Position: Home > Articles > Application of Portable X-ray Fluorescence(PXRF) for Rapid Analysis of Heavy Metals in Agricultural Soils Around Mining Area
Soils
2015,47
(3)
589-595
便携式X射线荧光光谱法(PXRF)在矿区农田土壤重金属快速检测中的应用研究
作 者:
邝荣禧;胡文友;何跃;黄标;祖艳群;李元;湛方栋;邹小冷;王豹
单 位:
云南农业大学资源与环境学院;云南农业大学国土资源科学技术工程研究中心;国家环境保护土壤环境管理与污染控制重点实验室;中国科学院土壤环境与污染修复重点实验室(南京土壤研究所);环境保护部南京环境科学研究所
关键词:
便携式X射线荧光光谱法;采矿区;农田土壤;重金属;快速测定
摘 要:
针对我国普遍存在的土壤重金属污染问题,迫切需要开展土壤重金属的快速检测与评价方法研究。本文采用便携式X射线荧光光谱法(PXRF)和传统实验室方法对云南会泽铅锌矿区农田土壤As、Pb、Cu和Zn进行测定,分析了PXRF法的应用效果。结果表明:1PXRF法测定的精密度与准确度满足我国农田土壤环境质量检测技术规范中规定的仪器检测要求;2土壤As、Pb、Cu和Zn的PXRF法测定值与传统实验室测定值具有良好的一致性,Pb、Cu和Zn的决定性系数均大于0.70;3基于PXRF法原位测定、PXRF法异位测定和传统实验室测定结果的研究区土壤As、Pb、Cu和Zn具有相似的空间分布规律。可见,PXRF法可用于矿区周边农田土壤As、Pb、Cu和Zn的快速检测、污染筛查与评价。
译 名:
Application of Portable X-ray Fluorescence(PXRF) for Rapid Analysis of Heavy Metals in Agricultural Soils Around Mining Area
作 者:
KUANG Rong-xi;HU Wen-you;HE Yue;HUANG Biao;ZU Yan-qun;LI Yuan;ZHAN Fang-dong;ZOU Xiao-leng;WANG Bao;College of Resources and Environment, Yunnan Agricultural University;Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences;Nanjing Institute of Environmental Sciences,Ministry of Environmental Protection;State Environmental Protection Key Laboratory of Soil Environmental Management and Pollution Control;Science and Technology Engineering Research Center of Land and Resources, Yunnan Agricultural University;
关键词:
Portable X-ray Fluorescence(PXRF);;Mining area;;Agricultural soils;;Heavy metals;;Rapid detection
摘 要:
In view of the increasing soil metal contamination in China, it is urgent to develop fast and accurate analytical method for heavy metal detection. In this paper, portable X-ray fluorescence(PXRF) was employed for determination of As, Pb, Cu and Zn concentrations in agricultural soils around a mining area in Huize, Yunnan Province. The results indicated that: 1) The accuracy and precision of PXRF were able to meet with the national procedural regulations regarding the environment quality monitoring of soil. 2) Concentrations of heavy metals in soils measured by PXRF were consistent with those measured by the conventional laboratory method and the coefficients of Pb, Cu, and Zn concentration measured by PXRF and laboratory analysis were generally above 0.70. 3) Spatial distribution patterns of As, Pb, Cu and Zn in soils in study area were similar based on the detection results by in situ PXRF, ex situ PXRF and conventional laboratory method. In general, PXRF is a valuable tool for rapid detection and identification of "hotspots" of As, Pb, Cu, and Zn pollution in agricultural soils around mining areas.
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