中国科学引文数据库(CSCD)来源期刊
中国科技核心期刊
环境科学领域高质量科技期刊分级目录T2级期刊
RCCSE中国核心学术期刊
美国化学文摘社(CAS)数据库 收录期刊
日本JST China 收录期刊
世界期刊影响力指数(WJCI)报告 收录期刊

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

基于文献计量的民航尾气排放清单法研究趋势及热点演进分析

陈达 吴梦萦 刘春婷 李田 裴琳琳 郭祥

陈达,吴梦萦,刘春婷,等.基于文献计量的民航尾气排放清单法研究趋势及热点演进分析[J].环境工程,2025,43(4):222-231. doi: 10.13205/j.hjgc.202504022
引用本文: 陈达,吴梦萦,刘春婷,等.基于文献计量的民航尾气排放清单法研究趋势及热点演进分析[J].环境工程,2025,43(4):222-231. doi: 10.13205/j.hjgc.202504022
CHEN D,WU M Y,LIU C T,et al.Research advances and hotspot evolution in civil aviation exhaust emission measurement using emission inventories based on bibliometric analysis[J].Environmental Engineering,2025,43(4):222-231. doi: 10.13205/j.hjgc.202504022
Citation: CHEN D,WU M Y,LIU C T,et al.Research advances and hotspot evolution in civil aviation exhaust emission measurement using emission inventories based on bibliometric analysis[J].Environmental Engineering,2025,43(4):222-231. doi: 10.13205/j.hjgc.202504022

基于文献计量的民航尾气排放清单法研究趋势及热点演进分析

doi: 10.13205/j.hjgc.202504022
基金项目: 

中央高校基本科研业务费项目“臭氧耦合催化低温降解飞机客舱厕所恶臭关键技术及机理研究”(3122023QD13)

详细信息
    作者简介:

    陈达(1979-),男,教授,主要研究方向为民航能源环境与绿色发展。chenda@cauc.edu.cn

    通讯作者:

    郭祥(1989-),女,助理教授,主要研究方向为民航环境治理与绿色发展。x_guo@cauc.edu.cn

Research advances and hotspot evolution in civil aviation exhaust emission measurement using emission inventories based on bibliometric analysis

  • 摘要: 在经济发展与环境保护的双重要求下,有关民航排放的研究也被日益关注。在民航尾气排放测量方法中,排放清单法无疑是最有代表性的一环。采用文献计量学方法及可视化分析,对2003—2022年Web of Science核心合集数据库中与民航排放清单相关的1704篇研究文献进行了定量分析,结果表明: 1)近20年来,此领域文献的年发文量稳步增长,意味着该领域有关民航尾气排放清单的关注度越来越高; 2)从发文量及影响力的角度来看,美国的相关研究遥遥领先; 3)从发文机构分布及发文期刊分布进行分析,发现美国和英国的相关研究具有更高的权威性; 4)从高被引文献及高频关键词分析,发现该领域的主流研究方向是空气质量模型、民航废气中的不同气态污染物及对环境和气候的影响; 5)推测未来民航排放清单的研究热点将集中在碳减排、可持续航空燃料等绿色可持续方向。
  • 1  2003—2022年出版物类型统计

    1.  Publication types statistics from 2003 to 2022

    2  2003—2022年的年发文量和累计百分比

    2.  Annual articles and their cumulative percentage from 2003 to 2022

    3  2003—2022年总发文量前3的国家年发文量变化趋势

    3.  Annual articles of top 3 countries by total number of publications from 2003 to 2022

    4  2003—2022年核心发文机构合作网络可视化分析

    4.  VOSviewer visualization analysis of the cooperation network among core institutions from 2003 to 2022

    5  2003—2022年关键词共现图谱

    5.  Co-occurrence mapping of keywords from 2003 to 2022

    6  2003—2022年关键词共现热点演进

    6.  Evolution of co-occurrence hotspots of keywords from 2003 to 2022

    7  2003—2022年关键词共现时区图

    7.  Co-occurrence time zone visualization of keywords from 2003 to 2022

    1  WOS核心合集中2003-2022年民航排放清单领域发文量前10的期刊

    1.   Top 10 journals by publication volume in the field of aviation emission inventories (2003 to 2022) from WOS core collection database

