原文服务方: 地球化学学报(英文)       
摘要:
In order to obtain Pb content in soil quickly and efficiently, a multivariate linear regression (MLR) and a principal component regression (PCR) Pb content estimation model were established on the basis of hyperspectral techniques, and their applicability in different soil types was evaluated. Results indicated that Pb exhibited strong spatial heterogeneity in the study area, and more than 82% of the samples exceeded the background value. In addition, the pollution range was large. Pb was sensitive in the near-infrared band, and the correlation of absorbance (AB) was most significant of all the transformed forms. Both models achieved optimal stability and reliability when AB was used as an independent variable. Compared with the PCR model, the stability, fitting accuracy, and predictive power of the MLR model were superior with a coefficient of determination, root mean square error, and mean relative error of 0.724%, 24.92%, and 28.22%, respectively. Both models could be applied to different soil types; however, MLR had better applicability compared with PCR. The PCR model that distinguished different soil types had better reliability than one that did not. Thus, the model established via hyperspectral techniques can achieve largearea, rapid, and efficient soil Pb content monitoring, which can provide technical support for the treatment of heavy metal pollution in soil.
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篇名 Hyperspectral estimation model of soil Pb content and its applicability in different soil types
来源期刊 地球化学学报(英文) 学科
关键词 Hyperspectral data Heavy metal Pb Estimation
年,卷(期) 2020,(3) 所属期刊栏目
研究方向 页码范围 423-433
页数 10页 分类号
字数 语种 英文
DOI 10.1007/s11631-019-00388-0
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研究主题发展历程
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Hyperspectral data
Heavy metal
Pb
Estimation
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期刊影响力
地球化学学报(英文)
双月刊
2096-0956
52-1161/P
大16开
贵州省贵阳市观水路46号地球化学研究所
1982-01-03
英文
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294
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