Novel hyperspectral reflectance models for estimating black-soil organic matter in Northeast China

被引:20
作者
Huanjun Liu
Yuanzhi Zhang
Bai Zhang
机构
[1] Chinese Academy of Sciences,Northeast Institute of Geography and Agricultural Ecology
[2] Graduate University of Chinese Academy of Sciences,Institute of Space and Earth Information Science
[3] The Chinese University of Hong Kong,undefined
来源
Environmental Monitoring and Assessment | 2009年 / 154卷
关键词
Black-soil; Hyperspectral estimation models; Soil organic matter;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents a novel method for estimating black-soil organic matter (SOM) in the black-soil zone of northeast China from hyperspectral reflectance models. Traditional black-soil property measurements are relatively slow, but the pressures of agricultural production and environmental protection require a quick method to collect black-soil organic matter content. SOM estimation using soil hyperspectral reflectance models can meet this requirement, based on the spectral characteristics of black-soil in Northeast China. On the basis of the spectral reflectance and its derivatives, hyperspectral models can be built using correlation analysis and multivariable statistical methods. The concepts of curvature and ratio indices are also applied to compare and test the stability and accuracy of data modeling. The results show that the response of black-soil spectral reflectance from 400–1,100 nm to organic matter content is more marked than that from 1,100–2,500 nm. Specifically, the main response range of black-soil organic matter is between 620–810 nm, with a maximal spectral response at 710 nm. By comparing different models, we found that the normalized first derivate model is optimal for estimating SOM content, with a determination coefficient of 0.93 and root mean squared errors (RMSE) of 0.18%.
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页码:147 / 154
页数:7
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共 76 条
[1]  
Al-Abbas A. H.(1972)Relating organic matter and clay content to the multispectral radiance of soils Soil Science 114 477-485
[2]  
Swain P. H.(1995)Near-infrared analysis as a rapid method to simultaneously evaluate several soil properties Soil Science Society of America Journal 59 364-372
[3]  
Baumgardner M. F.(2007)Risk assessment of nitrogen discharge from a coastal watershed Pedosphere 17 467-474
[4]  
Ben-Dor E.(2004)Using GIS spatial distribution to predict soil organic carbon in subtropical China Pedosphere 14 425-431
[5]  
Banin A.(1996)Hyperspectral geological remote sensing: evaluation of analytical techniques International Journal of Remote Sensing 17 2215-2242
[6]  
Chen N. W.(1989)Munsell soil color and soil reflectance in the visible spectral bands of Landsat MSS and TM data Remote Sensing of Environment 27 37-46
[7]  
Hong H. S.(1998)Variability of laboratory measured soil lines of soils from Southeastern Brazil Remote Sensing of Environment 63 166-181
[8]  
Zhang L. P.(1993)Analysis of suspended solids in water using remotely sensed high resolution derivative spectra Photogrammetric Engineering and Remote Sensing 59 505-510
[9]  
Cao W. Z.(2002)Establishment and application of expert system of ecological balanced fertilization: Design of expert system Chinese Journal of Soil Science (in Chinese) 33 54-56
[10]  
Cheng X. F.(1980)Reflectance technique for predicting soil organic matter Soil Science Society of America Journal 44 1282-1285