[1] 张红桔,赵科理,叶正钱,等. 典型山核桃产区土壤重金属空间异质性及其风险评价[J]. 环境科学,2018,39(6):2893-2903. [2] 庞妍,同延安,梁连友,等. 污灌农田土壤-作物体系重金属污染评价[J]. 农业机械学报,2015,46(1):148-154. [3] 郭云开,刘宁,刘磊,等. 土壤Cu含量高光谱反演的BP神经网络模型[J]. 测绘科学,2018,43(1):135-139. [4] 吕雅慧,张超,郧文聚,等. 高分辨率遥感影像农田林网自动识别[J].农业机械学报,2018,49(1):157-163. [5] 王璐,蔺启忠,贾东,等. 基于反射光谱预测土壤重金属元素含量的研究[J].遥感学报,2007,11(6):906-913. [6] MOROS J, VALLEJUELO S F O, GREDILLA A, et al. Use of reflectance infrared spectroscopy for monitoring the metal content of the estuarine sediments of the Nerbioi-Ibaizabal River(Metropolitan Bilbao, Bay of Biscay, Basque Country)[J]. Environmental Science and Technology,2009,43(24):9314-9320. [7] 谭琨,叶元元,杜培军,等. 矿区复垦农田土壤重金属含量的高光谱反演分析[J].光谱学与光谱分析,2014,34(12):3317-3322. [8] HU H, YANG F G, ZHOU G Z, et al. Spectral features and regression model of mine vegetation in the press of heavy metal[C]//Second International Workshop on Education Technology & Computer Science. [S.l.]:IEEE, 2010. [9] KEMPER T, SOMMER S. Estimate of heavy metal conta-mination in soils after a mining accident using reflectance spectroscopy[J]. Environmental Science & Technology, 2002, 36 (12):2742-2747. [10] KOOISTRA L, WEHRENS R, LEUVEN R S E W, et al. Possibilities of visible-near -infrared spectroscopy for the assessment of soil contamination in river floodplains[J]. Analytica Chimica Acta, 2001, 446(1):97-105. [11] 贺军亮,崔军丽,张淑媛,等.基于偏最小二乘的土壤重金属铜含量高光谱估算[J].遥感技术与应用,2019,34(5):998-1004. [12] 钱佳,郭云开,章琼,等.矿区土壤重金属Pb、Cd污染状况高光谱分类建模[J].测绘通报,2019(9):82-84. [13] 王腾军,赵明海,杨耘,等.多光谱影像的陕西大西沟矿区土壤重金属含量反演[J].光谱学与光谱分析,2019,39(12):3880-3887. [14] IVAKHNENKO A G, SAVCHENKO E A. Problems of further GMDH algorithoms development[J]. System Analysis Modelling Simulation, 2003, 43(10):1301-1309. [15] 章琼,郭云开,钱佳,等.像元二分模型的土壤重金属Cr的遥感反演[J].测绘科学,2020,45(4):58-63. |