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Uncertainty of soil erosion modelling using open source high resolution and aggregated DEMs 被引量:1
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作者 Arun Mondal Deepak Khare +3 位作者 Sananda Kundu Sandip Mukherjee Anirban Mukhopadhyay Surajit Mondal 《Geoscience Frontiers》 SCIE CAS CSCD 2017年第3期425-436,共12页
Digital Elevation Model (DEM) is one of the important parameters for soil erosion assessment. Notable uncertainties are observed in this study while using three high resolution open source DEMs. The Revised Universa... Digital Elevation Model (DEM) is one of the important parameters for soil erosion assessment. Notable uncertainties are observed in this study while using three high resolution open source DEMs. The Revised Universal Soil Loss Equation (RUSLE) model has been applied to analysis the assessment of soil erosion uncertainty using open source DEMs (SRTM, ASTER and CARTOSAT) and their increasing grid space (pixel size) from the actual. The study area is a part of the Narmada river basin in Madhya Pradesh state, which is located in the central part of India and the area covered 20,558 km2. The actual resolution of DEMs is 30 m and their increasing grid spaces are taken as 90, 150, 210, 270 and 330 m for this study. Vertical accuracy of DEMs has been assessed using actual heights of the sample points that have been taken considering planimetric survey based map (toposheet). Elevations of DEMs are converted to the same vertical datum from WGS 84 to MSL (Mean Sea Level), before the accuracy assessment and modelling. Results indicate that the accuracy of the SRTM DEM with the RMSE of 13.31, 14.51, and 18.19 m in 30, 150 and 330 m resolution respectively, is better than the ASTER and the CARTOSAT DEMs. When the grid space of the DEMs increases, the accuracy of the elevation and calculated soil erosion decreases. This study presents a potential uncertainty introduced by open source high resolution DEMs in the accuracy of the soil erosion assessment models. The research provides an analysis of errors in selecting DEMs using the original and increased grid space for soil erosion modelling. 展开更多
关键词 DEM RUSLE SRTM ASTER CARTOSAT
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利用稳定性^65Cu稀释技术测定长期施用有机肥土壤中不同pH条件下铜的E-值及L-值 被引量:2
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作者 陈世宝 马义兵 +1 位作者 Enzo,Lombi Mike,J.McLaughlin 《化学学报》 SCIE CAS CSCD 北大核心 2011年第4期459-465,共7页
准确评价铜的有效性对预测长期施用有机肥土壤中铜的生态风险及其环境质量标准的修订具有十分重要意义.根据稳定性65Cu稀释原理,利用黑麦草和蚯蚓为供试生物,对长期施用有机肥土壤中铜的同位素可交换性(E-值)、生物有效性(L-值)及pH变化... 准确评价铜的有效性对预测长期施用有机肥土壤中铜的生态风险及其环境质量标准的修订具有十分重要意义.根据稳定性65Cu稀释原理,利用黑麦草和蚯蚓为供试生物,对长期施用有机肥土壤中铜的同位素可交换性(E-值)、生物有效性(L-值)及pH变化对E-值、L-值的影响进行了研究.试验结果表明,以黑麦草测定的铜的L-值与铜的E-值基本相等,二者间有很高的正相关关系(R2=0.98),不同pH处理土壤中铜的L-值占土壤全铜含量变化为15.9%~21.6%,土壤中铜的L-值、E-值随pH的上升而显著下降;而利用蚯蚓测定铜的L-值小于土壤中铜的E-值和蚯蚓肠溶物中铜的E-值;蚯蚓的活动明显增加了土壤中铜的迁移、转化特性,调节土壤pH状况可以有效控制土壤中铜的生物有效性从而降低其向食物链的迁移转化. 展开更多
关键词 ^65Cu 同位素稀释技术 E-值 L-值 生物有效性
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