Journal of Geo-information Science, Volume. 22, Issue 10, 1922(2020)

Construction of Technical System for National Urban Ecological Environment Comprehensive Monitoring

Qiao WANG1... Shaohua ZHAO1,*, Hong'e FENG1,2, Yu WANG1, Zhijie BAI1, Bin MENG1 and Hui CHEN1 |Show fewer author(s)
Author Affiliations
  • 1State Environmental Protection Key Lab of Satellite Remote Sensing, Ministry of Ecology and Environment Center for Satellite Application on Ecology and Environment, Beijing 100094, China
  • 2Hebei provincial institute of hydrology and engineering geology, Shijiazhuang 050000, China
  • show less
    References(47)

    [1] [1] 赵少华, 刘思含, 毛学军, 等. 新时期我国环保领域卫星遥感技术的应用与发展[J]. 无线电工程, 2017,47(3):1-7. [ ZhaoS H, LiuS H, MaoX J, et al. The application and development of satellite remote sensing technology in the field of environmental protection in the new period[J]. Radio Engineering, 2017,47(3):1-7. ] [ Zhao S H, Liu S H, Mao X J, et al. The application and development of satellite remote sensing technology in the field of environmental protection in the new period[J]. Radio Engineering, 2017,47(3):1-7. ]

    [2] NurHidayati Iswari, SuharyadiR, DanoedoroProjo. Environmental quality assessment of urban ecology based on spatial heterogeneity and remote Sensing imagery[J]. KnE Social Sciences, 3, 363-379(2019).

    [3] BanY, SalvatoreMarullo, LarsEklundh. European remote sensing: Progress, challenges, and opportunities[J]. International Journal of Remote Sensing, 38, 1759-1764(2017).

    [4] PatinoJ E, DuqueJ C. A review of regional science applications of satellite remote sensing in urban settings[J]. Computers, Environment and Urban Systems, 37, 1-17(2013).

    [5] [5] 张晓岭, 邓力, 孙静, 等. 欧美等发达国家水环境监测方法体系[J]. 四川环境, 2012(1):49-54. [ ZhangX L, DengL, SunJ, et al. Aquatic environmental monitoring method system in developed countries[J]. Sichuan Environment, 2012(1):49-54. ] [ Zhang X L, Deng L, Sun J, et al. Aquatic environmental monitoring method system in developed countries[J]. Sichuan Environment, 2012(1):49-54. ]

    [6] [6] 赵少华, 刘思含, 刘芹芹, 等. 中国城镇生态环境遥感监测现状及发展趋势[J]. 生态环境学报, 2019,28(6):1261-1271. [ ZhaoS H, LiuS H, LiuQ Q, et al. Progress of urban ecological environment monitoring by remote sensing in China[J]. Ecology and Environmental Sciences, 2019,28(6):1261-1271. ] [ Zhao S H, Liu S H, Liu Q Q, et al. Progress of urban ecological environment monitoring by remote sensing in China[J]. Ecology and Environmental Sciences, 2019,28(6):1261-1271. ]

    [7] [7] 潘本锋, 许人骥, 宫正宇, 等. 支撑京津冀区域大气污染联防联控的大气监测体系构建[J]. 中国环境监测, 2017,33(5):57-63. [ PanB F, XuR J, GongZ Y, et al. Study on constructing the ambient air monitoring system to sustain the united prevention and control of air pollution in Beijing-Tianjin-Hebei region[J]. Environmental Monitoring in China, 2017,33(5):57-63. ] [ Pan B F, Xu R J, Gong Z Y, et al. Study on constructing the ambient air monitoring system to sustain the united prevention and control of air pollution in Beijing-Tianjin-Hebei region[J]. Environmental Monitoring in China, 2017,33(5):57-63. ]

    [8] [8] 王霞, 郭传新, 张丽杰. 基于水生态功能分区的流域水环境监测网络体系构建[J]. 环境与可持续发展, 2018,43(2):46-48. [ WangX, GuoC X, ZhangL J. Build of watershed water environment monitoring network system based on the water ecological function regionalization[J], Environment and Sustainable Development, 2018,43(2):46-48. ] [ Wang X, Guo C X, Zhang L J. Build of watershed water environment monitoring network system based on the water ecological function regionalization[J], Environment and Sustainable Development, 2018,43(2):46-48. ]

