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积分方法用于校定逆转型土壤盐渍剖面的磁感式电导
作者姓名:YAO Rong-Jiang  YANG Jin-Song  LIU Guang-Ming
作者单位:Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008 (China).
基金项目:中国科学院知识创新工程项目
摘    要:Various calibration methods have been propounded to determine profiles of apparent bulk soil electrical conductivity (ECa) and soil electrical conductivity of a saturated soil paste extract (ECe) or a 1:5 soil water extract (EC1:5) using an electromagnetic induction instrument (EM38). The modeled coefficients, one of the successful and classical methods hitherto, were chosen to calibrate the EM38 measurements of the inverted salinity profiles of characteristic coastal saline soils at selected sites of Xincao Farm, Jiangsu Province, China. However, this method required three parameters for each depth layer. An integration approach, based on an exponential decay profile model, was proposed and the model was fitted to all the calibration sites. The obtained model can then be used to predict EC1:5 at a certain depth from electromagnetic measurements made using the EM38 device positioned in horizontal and vertical positions at the soil surface. This exponential decay model predicted the EC1:5 well according to the results of a one-way analysis of variance, and the further comparison indicated that the modeled coefficients appeared to be slightly superior to, but not statistically different from, this exponential decay model. Nevertheless, this exponential decay model was more significant and practical because it depended on less empirical parameters and could be used to perform point predictions of EC1:5 continuously with depth.

关 键 词:校准方法  土壤  电导率  盐分
收稿时间:2006-08-18
修稿时间:2007-01-21

Calibration of soil electromagnetic conductivity in inverted salinity profiles with an integration method
YAO Rong-Jiang,YANG Jin-Song,LIU Guang-Ming.Calibration of soil electromagnetic conductivity in inverted salinity profiles with an integration method[J].Pedosphere,2007,17(2):246-256.
Authors:YAO Rong-Jiang  YANG Jin-Song and LIU Guang-Ming
Institution:Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008 (China). E-mail: rjyno@issas.ac.cn;Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008 (China). E-mail: rjyno@issas.ac.cn;Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008 (China). E-mail: rjyno@issas.ac.cn
Abstract:Various calibration methods have been propounded to determine profiles of apparent bulk soil electrical conductivity (ECa)and soil electrical conductivity of a saturated soil paste extract(ECe)or a 15 soil water extract(EC15)using an electromagnetic induction instrument(EM38).The modeled coefficients,one of the successful and classical methods hitherto,were chosen to calibrate the EM38 measurements of the inverted salinity profiles of characteristic coastal saline soils at selected sites of Xincao Farm,Jiangsu Province,China.However,this method required three parameters for each depth layer.An integration approach,based on an exponential decay profile model,was proposed and the model was fitted to all the calibration sites.The obtained model can then be used to predict EC15 at a certain depth from electromagnetic measurements made using the EM38 device positioned in horizontal and vertical positions at the soil surface.This exponential decay model predicted the EC15 well according to the results of a one-way analysis of variance,and the further comparison indicated that the modeled coefficients appeared to be slightly superior to.but not statistically different from,this exponential decay model.Nevertheless,this exponential decay model was more significant and practical because it depended on less empirical parameters and could be used to perform point predictions of EC15 continuously with depth.
Keywords:coastal saline soils  electromagnetic conductivity  exponential decay model  integration calibration method  inverted salinity profiles
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