CEC相关程度较高,定义为土壤中影响重金属生物有效性的"无机指标".研究表明,第二主成分显著影响了3种化学方法构建的预测模型,而DGT技术综合了两种主成分对土壤有效态Cd含量的影响,所构建的模型几乎不受土壤基本理化性质的影响,说明DGT分析法是一种预测黑麦草吸收Cd的较好方法.
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  • 收稿日期:  2012-02-27

梯度薄膜扩散技术(DGT)与传统化学方法评估黑麦草吸收Cd的对比

  • 1.  农业部环境保护科研监测所生态毒理与环境修复研究中心, 天津, 300191;
  • 2.  农业部环境保护科研监测所科技处, 天津, 300191
基金项目:

国家自然科学基金(41071217, 21107055)资助.

摘要: 为研究不同方法评估黑麦草吸收Cd的效果,采集了16个不同理化性质实际Cd污染土壤,盆栽试验种植黑麦草,采用梯度薄膜扩散技术(DGT)测定黑麦草根际土Cd的生物有效性,并与离心法采集土壤溶液、乙酸(HAc)和乙二胺四乙酸二钠(EDTANa2)3种传统提取方法所提取土壤有效态Cd含量进行比较,研究其与黑麦草地上部和地下部Cd含量的相关关系.结果表明,DGT提取的土壤有效态Cd含量与黑麦草中Cd含量的相关性显著高于化学提取法.运用多元统计分析研究土壤pH、阳离子交换量(CEC)、有机质(OM)和土壤颗粒组成等理化指标的影响,提取出两种主成分因子,建立了多元回归模型.第一主成分与OM和黏粒(clay)之间呈显著相关,定义为土壤中影响重金属生物有效性的"有机指标", 第二主成分则与土壤pH和CEC相关程度较高,定义为土壤中影响重金属生物有效性的"无机指标".研究表明,第二主成分显著影响了3种化学方法构建的预测模型,而DGT技术综合了两种主成分对土壤有效态Cd含量的影响,所构建的模型几乎不受土壤基本理化性质的影响,说明DGT分析法是一种预测黑麦草吸收Cd的较好方法.

English Abstract

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