    [9] [9] 魏曦, 史明昌, 郭宏忠, 等. 小流域面源污染监测技术体系的构建[J]. 中国水土保持, 2010(11):14-16. [ WeiX, ShiM C, GuoH Z, et al. Construction of non-point source pollution monitoring technology system in small watershed[J]. Soil and Water Conservation in China, 2010(11):14-16. ] [ Wei X, Shi M C, Guo H Z, et al. Construction of non-point source pollution monitoring technology system in small watershed[J]. Soil and Water Conservation in China, 2010(11):14-16. ]

    [10] [10] 夏新, 田志仁, 姜晓旭, 等. 土壤环境监测质量监督体系的设计与实践[J]. 环境监控与预警, 2019,11(4):1-4. [ XiaX, TianZ R, JiangX X, et al. Design and Application of the Supervision System for Soil Environmental Quality[J]. Environmental Monitoring and Forewarning, 2019,11(4):1-4. ] [ Xia X, Tian Z R, Jiang X X, et al. Design and Application of the Supervision System for Soil Environmental Quality[J]. Environmental Monitoring and Forewarning, 2019,11(4):1-4. ]

    [11] [11] 马莉娟, 付强, 姚雅伟. 我国环境监测方法标准体系的现状与发展构想[J]. 中国环境监测, 2018,34(5):30-35. [ MaL J, FuQ, YaoY W. Current situation and development conception of environmental monitoring method standard system in China[J]. Environmental Monitoring in China, 2018,34(5):30-35. ] [ Ma L J, Fu Q, Yao Y W. Current situation and development conception of environmental monitoring method standard system in China[J]. Environmental Monitoring in China, 2018,34(5):30-35. ]

    [12] [12] 王桥, 刘思含. 国家环境遥感监测体系研究与实现[J]. 遥感学报, 2016,20(5):1161-1169. [ WangQ, LiuS H. Research and implementation of national environmental remote sensing monitoring system[J]. Journal of Remote Sensing, 2016,20(5):1161-1169. ] [ Wang Q, Liu S H. Research and implementation of national environmental remote sensing monitoring system[J]. Journal of Remote Sensing, 2016,20(5):1161-1169. ]

    [13] [13] 刘方, 李俊龙, 丁页, 等. 关于近岸海域生态环境监测技术体系的探讨[J]. 中国环境监测, 2017,33(2):17-22. [ LiuF, LiJ L, DingY, et al. Discussion on ecological environmental monitoring system in marine[J]. Environmental Monitoring in China, 2017,33(2):17-22. ] [ Liu F, Li J L, Ding Y, et al. Discussion on ecological environmental monitoring system in marine[J].Environmental Monitoring in China, 2017,33(2):17-22. ]

    [14] [14] 李艳萍, 张浩, 周国栋. 完善环境监测技术监督体系的思考[J]. 环境监测管理与技术, 2014,26(6):5-8. [ LiY P, ZhangH, ZhouG D. Thinking about perfecting the technology supervision system of environmental monitoring[J]. Environmental Monitoring Management and Technology, 2014,26(6):5-8. ] [ Li Y P, Zhang H, Zhou G D. Thinking about perfecting the technology supervision system of environmental monitoring[J]. Environmental Monitoring Management and Technology, 2014,26(6):5-8. ]

    [15] YangJ, SuJ, XiaJ et al. The impact of spatial form of urban architecture on the urban thermal environment: A case study of the Zhongshan district, Dalian, China[J]. Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of, 11, 2709-2716(2018).

    [16] LiS W, YangX, MaJ et al. Application of dynamic and reusable report generation system in urban environmental remote sensing monitoring[J]. Advanced Materials Research, 2012, 18-22.