    排名期刊名称频数被引频次篇均被引影响因子(近5年)所属国家
    1Atmospheric Chemistry and Physics3041377245.37.32德国
    2Journal of Geophysical Research Atmospheres1811041357.535.302美国
    3Atmospheric Environment112547048.846.027英国
    4Environmental Science Technology76300639.5512.154美国
    5Transportation Research Part D Transport and Environment42108325.797.642英国
    6Atmospheric Measurement Techniques38127333.54.473德国
    7Geophysical Research Letters27131348.635.785美国
    8Sustainability252058.24.089瑞士
    9Journal of Cleaner Production2455323.0411.016英国
    10Energy2054527.258.234英国
    下载: 导出CSV

    2  发文量排名前10位的国家

    2.   Top 10 countries by publication volume

    排名国家频数发文占比被引频次篇均被引h指数
    1美国81848.00%3749245.8398
    2中国27215.96%652623.9940
    3英国24914.61%1057842.4857
    4德国24714.50%1034241.8754
    5法国1468.57%519835.638
    6加拿大1357.92%582443.1444
    7荷兰1116.51%629956.7540
    8意大利784.58%379548.6527
    9挪威784.58%327942.0432
    10日本744.34%365149.3433
    下载: 导出CSV

    3  2003年至2022年总发文量前10的机构

    3.   Top 10 institutions by total publication volume from 2003 to 2022

    排名发文机构频数被引频次篇均被引h指数
    1National Aeronautics Space Administration(NASA)2341183450.5760
    2National Oceanic Atmospheric Admin (NOAA)2171237657.0361
    3University of Colorado System2041134755.6260
    4University of Colorado Boulder2031133455.8360
    5University of California System1991105755.5660
    6Helmholtz Association153560336.6238
    7National Center Atmospheric Research(NCAR)150868857.9253
    8Harvard University125952176.1754
    9NASA Langley Research Center123623850.7245
    10Center National DE LA Recherche Scientifique(CNRS)110444040.3634
    下载: 导出CSV

