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智慧环保体系在环境治理中的应用

李信茹 周民 米屹东 苏海磊 陈海燕 王凡凡 杨硕 沈亚琴 魏源

李信茹, 周民, 米屹东, 苏海磊, 陈海燕, 王凡凡, 杨硕, 沈亚琴, 魏源. 智慧环保体系在环境治理中的应用[J]. 环境工程技术学报, 2021, 11(5): 992-1003. doi: 10.12153/j.issn.1674-991X.20200282
引用本文: 李信茹, 周民, 米屹东, 苏海磊, 陈海燕, 王凡凡, 杨硕, 沈亚琴, 魏源. 智慧环保体系在环境治理中的应用[J]. 环境工程技术学报, 2021, 11(5): 992-1003. doi: 10.12153/j.issn.1674-991X.20200282
Xinru LI, Min ZHOU, Yidong MI, Hailei SU, Haiyan CHEN, Fanfan WANG, Shuo YANG, Yaqin SHEN, Yuan WEI. Application of smart environmental protection system in environmental management[J]. Journal of Environmental Engineering Technology, 2021, 11(5): 992-1003. doi: 10.12153/j.issn.1674-991X.20200282
Citation: Xinru LI, Min ZHOU, Yidong MI, Hailei SU, Haiyan CHEN, Fanfan WANG, Shuo YANG, Yaqin SHEN, Yuan WEI. Application of smart environmental protection system in environmental management[J]. Journal of Environmental Engineering Technology, 2021, 11(5): 992-1003. doi: 10.12153/j.issn.1674-991X.20200282

智慧环保体系在环境治理中的应用

doi: 10.12153/j.issn.1674-991X.20200282
详细信息
    作者简介:

    李信茹(1996—),女,硕士研究生,主要研究方向为土壤污染修复, 18813145607@163.com

    通讯作者:

    魏源 E-mail: craes_wy_team@163.com

  • 中图分类号: X324

Application of smart environmental protection system in environmental management

More Information
    Corresponding author: Yuan WEI E-mail: craes_wy_team@163.com
  • 摘要: 随着大数据时代的到来,智慧环保体系已经成为推动环境治理能力和治理体系现代化的重要理论支撑,建立完善的智慧环保体系更是我国进一步提高环境治理效率的必然要求和重要举措。将当前快速发展的物联网技术应用到环境治理中,建立智能的环境数据获取和处理分析系统,做出合理的决策,进而提高环境管理效率是建立和完善智慧环保体系的关键措施。智慧环保体系与城市环境治理的结合能实时高效地监测城市污染源、生态管理等多领域环境问题,并对可能出现的环境问题做出应急反应及决策。系统地介绍了智慧环保体系的总体架构及支撑整个系统的标准体系,同时提出了智慧环保体系建设过程中遇到的困难,分析了智慧环保体系在环境治理与保护不同领域的应用,以期为未来智慧环保体系应用于环境治理和管理提供建议和参考。

     

  • [1] 郑石明. 数据开放、公众参与和环境治理创新[J]. 行政论坛, 2017, 24(4):76-81.

    ZHENG S M. Open data,public participation and environmental governance innovation[J]. Administrative Tribune, 2017, 24(4):76-81.
    [2] FAZIO M, CELESTI A, PULIAFITO A, et al. Big data storage in the cloud for smart environment monitoring[J]. Procedia Computer Science, 2015, 52:500-506.
    doi: 10.1016/j.procs.2015.05.023
    [3] POTKONJAK V, GARDNER M, CALLAGHAN V, et al. Virtual laboratories for education in science,technology,and engineering:a review[J]. Computers & Education, 2016, 95:309-327.
    doi: 10.1016/j.compedu.2016.02.002
    [4] 吴前梅, 田时达. GPS在高速公路测绘中的运用[J]. 西部资源, 2020(4):152-154.
    [5] LARSON K M, MACFERRIN M, NYLEN T. Brief communication:update on the GPS reflection technique for measuring snow accumulation in Greenland[J]. The Cryosphere, 2020, 14(6):1985-1988.
    doi: 10.5194/tc-14-1985-2020
    [6] 陶延林, 张明. 基于北斗系统的矿山地表GPS监测研究[J]. 矿产勘查, 2019, 10(12):2990-2994.

    TAO Y L, ZHANG M. Research on mine surface GPS monitoring based on Beidou system[J]. Mineral Exploration, 2019, 10(12):2990-2994.
    [7] ZHENG S, TAN H X, CHEN H B, et al. Hydrological parameter analysis based on similarity theory and 3S technology[J]. IOP Conference Series:Earth and Environmental Science, 2019, 218:012132.
    doi: 10.1088/1755-1315/218/1/012132
    [8] 谷金英, 冯仲科. 基于3S技术的北京市三维绿量估测研究[J]. 西北林学院学报, 2015, 30(1):240-244.