    [17] ChenX Y, ChengP G, TongC Z et al. Urban ecological environment monitoring and evaluation based on remote sensing ecological index[C]. International Conference on Intelligent Earth Observing and Applications 2015. International Society for Optics and Photonics(2015).

    [18] [18] 夏新, 姜晓旭. 中国土壤环境监测方法体系现状分析与对策[J]. 世界环境, 2018(3):33-35. [ XiaX, JiangX X. Analysis of current soil environmental monitoring method system in China and relevant countermeasures[J]. World Environment, 2018(3):33-35. ] [ Xia X, Jiang X X. Analysis of current soil environmental monitoring method system in China and relevant countermeasures[J]. World Environment, 2018(3):33-35. ]

    [19] [19] 赵少华, 王桥, 游代安, 等. 卫星红外遥感技术在我国环保领域中的应用与发展分析[J]. 地球信息科学学报, 2015,17(7):855-861. [ ZhaoS H, WangQ, YouD A, et al. Preliminary analysis on the application of satellite infrared remote sensing techniques in environmental protection of China[J]. Journal of Geo-information Science, 2015,17(7):855-861. ] [ Zhao S H, Wang Q, You D A, et al. Preliminary analysis on the application of satellite infrared remote sensing techniques in environmental protection of China[J]. Journal of Geo-information Science, 2015,17(7):855-861. ]

    [20] [20] 边博, 程小娟. 城市河流生态系统健康及其评价[J]. 环境保护, 2006(4):66-69. [ BianB, ChengX J. The health and evaluation of urban river ecosystem[J]. Environmental Protection, 2006(4):66-69. ] [ Bian B, Cheng X J. The health and evaluation of urban river ecosystem[J]. Environmental Protection, 2006(4):66-69. ]

    [21] [21] 吴敬东, 叶芝菡, 梁延丽, 等. 生态清洁小流域水生态环境监测指标体系初探[J]. 中国水土保持, 2007(9):8-9,60. [ WuJ D, YeZ H, LiangY L, et al. Study on the index system of the water eco-environmental monitoring in the small watershed of the ecological clean[J]. Soil and Water Conservation in China, 2007(9):8-9,60. ] [ Wu J D, Ye Z H, Liang Y L, et al. Study on the index system of the water eco-environmental monitoring in the small watershed of the ecological clean[J].Soil and Water Conservation in China, 2007(9):8-9,60. ]

    [22] [22] 向嘉敏, 祝善友, 张桂欣, 等. 灰霾遥感监测研究进展[J]. 遥感技术与应用, 2019,34(1):12-20. [ XiangJ M, ZhuS Y, ZhangG X, et al. Progress in haze monitoring by remote sensing technology. Remote Sensing Technology and Application, 2019,34(1):12-20. ] [ Xiang J M, Zhu S Y, Zhang G X, et al. Progress in haze monitoring by remote sensing technology. Remote Sensing Technology and Application, 2019,34(1):12-20. ]

    [24] LiZ, ZhangY, ShaoJ et al. Remote sensing of atmospheric particulate mass of dry PM2.5 near the ground: Method validation using ground-based measurements[J]. Remote Sensing of Environment, 173, 59-68(2016).

    [25] [25] 陈辉, 厉青, 李营, 等. 京津冀及周边地区PM2.5时空变化特征遥感监测分析[J]. 环境科学, 2019,40(1):33-43. [ ChenH, LiQ, LiY, et al. Monitoring and analysis of the spatio-temporal change characteristics of the PM2.5 concentration over Beijing-Tianjin-Hebei and its surrounding regions based on remote sensing[J]. Environmental Science, 2019,40(1):33-43. ] 2.5时空变化特征遥感监测分析[J].环境科学,2019,40(1):33-43.[ Chen H, Li Q, Li Y, et al. Monitoring and analysis of the spatio-temporal change characteristics of the PM2.5 concentration over Beijing-Tianjin-Hebei and its surrounding regions based on remote sensing[J]. Environmental Science, 2019,40(1):33-43. ]

    [26] ShenD. Estimation of atmosphere particular matter by using Haze Optimized Transformation method. Nanjing: Nanjing Normal University(2011).

