数字农科院2.0

Detection of Soil Erosion Hotspots in the Croplands of a Typical Black Soil Region in Northeast China: Insights from Sentinel-2 Multispectral Remote Sensing

文献类型: 外文期刊

作者: Lulu Qi;Pu Shi;Klara Dvorakova;Kristof Van Oost;Qi Sun;Hanqing Yu;Bas van Wesemael

作者机构:

关键词: mapping;multitemporal composite;northeast China;Sentinel-2;SOC;soil erosion

期刊名称: Remote Sensing

ISSN: 2072-4292

年卷期: 2023 年 15 卷 5 期

页码:

收录情况: SCIE(2023版) ; ; EI(2023版)

摘要: Global efforts to restore the world’s degraded croplands require knowledge on the degree and extent of accelerated soil organic carbon (SOC) loss induced by soil erosion. However, the methods for assessing where and to what extent erosion takes place are still inadequate for precise detection of erosion hotspots at high spatial resolution. Drawing on recent advances in multitemporal Sentinel-2 remote sensing to create a bare soil composite that reflects erosion-induced variations in soil spectral signatures, this study attempted to develop a spectra-based soil erosion mapping approach to pinpoint eroded hotspots in a typical catchment located in the black soil region of northeast China as characterized by undulating landscapes. We built a ground-truth dataset consisting of three classes of soils representing Severe, Moderate and Low erosion intensity because of their inter-class contrasts in estimated erosion rates from 137Cs tracing. The spectral separability of different erosion classes was first tested by a combined principal component and linear discriminant analysis (PCA-LDA) against laboratory hyperspectral data and then validated against Sentinel-2-derived broadband spectra. The results show that PCA-LDA produced excellent classification accuracy (Kappa coefficient > 0.9) for both data sources and even more so for Sentinel-2 spectra, highlighting the effectiveness of the multitemporal approach to extract bare soil pixels. Further investigations into the spectral curves enabled identification of distinctive spectral features representative of shifting soil albedo and biochemical composition due to erosion-induced SOC mobilization. A classification scheme comprising the spectral features was applied to the Sentinel-2 bare soil composite for pixel-wise soil erosion mapping, in which 15.9% of the cropland area was detected as erosion hotspots, while the Moderate class occupied 65.4%. Comparing the erosion map to a NDVI map demonstrated the negative impact of soil erosion on crop growth from a spatial perspective, highlighting the potential of the proposed approach to aid targeted cropland management for food security and climate.

分类号:

  • 相关文献

[1]Soil Organic Matter Spatial Distribution Change over the Past 20 Years and Its Causes in Northeast. Yao, Yanmin,Tang, Huajun,Tang, Pengqin,Yu, Shikai,Wang, Deying,Si, Haiqing,Chen, Youqi,He, Yingbin. 2013

[2]基于时序Sentinel-2影像的梨树县作物种植结构. 刘俊伟,陈鹏飞,张东彦,赵红伟. 2020

[3]基于无人机与卫星遥感的草原地上生物量反演研究. 李淑贞,徐大伟,范凯凯,陈金强,佟旭泽,辛晓平,王旭. 2022

[4]基于多时相遥感植被指数的柑橘果园识别. 梁晨欣,黄启厅,王思,王聪,余强毅,吴文斌. 2021

[5]Sentinel-2宽波段光谱指数预测拔节后受冻冬小麦减产率. 赵爱萍,马浚诚,武永峰,胡新,任德超,李崇瑞. 2022

[6]东北三省2020-2022年间10 m空间分辨率耕地资源空间分布数据集. 申格,刘航,李丹丹,陈实,邹金秋. 2023

[7]多源中高分辨率影像协同下时间合成窗口对农作物识别的影响. 童婉婷,魏浩东,杨靖雅,金文捷,宋茜,胡琼,尹高飞,徐保东. 2024

[8]基于作物参考曲线法的冬小麦NDVI时间序列重建——以河北省部分区域为例. 敖洋钎,王永前,孙政,孙亮. 2025

[9]农田玉米秸秆覆盖类型的光学和微波遥感识别潜力分析. 张文茜,李文娟,余强毅,唐华俊,王聪,吴文斌. 2025

[10]Simulation and Prediction of Soil Organic Carbon Spatial Change in Arable Lands Based on DNDC Model. Wang, Deying,Yao, Yanmin,Si, Haiqing,Zhang, Wenju,Tang, Huajun. 2014

[11]The contribution of microorganisms to soil organic carbon accumulation under fertilization varies among aggregate size classes. Jinjing Lu,Shengping Li,Guopeng Liang,Xueping Wu,Qiang Zhang,Chunhua Gao,Jianhua Li,Dongsheng Jin,Fengjun Zheng,Mengni Zhang,Ahmed Ali Abdelrhman,Aurore Degré. 2021

[12]Effect Of Wetland Reclamation On S.oil Aggregates Content And S oil Organic Carbon Distribution Of Aggregates In Peat Mire Soil Around Xingkai Lake In Northeast China. Huo, LL, Huan, HY, An, Y. 2017

[13]Soil moisture and water-nitrogen synergy dominate the change of soil carbon stock in farmland. Caixia Li,Guangshuai Wang,Qisheng Han,Jingsheng Sun,Huifeng Ning,Di Feng. 2023

[14]Strategies to reduce CH4 and N2O emissions whilst maintaining crop yield in rice–wheat system under climate change using SPACSYS model. Shuhui Wang,Nan Sun,Zhijian Mu,Fa Wang,Xiaojun Shi,Chuang Liu,Shuxiang Zhang,Joost Wellens,Bernard Longdoz,Jeroen Meersmans,Gilles Colinet,Minggang Xu,Lianhai Wu. 2025

[15]Dissimilatory Nitrate Reduction to Ammonium (DNRA) and nrfA Gene in Crop Soils: A Meta-Analysis of Cropland Management Effects. Yang, Qiannan,Li, Hu,Gong, Lingxuan,Zhang, Xiaolei,Wang, Lili. 2025

[16]Crop specific inversion of PROSAIL to retrieve green area index (GAI) from several decametric satellites using a Bayesian framework. Jingwen Wang,Raul Lopez-Lozano,Marie Weiss,Samuel Buis,Wenjuan Li,Shouyang Liu,Frédéric Baret,Jiahua Zhang. 2022

[17]Automated soybean mapping based on canopy water content and chlorophyll content using Sentinel-2 images. Huang, Yingze,Qiu, Bingwen,Chen, Chongcheng,Zhu, Xiaolin,Wu, Wenbin,Jiang, Fanchen,Lin, Duoduo,Peng, Yufeng. 2022

[18]Crop type mapping with temporal sample migration. Zhang, Shibo,Yang, Jingya,Leng, Pei,Ma, Yuman,Wang, Hongyang,Song, Qian. 2023

[19]Crop Mapping Based on Temporal and Spatial Sample Migrations: A Case Study Over Three Counties in Heilongjiang Province, Northeast China. Zuo, Hao-Nan,Leng, Pei,Li, Yu-Xuan,Song, Qian,Li, Zhao-Liang. 2024

[20]In-Season Crop Type Detection by Combing Sentinel-1A and Sentinel-2 Imagery Based on the CNN Model. Mao, Mingxiang,Zhao, Hongwei,Tang, Gula,Ren, Jianqiang. 2023

作者其他论文 更多>>