    GU J Y, FENG Z K. 3S technology-based estimation model of tridimensional green biomass in Beijing[J]. Journal of Northwest Forestry University, 2015, 30(1):240-244.
    [9] 何绍福, 马剑, 李春茂. “3S”技术发展综述[J]. 三明高等专科学校学报, 2001(3):50-54.

    HE S F, MA J, LI C M. Review of 3S technology development[J]. Journal of Sanming Academy of Higher Learning, 2001(3):50-54.
    [10] 王振中. “3S”技术集成及其在土地管理中的应用[J]. 测绘科学, 2005, 30(4):62-64.

    WANG Z Z. The integration of “3S” techniques and their applications in land management[J]. Science of Surveying and Mapping, 2005, 30(4):62-64.
    [11] 许晔, 郭铁成. IBM“智慧地球”战略的实施及对我国的影响[J]. 中国科技论坛, 2014(3):148-153.

    XU Y, GUO T C. The influence of IBM “smarter planet” on China[J]. Forum on Science and Technology in China, 2014(3):148-153.
    [12] 李德仁, 龚健雅, 邵振峰. 从数字地球到智慧地球[J]. 武汉大学学报(信息科学版), 2010, 35(2):127-132.

    LI D R, GONG J Y, SHAO Z F. From digital earth to intelligent earth[J]. Journal of Wuhan University(Information Science Edition), 2010, 35(2):127-132.
    [13] 徐敏, 孙海林. 从“数字环保”到“智慧环保”[J]. 环境监测管理与技术, 2011, 23(4):5-7.

    XU M, SUN H L. From “digital environmental protection” to “smart environmental protection”[J]. The Administration and Technique of Environmental Monitoring, 2011, 23(4):5-7.
    [14] GALE F, ASCUI F, LOVELL H. Sensing reality:new monitoring technologies for global sustainability standards[J]. Global Environmental Politics, 2017, 17(2):65-83.
    doi: 10.1162/GLEP_a_00401
    [15] KOOMEY J G, MATTHEWS H S, WILLIAMS E. Smart everything:will intelligent systems reduce resource use[J]. Annual Review of Environment and Resources, 2013, 38(1):311-343.
    doi: 10.1146/annurev-environ-021512-110549
    [16] RESCH B, SCHULZ B, MITTLBOECK M, et al. Pervasive geo-security:a lightweight triple:a approach to securing distributed geo-service infrastructures[J]. International Journal of Digital Earth, 2014, 7(5):373-390.
    doi: 10.1080/17538947.2012.674562
    [17] GOODCHILD M F, GLENNON J A. Crowdsourcing geographic information for disaster response:a research frontier[J]. International Journal of Digital Earth, 2010, 3(3):231-241.
    doi: 10.1080/17538941003759255
    [18] SHAHID N, NAQVI I H, QAISAR S B. Characteristics and classification of outlier detection techniques for wireless sensor networks in harsh environments:a survey[J]. Artificial Intelligence Review, 2015, 43(2):193-228.
    doi: 10.1007/s10462-012-9370-y
    [19] 乔欣, 孔兵. 基于ZigBee技术的巢湖水质监测系统设计[J]. 巢湖学院学报, 2019, 21(3):7-13.

    QIAO X, KONG B. Design of Chaohu water quality monitoring system based on ZigBee technology[J]. Journal of Chaohu University, 2019, 21(3):7-13.
    [20] 李春明, 张会, 陈丁楷. 室内空气质量在线检测系统的研制[J]. 环境科学与技术, 2017, 40(5):141-144.

    LI C M, ZHANG H, CHEN D K. Development of online detecting system for indoor air quality[J]. Environmental Science & Technology, 2017, 40(5):141-144.
    [21] 杨康, 刘文强, 万骏. 基于NB-IoT的化工厂爆炸性环境监测及预警系统[J]. 物联网技术, 2020, 10(12):20-23.
    [22] 姚引娣, 王磊, 花静云, 等. 基于B/S架构的LoRa远程温室监测系统[J]. 传感器与微系统, 2021, 40(1):78-80.