    [27] [27] 闫欢欢, 李晓静, 张兴赢, 等. 大气SO2柱总量遥感反演算法比较分析及验证[J]. 物理学报, 2016,65(8):084204. [ YanH H, LiX J, ZhangX Y, et al. Comparison and validation of band residual difference algorithm and principal component analysis algorithm for retrievals of atmospheric SO2 columns from satellite observations[J]. Acta Physica Sinica, 2016,65(8):084204. ] 2柱总量遥感反演算法比较分析及验证[J].物理学报,2016,65(8):084204.[ Yan H H, Li X J, Zhang X Y, et al. Comparison and validation of band residual difference algorithm and principal component analysis algorithm for retrievals of atmospheric SO2 columns from satellite observations[J]. Acta Physica Sinica, 2016,65(8):084204. ]

    [28] [28] 张兴赢, 周敏强, 王维和, 等. 全球卫星大气成分遥感探测应用进展及其展望[J]. 科技导报, 2015,33(17):13-22. [ ZhangX Y, ZhouM Q, WangW H, et al. Progress of global satellite remote sensing of atmospheric compositions and its' applications. Science & Technology Review, 2015,33(17):13-22. ] [ Zhang X Y, Zhou M Q, Wang W H, et al. Progress of global satellite remote sensing of atmospheric compositions and its' applications. Science & Technology Review, 2015,33(17):13-22. ]

    [29] [29] 焦骄, 刘旻霞, 李俐蓉, 等. 近12年华北五省区域对流层甲醛柱浓度时空变化及影响因素[J]. 环境科学学报, 2018,38(6):2191-2200. [ JiaoJ, LiuM X, LiL R, et al. Spatio-temporal change and influencing factors of tropospheric HCHO column density of the five Provinces of North China in the 12 years[J]. Acta Scientiae Circumstantiae, 2018,38(6):2191-2200. ] [ Jiao J, Liu M X, Li L R, et al. Spatio-temporal change and influencing factors of tropospheric HCHO column density of the five Provinces of North China in the 12 years[J]. Acta Scientiae Circumstantiae, 2018,38(6):2191-2200. ]

    [30] [30] 温爽, 王桥, 李云梅, 等. 基于高分影像的城市黑臭水体遥感识别:以南京为例[J]. 环境科学, 2018,39(1):57-67. [ WenS, WangQ, LiY M, et al. Remote sensing identification of urban black-odor water bodies based on high-resolution images: A case study in Nanjing[J]. Environmental Science, 2018,39(1):57-67. ] [ Wen S, Wang Q, Li Y M, et al. Remote sensing identification of urban black-odor water bodies based on high-resolution images: A case study in Nanjing[J]. Environmental Science, 2018,39(1):57-67. ]

    [31] [31] 王桥, 朱利. 城市黑臭水体遥感监测技术与应用示范[M]. 北京: 中国环境出版集团, 2018. [ WangQ, ZhuL. Urban black and odorous water monitoring technique and application using remote sensing[M]. Beiing: China Environmental Science Press, 2018. ] [ Wang Q, Zhu L. Urban black and odorous water monitoring technique and application using remote sensing[M]. Beiing: China Environmental Science Press, 2018. ]

    [33] [33] 曹引, 冶运涛, 赵红莉, 等. 内陆水体水质参数遥感反演集合建模方法[J]. 中国环境科学, 2017,37(10):3940-3951. [ CaoY, YeY T, ZhaoH L, et al. Ensemble modeling methods for remote sensing retrieval of water quality parameters in inland water[J]. China Environmental Science, 2017,37(10):3940-3951. ] [ Cao Y, Ye Y T, Zhao H L, et al. Ensemble modeling methods for remote sensing retrieval of water quality parameters in inland water[J]. China Environmental Science, 2017,37(10):3940-3951. ]