    4  2003—2022年突现强度最高的10个关键词

    4.   Top 10 keywords with the strongest citation bursts from 2003 to 2022

    排名关键词突现强度起始年份结束年份持续时间/年
    1Carbon monoxide9.92200320118
    2Hydrocarbon emission7.532003201512
    3Ozone6.89200320118
    4Aviation6.41201920223
    5Interannual variability6.32200720125
    6Art6.31200620082
    7Civil aviation6.26202020222
    8Methane emission6.05201720203
    9Chemistry5.95200420106
    10Reduction5.93201920223
    下载: 导出CSV
  • [1] WU G H,MA J H,LIU Q,et al. Research on low-carbon development strategy of civil air transport industry[J]. China Engineering Science,2023,25(5):165-173. 吴光辉,马静华,刘倩,等. 民用航空运输业低碳化发展战略研究[J]. 中国工程科学,2023,25(5):165-173.
    [2] AGENCY U S E P. Control of air pollution from aircraft and aircraft engines[J]. Fed Reg,1973,38.
    [3] CUI Q,LI X Y,LI Y. Accounting for the carbon emissions from domestic air routes in China[J]. Heliyon,2022,8(1):e08716.
    [4] BARRETT S R H,BRITTER R E,WAITZ I A. Global mortality attributable to aircraft cruise emissions[J]. Environmental Science& Technology,2010,44(19):7736-7742.
    [5] LEE D S,FAHEY D W,FORSTER P M,et al. Aviation and global climate change in the 21st century[J]. Atmospheric Environment,2009,43(22):3520-3537.
    [6] RODRIGO GONZÁLEZ E B H. Environmental impact of aircraft emissions and aviation fuel tax in Japan[J]. Journal of Air Transport Management,2016,57:234-240.
    [7] CHIARAMONTI D,TALLURI G,VOURLIOTAKIS G,et al. Can lower carbon aviation fuels(LCAF)really complement sustainable aviation fuel(SAF)towards EU aviation decarbonization?[J]. Energies,2021,14(19):6430.
    [8] ICAO. Airport air quality manual[G]. 2011.
    [9] TURGUT E T,CAVCAR M,USANMAZ O,et al. Investigating actual landing and takeoff operations for time-in-mode,fuel and emissions parameters on domestic routes in Turkey[J]. Transportation Research Part D-Transport and Environment,2017,53:14.
    [10] FAN W,SUN Y,ZHU T,et al. Emissions of HC,CO,NOx,CO2,and SO2 from civil aviation in China in 2010[J]. Atmospheric Environment,2012,56:6.
    [11] KURNIAWAN J S,KHARDI S. Comparison of methodologies estimating emissions of aircraft pollutants,environmental impact assessment around airports[J]. Environmental Impact Assessment Review,2010,31(3):240-252.
    [12] DOBIE N. Procedures for emission inventory preparation[M]. Washington:United States Environmental Protection Agency,1992.
    [13] YONGHA P,MORTON E O K. Fuel burn rates of commercial passenger aircraft:variations by seat configuration and stage distance[J]. Journal of Transport Geography,2014,41:137-147.
    [14] OWEN B,ANET J G,BERTIER N,et al. Review:particulate matter emissions from aircraft[J]. Atmosphere,2022,13(8):1230-1230..
    [15] DPELHEUER A,LECHT M. Influence of engine performance on emission characteristics[J]. DLR,1999.
    [16] NORMAN P D,LISTER D H,LECHT M,et al. Development of the technical basis for a new emissions parameter covering the whole aircraft operation:NEPAIR. European Commission,Luxembourg City,Luxembourg[R]. Final Technical Report No. NEPAIR/WP4/WPR/01.
    [17] DUBOIS D,PAYNTER G C."Fuel Flow Method2" for estimating aircraft emissions[J]. Sae Transactions,2006:1-14.
    [18] ALLAIRE D L. A physics-based emissions model for aircraft gas turbine combustors[D]. Massachusetts Institute of Technology,2006.
    [19] XIA Q. Study on Impact assessment of aircraft engine emissions on airport atmospheric environment[D]. Nanjing:Nanjing University of Aeronautics and Astronautics,2009. 夏卿. 飞机发动机排放对机场大气环境影响评估研究[D]. 南京:南京航空航天大学,2009.
    [20] XU R,LANG J L,YANG X W,et al. Establishment of aircraft emission inventory for Capital International Airport[J]. China Environmental Science,2016,36(8):2554-2560. 徐冉,郎建垒,杨孝文,等. 首都国际机场飞机排放清单的建立[J]. 中国环境科学,2016,36(8):2554-2560.
    [21] ZAPOROZHETS O,SYNYLO K. Improvements on aircraft engine emission and emission inventory asesessment inside the airport area[J]. Energy,2017,140(2):1350-1357.
    [22] ZHOU Z H,LU C W,TAN Q W,et al. Air pollutant emission inventory and spatial and temporal distribution characteristics of Chengdu Shuangliu International Airport[J]. China Environmental Monitoring,2018,34(3):75-83. 周子航,陆成伟,谭钦文,等. 成都双流国际机场大气污染物排放清单与时空分布特征[J]. 中国环境监测,2018,34(3):75-83.
    [23] WANG R N,HUANG C,REN H J,et al. Air pollutant emission inventory of civil aircraft during take-off and Landing(LTO)cycle in Yangtze River Delta[J]. Journal of Environmental Sciences,2018,38(11):4472-4479. 王瑞宁,黄成,任洪娟,等. 长三角地区民航飞机起飞着陆(LTO)循环大气污染物排放清单[J]. 环境科学学报,2018,38(11):4472-4479.