    YAO Y D, WANG L, HUA J Y, et al. LoRa remote greenhouse monitoring system based on B/S architecture[J]. Transducer and Microsystem Technologies, 2021, 40(1):78-80.
    [23] 金舰, 蒋鑫, 吴星, 等. NB-IoT与eMTC技术对比与发展现状分析[J]. 信息通信技术与政策, 2019(1):89-94.
    [24] 汪康. 基于NB-IoT的智能楼宇环境监控系统设计[D]. 南京:南京邮电大学, 2019.
    [25] 周博雅, 徐若然, 徐晓林, 等. 智慧环保在城市环境治理中的应用研究[J]. 电子政务, 2018(2):82-88.
    [26] 葛锡志. 智慧环保大气环境遥感实时监测分析服务平台助力大气污染精准监测[J]. 卫星应用, 2020(2):32-35.
    [27] YAN W G, HUTCHINS M, LOISELLE S, et al. An informatics approach for smart evaluation of water quality related ecosystem services[J]. Annals of Data Science, 2016, 3(3):251-264.
    doi: 10.1007/s40745-015-0067-3
    [28] BUKIN O A, PROSCHENKO D Y, CHEKHLENOK A A, et al. Methods for optical monitoring of oil pollution of sea water basins using unmanned aerial vehicles[J]. Atmospheric and Oceanic Optics, 2019, 32(4):459-463.
    doi: 10.1134/S102485601904002X
    [29] 黄诗曼, 胡庆武, 李海东, 等. 基于RS和GIS的峨眉山风景区生态风险评价[J]. 环境科学研究, 2020, 33(12):2745-2751.

    HUANG S M, HU Q W, LI H D, et al. Ecological risk assessment of mount Emei based on RS and GIS[J]. Research of Environmental Sciences, 2020, 33(12):2745-2751.
    [30] 张知晓, 泽桑梓, 季梅, 等. 薇甘菊替代控制技术研究[J]. 西部林业科学, 2018, 47(3):123-128.

    ZHANG Z X, ZE S Z, JI M, et al. The replacement control technology of Mikania micrantha[J]. Journal of West China Forestry Science, 2018, 47(3):123-128.
    [31] 李云琴, 季梅, 刘凌, 等. 云南省林地薇甘菊防控研究进展[J]. 生物安全学报, 2019, 28(1):1-6.

    LI Y Q, JI M, LIU L, et al. Progress in prevention and control of Mikania micrantha in Yunnan forestland[J]. Journal of Biosafety, 2019, 28(1):1-6.
    [32] 焉恒琦, 朱卫红, 毛德华, 等. 长江三角洲国际重要湿地人为胁迫遥感解析[J]. 中国环境科学, 2020, 40(8):3605-3615.

    YAN H Q, ZHU W H, MAO D H, et al. Landsat-based observation of human pressure to wetlands in Ramsar sites over the Yangtze River Delta[J]. China Environmental Science, 2020, 40(8):3605-3615.
    [33] 孙中宇, 荆文龙, 乔曦, 等. 基于无人机遥感的盛花期薇甘菊爆发点识别与监测[J]. 热带地理, 2019, 39(4):482-491.

    SUN Z Y, JING W L, QIAO X, et al. Identification and monitoring of blooming Mikania micrantha outbreak points based on UAV remote sensing[J]. Tropical Geography, 2019, 39(4):482-491.
    [34] SANDINO J, GASTON K J, GONZALEZ F, et al. UAVs and machine learning revolutionising invasive grass and vegetation surveys in remote arid lands[J]. Sensors, 2018, 18(2):605.
    doi: 10.3390/s18020605
    [35] QIAN S, WANG L Y, GONG X F. Climate change and its effects on grassland productivity and carrying capacity of livestock in the main grasslands of China[J]. The Rangeland Journal, 2012, 34(4):341.
    doi: 10.1071/RJ11095
    [36] MÜNZENMAY M, TANIMOU M, KURRE H. Digital ecosystem nevonex for smart agriculture[J]. ATZheavy Duty Worldwide, 2020, 13(2):44-49.
    doi: 10.1007/s41321-020-0086-7
    [37] 钱拴, 延昊, 吴门新, 等. 植被综合生态质量时空变化动态监测评价模型[J]. 生态学报, 2020, 40(18):6573-6583.

    QIAN S, YAN H, WU M X, et al. Dynamic monitoring and evaluation model for spatio-temporal change of comprehensive ecological quality of vegetation[J]. Acta Ecologica Sinica, 2020, 40(18):6573-6583.
    [38] 徐腾腾, 于秀丽. 基于GIS的城市级环境应急管理系统设计[J]. 电脑与信息技术, 2019, 27(3):59-62.

    XU T T, YU X L. Design of urban environmental emergency management system based on GIS[J]. Computer and Information Technology, 2019, 27(3):59-62.
    [39] 葛智刚, 陈永静. 我国核数据发展现状与未来发展的思考[J]. 科学通报, 2015, 60(32):3087-3098.