    [34] [34] 杜成功, 李云梅, 王桥, 等. 面向GOCI数据的太湖总磷浓度反演及其日内变化研究[J]. 环境科学, 2016,37(3):862-872. [ DuC G, LiY M, WangQ, et al. Inversion model and daily variation of total phosphorus concentrations in Taihu lake based on GOCI data[J]. Environmental Science, 2016,37(3):862-872. ] [ Du C G, Li Y M, Wang Q, et al. Inversion model and daily variation of total phosphorus concentrations in Taihu lake based on GOCI data[J]. Environmental Science, 2016,37(3):862-872. ]

    [35] [35] 朱海涛, 张霞, 王树东, 等. 基于面向对象决策树算法的半干旱地区遥感影像分类[J]. 遥感信息, 2013,28(4):50-56. [ ZhuH T, ZhangX, WangS D, et al. Objected-oriented and decision tree classification for remote sensing data in semi-arid areas[J]. Remote Sensing Information, 2013,28(4):50-56. ] [ Zhu H T, Zhang X, Wang S D, et al. Objected-oriented and decision tree classification for remote sensing data in semi-arid areas[J]. Remote Sensing Information, 2013,28(4):50-56. ]

    [36] [36] 张堡宸, 胡建荣, 李新军, 等. 基于遥感数据的森林水源涵养估测研究[J]. 中国农学通报, 2013,30(1):98-102. [ ZhangB C, HuJ R, LiX J, et al. Estimation and research of forest water conservation based on remote sensing[J]. Chinese Agricultural Science Bulletin, 2013,30(1):98-102. ] [ Zhang B C, Hu J R, Li X J, et al. Estimation and research of forest water conservation based on remote sensing[J]. Chinese Agricultural Science Bulletin, 2013,30(1):98-102. ]

    [37] [37] 贾坤, 姚云军, 魏香琴, 等. 植被覆盖度遥感估算研究进展[J]. 地球科学进展, 2013,28(7):774-782. [ JiaK, YaoY J, WeiX Q, et al. A review on fractional vegetation cover estimation using remote sensing[J]. Advances in Earth Science, 2013,28(7):774-782. ] [ Jia K, Yao Y J, Wei X Q, et al. A review on fractional vegetation cover estimation using remote sensing[J]. Advances in Earth Science, 2013,28(7):774-782. ]

    [38] [38] 张金营. 基于高分辨率遥感影像提取城市绿地信息的方法研究[D]. 东营:中国石油大学(华东), 2012. [ ZhangJ Y. Study on the methods for extracting city green land information based on the high-resolution remote sensing images[D]. Dongying: China University of Petroleum (East China), 2012. ] [ Zhang J Y. Study on the methods for extracting city green land information based on the high-resolution remote sensing images[D]. Dongying: China University of Petroleum (East China), 2012. ]

    [39] [39] 颜伟, 周雯, 易利龙, 等. 森林类型遥感分类及变化监测研究进展[J]. 遥感技术与应用, 2019,34(3):445-454. [ YanW, ZhouW, YiL L, et al. Research progress of remote sensing classification and change monitoring on forest types[J]. Remote Sensing Technology and Application, 2019,34(3):445-454. ] [ Yan W, Zhou W, Yi L L, et al. Research progress of remote sensing classification and change monitoring on forest types[J]. Remote Sensing Technology and Application, 2019,34(3):445-454. ]

    [40] [40] 娄雪婷, 曾源, 吴炳方. 森林地上生物量遥感估测研究进展[J]. 国土资源遥感, 2011,23(1):1-8. [ LouX T, CengY, WuB F. Advances in the estimation of above-ground biomass of forest using remote sensing. Remote Sensing for Land & Resources, 2011,23(1):1-8. ] [ Lou X T, Ceng Y, Wu B F. Advances in the estimation of above-ground biomass of forest using remote sensing. Remote Sensing for Land & Resources, 2011,23(1):1-8. ]

    [41] [41] 熊文成, 聂忆黄, 王桥, 等. 土壤污染遥感研究进展及应用展望[J]. 环境与可持续发展, 2017(6):53-56. [ XiongW C, NieY H, WangQ, et al. Progress in soil pollution remote sensing and its application Prospect[J]. Environment and Sustainable Development, 2017(6):53-56. ] [ Xiong W C, Nie Y H, Wang Q, et al. Progress in soil pollution remote sensing and its application Prospect[J]. Environment and Sustainable Development, 2017(6):53-56. ]

