The Experts below are selected from a list of 264 Experts worldwide ranked by ideXlab platform
Qianna Hao - One of the best experts on this subject based on the ideXlab platform.
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remote sensing of Soil Alkalinity and salinity in the wuyu er shuangyang river basin northeast china
Remote Sensing, 2016Co-Authors: Cuizhe Wang, Shuying Zang, Yuhong Zhang, Qianna HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.
Qiannan Hao - One of the best experts on this subject based on the ideXlab platform.
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Remote Sensing of Soil Alkalinity and Salinity in the Wuyu’er-Shuangyang River Basin, Northeast China
Remote Sensing, 2016Co-Authors: Lin Bai, Shuying Zang, Yuhong Zhang, Cuizhen Wang, Qiannan HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.
Shuying Zang - One of the best experts on this subject based on the ideXlab platform.
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Mapping Soil Alkalinity and Salinity in Northern Songnen Plain, China with the HJ-1 Hyperspectral Imager Data and Partial Least Squares Regression.
Sensors (Basel Switzerland), 2018Co-Authors: Lin Bai, Shuying Zang, Cuizhen Wang, Jinming LuoAbstract:In arid and semi-arid regions, identifying and monitoring of Soil Alkalinity and salinity are in urgently need for preventing land degradation and maintaining ecological balances. In this study, physicochemical, statistical, and spectral analysis revealed that potential of hydrogen (pH) and electrical conductivity (EC) characterized the saline-alkali Soils and were sensitive to the visible and near infrared (VIS-NIR) wavelengths. On the basis of Soil pH, EC, and spectral data, the partial least squares regression (PLSR) models for estimating Soil Alkalinity and salinity were constructed. The R² values for Soil pH and EC models were 0.77 and 0.48, and the root mean square errors (RMSEs) were 0.95 and 17.92 dS/m, respectively. The ratios of performance to inter-quartile distance (RPIQ) for the Soil pH and EC models were 3.84 and 0.14, respectively, indicating that the Soil pH model performed well but the Soil EC model was not considerably reliable. With the validation dataset, the RMSEs of the two models were 1.06 and 18.92 dS/m. With the PLSR models applied to hyperspectral data acquired from the hyperspectral imager (HSI) onboard the HJ-1A satellite (launched in 2008 by China), the Soil Alkalinity and salinity distributions were mapped in the study area, and were validated with RMSEs of 1.09 and 17.30 dS/m, respectively. These findings revealed that the hyperspectral images in the VIS-NIR wavelengths had the potential to map Soil Alkalinity and salinity in the Songnen Plain, China.
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remote sensing of Soil Alkalinity and salinity in the wuyu er shuangyang river basin northeast china
Remote Sensing, 2016Co-Authors: Cuizhe Wang, Shuying Zang, Yuhong Zhang, Qianna HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.
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Remote Sensing of Soil Alkalinity and Salinity in the Wuyu’er-Shuangyang River Basin, Northeast China
Remote Sensing, 2016Co-Authors: Lin Bai, Shuying Zang, Yuhong Zhang, Cuizhen Wang, Qiannan HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.
Yuhong Zhang - One of the best experts on this subject based on the ideXlab platform.
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remote sensing of Soil Alkalinity and salinity in the wuyu er shuangyang river basin northeast china
Remote Sensing, 2016Co-Authors: Cuizhe Wang, Shuying Zang, Yuhong Zhang, Qianna HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.
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Remote Sensing of Soil Alkalinity and Salinity in the Wuyu’er-Shuangyang River Basin, Northeast China
Remote Sensing, 2016Co-Authors: Lin Bai, Shuying Zang, Yuhong Zhang, Cuizhen Wang, Qiannan HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.
Cuizhe Wang - One of the best experts on this subject based on the ideXlab platform.
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remote sensing of Soil Alkalinity and salinity in the wuyu er shuangyang river basin northeast china
Remote Sensing, 2016Co-Authors: Cuizhe Wang, Shuying Zang, Yuhong Zhang, Qianna HaoAbstract:The Songnen Plain of the Northeast China is one of the three largest soda saline-alkali regions worldwide. To better understand Soil alkalinization and salinization in this important agricultural region, it is vital to explore the distribution and variation of Soil Alkalinity and salinity in space and time. This study examined Soil properties and identified the variables to extract Soil Alkalinity and salinity via physico-chemical, statistical, spectral, and image analysis. The physico-chemical and statistical results suggested that alkaline Soils, coming from the main solute Na2CO3 and NaHCO3 in parent rocks, characterized the study area. The pH and electric conductivity (EC ) were correlated with both narrow band and broad band reflectance. For Soil pH, the sensitive bands were in short wavelength (VIS) and the band with the highest correlation was 475 nm (r = 0.84). For Soil EC, the sensitive bands were also in VIS and the band with the highest correlation was 354 nm (r = 0.84). With the stepwise regression, it was found that the pH was sensitive to reflectance of OLI band 2 and band 6, while the EC was only sensitive to band 1. The R2Adj (0.73 and 0.72) and root mean square error (RMSE) (0.98 and 1.07 dS/m) indicated that, the two stepwise regression models could estimate Soil Alkalinity and salinity with a considerable accuracy. Spatial distributions of Soil Alkalinity and salinity were mapped from the OLI image with the RMSE of 1.01 and 0.64 dS/m, respectively. Soil Alkalinity was related to salinity but most Soils in the study area were non-saline Soils. The area of alkaline Soils was 44.46% of the basin. Highly alkaline Soils were close to the Zhalong wetland and downstream of rivers, which could become a severe concern for crop productivity in this area.