    GE Z G, CHEN Y J. Status and prospects of nuclear data development in China[J]. Chinese Science Bulletin, 2015, 60(32):3087-3098.
    [40] VIGNE J, MANRIQUE A, MOUET A, et al. Nuclear cardiology in the COVID-19 pandemic era[J]. Archives of Cardiovascular Diseases, 2020, 113(6/7):374-377.
    doi: 10.1016/j.acvd.2020.05.003
    [41] BURGER J, GOCHFELD M, CLARKE J, et al. An ecological multidisciplinary approach to protecting society,human health,and the environment at nuclear facilities[J]. Remediation Journal, 2013, 23(3):123-148.
    [42] 李雪琴, 曹吉生, 张伟军. 浅谈辐射安全与防护管理工作[J]. 中国辐射卫生, 2011, 20(3):279-280.
    [43] 刘占阳, 胡澄, 孙雪峰, 等. 一种基于滨海核电站海上γ辐射剂量率的智能化自动监测系统研究与设计[J]. 应用海洋学学报, 2020, 39(2):273-278.

    LIU Z Y, HU C, SUN X F, et al. Development of an intelligent automatic monitoring system for marine radiation dose rate measurement for coastal nuclear power plant[J]. Journal of Applied Oceanography, 2020, 39(2):273-278.
    [44] 唐倩, 王金满, 荆肇睿. 煤炭资源型城市生态脆弱性研究进展[J]. 生态与农村环境学报, 2020, 36(7):825-832.

    TANG Q, WANG J M, JING Z R. Ecological vulnerability of mining resource-based cities:a review[J]. Journal of Ecology and Rural Environment, 2020, 36(7):825-832.
    [45] 陈海波, 冶林茂, 李树岩, 等. FDR土壤水分自动监测仪的标定与检验[J]. 微计算机信息, 2009, 25(31):104-106.

    CHEN H B, YE L M, LI S Y, et al. The calibration and verification for auto soil moisture monitor FDR[J]. Microcomputer Information, 2009, 25(31):104-106.
    [46] 郭站君. 环境保护行业信息化过程中的信息安全分级保护研究[J]. 中国信息化, 2019(4):72-73.
    [47] 李春艳. 浅析环境信息网络安全管理[J]. 中国战略新兴产业, 2017(24):99.
    [48] 秦宇, 孙宇, 邢可佳, 等. 基于生态环境大数据建设的环境信息安全监管体系研究[J]. 环境保护, 2018, 46(21):56-60.

    QIN Y, SUN Y, XING K J, et al. Investigation on the supervision system of environmental information security in the construction of ecological environment big data[J]. Environmental Protection, 2018, 46(21):56-60.
    [49] 胥彦玲, 李纯, 闫润生. 中国智慧环保产业发展趋势及建议[J]. 技术经济与管理研究, 2018(7):119-123.

    XU Y L, LI C, YAN R S. Trends and suggestions for the development of smart environmental protection industry in China[J]. Journal of Technical Economics & Management, 2018(7):119-123.
    [50] 王苏苏. 政府环境治理的困境与对策研究 :以衢州市政府“智慧环保”项目为例[D]. 苏州: 苏州大学, 2016.
    [51] 刘柏音, 刘孝富, 王维. 长江生态环境保护修复智慧决策平台构建与初步设计[J]. 环境科学研究, 2020, 33(5):1276-1283.

    LIU B Y, LIU X F, WANG W. Construction and design of intelligent decision-making platform for environmental protection of the Yangtze River[J]. Research of Environmental Sciences, 2020, 33(5):1276-1283.
    [52] 赵小强, 权恒, 晏珠峰, 等. 面向智慧农业的分层土壤墒情监测仪的设计及应用[J]. 物联网学报, 2020, 4(4):43-50.

    ZHAO X Q, QUAN H, YAN Z F, et al. Design and application of the layered soil moisture monitor for the smart agriculture[J]. Chinese Journal on Internet of Things, 2020, 4(4):43-50.
    [53] 崔伟,. 智慧治理:大数据时代京津冀大气污染治理之创新[J]. 知与行, 2016(7):85-88.

    CUI W. Wise controlling:innovative air pollution control in Beijing,Tianjin and Hebei Province in big data era[J]. Cognition and Practice, 2016(7):85-88.
    [54] 刘野, 舒磊, 霍志强, 等. 基于无线传感器网络的环境噪声感知研究进展[J]. 南京农业大学学报, 2020, 43(5):808-819.

    LIU Y, SHU L, HUO Z Q, et al. Research progress of wireless sensor networks for noise monitoring[J]. Journal of Nanjing Agricultural University, 2020, 43(5):808-819.
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  • 收稿日期:  2020-11-30
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