    [42] [42] 李召良, 段四波, 唐伯惠, 等. 热红外地表温度遥感反演方法研究进展[J]. 遥感学报, 2016,20(5):899-920. [ LiZ L, DuanS B, TangB H. 2016. Review of methods for land surface temperature derived from thermal infrared remotely sensed data[J]. Journal of Remote Sensing, 2016,20(5):899-920. ] [ Li Z L, Duan S B, Tang B H.2016. Review of methods for land surface temperature derived from thermal infrared remotely sensed data[J]. Journal of Remote Sensing, 2016,20(5):899-920. ]

    [43] [43] 周月敏, 周翔. 中国高分辨率对地观测系统共性应用技术规范体系框架研究[J]. 地球信息科学学报, 2018,20(9):1298-1305. [ ZhouY M, ZhouX. The system framework of technical standards for common applications in China high resolution earth observation system[J]. Journal of Geo-Information Science, 2018,20(9):1298-1305. ] [ Zhou Y M, Zhou X. The system framework of technical standards for common applications in China high resolution earth observation system[J]. Journal of Geo-Information Science, 2018,20(9):1298-1305. ]

    [44] [44] 唐兆军, 俸强, 王宇星, 等. 国家大气污染排放标准中环境监测相关问题的研究[J]. 环境科学导刊, 2019,38(3):84-88. [ TangZ J, FengQ, WangY X, et al. Research on the problems of national air pollutants emission standards on environmental monitoring[J]. Environmental Science Guide, 2019,38(3):84-88. ] [ Tang Z J, Feng Q, Wang Y X, et al. Research on the problems of national air pollutants emission standards on environmental monitoring[J]. Environmental Science Guide, 2019,38(3):84-88. ]

    [45] [45] 雷晶, 张虞, 朱静, 等. 我国环境监测标准体系发展现状、问题及建议[J]. 环境保护, 2018,46(22):37-39. [ LeiJ, ZhangY, ZhuJ, et al. The development status, problems and suggestions of Chinese environmental monitoring standards[J]. Environmental Protection, 2018,46(22):37-39. ] [ Lei J, Zhang Y, Zhu J, et al. The development status, problems and suggestions of Chinese environmental monitoring standards[J]. Environmental Protection, 2018,46(22):37-39. ]

    [46] [46] 赵磊. 生态环境动态监测体系优化研究[J]. 环境与发展, 2019,31(6):183-185. [ ZhaoL. Research on optimization of ecological environment monitoring system[J]. Environment and Development, 2019,31(6):183-185. ] [ Zhao L. Research on optimization of ecological environment monitoring system[J]. Environment and Development, 2019,31(6):183-185. ]

    [47] [47] 赵少华, 王桥, 游代安, 等. 高分辨率卫星在环境保护领域中的应用[J]. 国土资源遥感, 2015,27(4):1-7. [ ZhaoS H, WangQ, YouD A, et al. Application of high resolution satellites to environmental protection[J]. Remote Sensing For Land & Resources, 2015,27(4):1-7. ] [ Zhao S H, Wang Q, You D A, et al. Application of high resolution satellites to environmental protection[J]. Remote Sensing For Land & Resources, 2015,27(4):1-7. ]

    Tools

    Get Citation

    Copy Citation Text

    Qiao WANG, Shaohua ZHAO, Hong'e FENG, Yu WANG, Zhijie BAI, Bin MENG, Hui CHEN. Construction of Technical System for National Urban Ecological Environment Comprehensive Monitoring[J]. Journal of Geo-information Science, 2020, 22(10): 1922

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Received: Sep. 4, 2019

    Accepted: --

    Published Online: Apr. 23, 2021

    The Author Email: ZHAO Shaohua (zshyytt@126.com)

    DOI:10.12082/dqxxkx.2020.190488

    Topics