    [24] CHEN C. Science Mapping:A systematic review of the literature[J]. Journal of Data and Information Science,2017,2(2):1-40.
    [25] ZHANG M Y,WANG C C,ZONG D P,et al. Research hotspots and trends on the effects of organic matter on the bioavailability of heavy metals in soil based on bibliometric analysis[J]. Chinese Journal of Soil Science,2022,53(5):1248-1260. 张梦妍,王成尘,宗大鹏,等. 基于文献计量分析有机质影响土壤重金属生物有效性的研究热点和趋势[J]. 土壤通报,2022,53(5):1248-1260.
    [26] LI J,ZOU X S,WANG B,et al. Research hotspot and development trend of high salt wastewater:based on cite space visual analysis[J]. Environmental Engineering,1-13[ 2025-04-24]. http://kns.cnki.net/kcms/detail/11.2097.X.20231208.1615.007.html. 李江,邹晓爽,王斌,等. 高盐废水的研究热点及发展趋势:基于Cite Space可视化分析[J/OL]. 环境工程,1-13[ 2025-04-24]. http://kns.cnki.net/kcms/detail/11.2097.X.20231208.1615.007.html.
    [27] ABDELWAHAB S I,TAHA M M E,MONI S S,et al. Bibliometric mapping of solid lipid nanoparticles research(2012—2022)using VOSviewer[J]. Medicine in Novel Technology and Devices,2023,17.
    [28] HIRSCH J E. An index to quantify an individual's scientific research output[J]. Proc Natl Acad Sci U S A.,2005,102(46):16569-16572.
    [29] EGGHE L,ROUSSEAU R. An informetric model for the Hirsch-index[J]. Scientometrics,2006,69(1)::121-129..
    [30] BIRKS Y,FAIRHURST C,BLOOR K,et al. Use of the h-index to measure the quality of the output of health services researchers[J]. J Health Serv Res Policy,2014,19(2):102-109.
    [31] MCCARTY C,JAWITZ J W,HOPKINS A,et al. Predicting author h-index using characteristics of the co-author network[J]. Scientometrics,2013,96(2):467-483.
    [32] ADRIAN M. Axiomatizing the Hirsch index:Quantity and quality disjoined[J]. Journal of Informetrics,2013,7(1):10-15.
    [33] BEL G,JOSEPH S. Policy stringency under the European Union Emission trading system and its impact on technological change in the energy sector[J]. Energy Policy,2018,117:434-444.
    [34] WARTMANN S,GROENENBERG H,BROCKETT S. Monitoring and reporting of GHG emissions from CCS operations under the EU ETS[J]. Greenhouse Gas Control Technologies,2009,1(1):4459-4466.
    [35] TEIXIDO J,VERDE S F,NICOLLI F. The impact of the EU Emissions Trading System on low-carbon technological change:The empirical evidence[J]. Ecological Economics,2019,164:106347.
    [36] CHEN M H. Overview of climate change issues at the 41st ICAO Conference[J]. China Annual Journal of International Law,2022(1):491. 陈慕涵. 第四十一届国际民航组织大会气候变化议题综述[J]. 中国国际法年刊,2022(1):491.
    [37] PARK R J,JACOB D J,FIELD B D,et al. Natural and transboundary pollution influences on sulfate-nitrate-ammonium aerosols in the United States:implications for policy[J]. Journal of Geophysical Research-Atmospheres,2004,109(D15):20.
    [38] BOERSMA K F,ESKES H J,DIRKSEN R J,et al. An improved tropospheric NO2 column retrieval algorithm for the ozone monitoring instrument[J]. Atmospheric Measurement Techniques,2011,4(9):1905-1928.
    [39] ICAO. ICAO international standards and recommended practices,annex 16 to the convention on international civil aviation[M]// Environmental Protection:Volume II—Aircraft Engine Emissions,4th Ed,ICAO:Montreal,QC,Canada,2017.
    [40] DEBBAGE K G,DEBBAGE N. Aviation carbon emissions,route choice and tourist destinations:are non-stop routes a remedy?[J]. Annals of Tourism Research,2019,79(11):102761-102765.
    [41] WANG Z,XU X,ZHU Y,et al. Evaluation of carbon emission efficiency in China's airlines[J]. Journal of Cleaner Production,2020,243(10):118500-118501.
    [42] LI M Y,DUAN M A. Exploring linkage opportunities for China's emissions trading system under the Paris targets:EU-China and Japan-Korea-China cases[J]. Energy Economics,2021,102.
    [43] JANSSENS-MAENHOUT G,CRIPPA M,GUIZZARDI D,et al. HTAP_v2.2:a mosaic of regional and global emission grid maps for 2008 and 2010 to study hemispheric transport of air pollution[J]. Atmospheric Chemistry and Physics,2015,15(19):11411-11432.
    [44] BERGERO C,GOSNELL G,GIELEN D,et al. Pathways to net-zero emissions from aviation[J]. Nature Sustainability,2023,6(4):404-414.
  • 加载中
图(7) / 表(4)
计量
  • 文章访问数:  124
  • HTML全文浏览量:  58
  • PDF下载量:  1
  • 被引次数: 0
出版历程
  • 收稿日期:  2024-01-24
  • 录用日期:  2024-07-26
  • 修回日期:  2024-04-19
  • 刊出日期:  2025-04-01

目录

    /

    返回文章
    返回