[1] WMO. Greenhouse Gas Bulletin: The state of greenhouse gases in the atmosphere based on global observations through 2019[EB/OL]. [2021-5-13] 2020,http:// www.wmo.int/pages/prog/arep/gaw/ghg/ghgbull06en.html.
[2] 浦静姣, 徐宏辉, 顾骏强, 等. 长江三角洲背景地区CO2浓度变化特征研究 [J]. 中国环境科学, 2012, 32(6): 973-979. doi: 10.3969/j.issn.1000-6923.2012.06.003 PU J J, XU H H, GU J Q, et al. Study on the concentration variation of CO2 in the background area of Yangtze River Delta [J]. China Environmental Science, 2012, 32(6): 973-979(in Chinese). doi: 10.3969/j.issn.1000-6923.2012.06.003
[3] CROSSON E R. A cavity ring-down analyzer for measuring atmospheric levels of methane, carbon dioxide, and water vapor [J]. Applied Physics B, 2008, 92(3): 403-408. doi: 10.1007/s00340-008-3135-y
[4] LAW C S, BREVIERE E, LEEUWET G D, et al. Evolving research directions in surface ocean-lower atmosphere (SOLAS) science [J]. Environmental Chemistry, 2013, 10(1): 1-16. doi: 10.1071/EN12159
[5] MATSUEDA H, INOUE H Y, ISHII M, et al. Atmospheric methane over the north Pacific from 1987 to 1993 [J]. Geochemical Journal, 1992, 30(1): 1-15.
[6] BRANTLEY H L, THOMA E D, SQUIER W C, et al. Assessment of methane emissions from oil and gas production pads using mobile measurements [J]. Environmental Science & Technology, 2014, 48(24): 14508-14515.
[7] NARA H, TANIMOTO H, TOHJIMA Y, et al. Emissions of methane from offshore oil and gas platforms in Southeast Asia [J]. Scientific Reports, 2014, 4: 6503.
[8] LIU Y S, ZHOU L X, TANS P P, et al. Ratios of greenhouse gas emissions observed over the Yellow Sea and the East China Sea [J]. The Science of the Total Environment, 2018, 633: 1022-1031. doi: 10.1016/j.scitotenv.2018.03.250
[9] ZANG K P, ZHOU L X, WANG J Y, et al. Carbon dioxide and methane in the China sea shelf boundary layer observed by cavity ring-down spectroscopy [J]. Geophysical Research, 2017, 34(10): 2233-2244.
[10] ZANG K P, ZHANG G, WANG J Y. Methane emissions from oil and gas platforms in the Bohai Sea, China[J]. Environmental Pollution, 2020, 263(Pt B): 114486.
[11] 孔少飞, 陆炳, 韩斌, 等. 天津近海大气中CH4, N2O和CO2季节变化分析 [J]. 中国科学:地球科学, 2010, 40(5): 666-676. KONG S F, LU B, HAN B, et al. Seasonal variation analysis of atmospheric CH4, N2O and CO2 in Tianjin offshore area [J]. Science China Earth Science, 2010, 40(5): 666-676(in Chinese).
[12] 臧昆鹏, 方双喜, 周凌晞, 等. 水汽对光腔衰荡光谱系统(CRDS)法测定CH4的影响 [J]. 环境化学, 2012, 31(11): 1816-1820. ZANG K P, FANG S X, ZHOU L X, et al. The influence of water wapor on the measurement of CH4 by CRDS system [J]. Environmental Chemistry, 2012, 31(11): 1816-1820(in Chinese).
[13] 吕洪刚, 王海燕, 姜亦飞, 等. 西沙大气二氧化碳浓度变化特征研究 [J]. 海洋学报(中文版), 2015, 37(6): 21-30. LV H G, WANG H Y, JIANG Y F, et al. Study on the concentration variation of CO2 in the background area of Xisha [J]. Acta Oceanologica Sinica, 2015, 37(6): 21-30(in Chinese).
[14] 方双喜, 周凌晞, 臧昆鹏, 等. 光腔衰荡光谱(CRDS)法观测我国4个本底站大气CO2 [J]. 环境科学学报, 2011, 31(3): 624-629. FANG S X, ZHOU L X, ZANG K P, et al. Measurement of atmospheric CO2 mixing ratio by cavity ring-down spectroscopy (CRDS) at the 4 background stations in China [J]. Acta Scientiae Circumstantiae, 2011, 31(3): 624-629(in Chinese).
[15] 詹力扬, 陈立奇. 南大洋大气氧化亚氮分布特征 [J]. 极地研究, 2007, 19(1): 49-60. ZHAN L Y, CHEN L Q. Distributions of nitrous oxide mixing ratios in the atmosphere over the southern ocean [J]. Chinese Journal of Polar Research, 2007, 19(1): 49-60(in Chinese).
[16] 刘云松, 周凌晞, 臧昆鹏, 等. 光腔衰荡光谱法走航连续观测海表大气中氧化亚氮 [J]. 环境科学学报, 2018, 38(9): 3482-3487. doi: 10.13671/j.hjkxxb.2018.0259 LIU Y S, ZHOU L X, ZANG K P, et al. Continuous measurement of atmospheric nitrous oxide by cavity ring-down spectroscopy technique over the China Seas [J]. Acta Scientiae Circumstantiae, 2018, 38(9): 3482-3487(in Chinese). doi: 10.13671/j.hjkxxb.2018.0259
[17] 臧昆鹏, 周凌晞, 刘云松, 等. 春季中国近海海表大气中六氟化硫的分布特征 [J]. 海洋环境科学, 2018, 37(3): 418-423. doi: 10.12111/j.cnki.mes20180316 ZANG K P, ZHOU L X, LIU Y S, et al. Distribution of sulfur hexafluoride in the China sea-shelf boundary layer in spring [J]. Marine Environmental Science, 2018, 37(3): 418-423(in Chinese). doi: 10.12111/j.cnki.mes20180316
[18] 张敏, 袁辉. 拉依达(PAUTA)准则与异常值剔除 [J]. 郑州工业大学学报, 1997(1): 87-91. ZHANG M, YUAN H. The pauta criterion and rejecting the abnormal value [J]. Journal of Zhengzhou University of Technology, 1997(1): 87-91(in Chinese).
[19] 夏玲君, 刘立新, 李柏贞, 等. 我国中部地区大气CO2柱浓度时空分布 [J]. 中国环境科学, 2018, 38(8): 2811-2819. doi: 10.3969/j.issn.1000-6923.2018.08.003 XIA L J, LIU L X, LI B Z, et al. Spatial and temporal distribution characteristics of atmospheric CO2 in central China [J]. China Environmental Science, 2018, 38(8): 2811-2819(in Chinese). doi: 10.3969/j.issn.1000-6923.2018.08.003
[20] 占明锦, 孙俊英, 张养梅, 等. 气团来源对瓦里关地区颗粒物数谱分布的影响 [J]. 冰川冻土, 2009, 31(4): 659-663. ZHAN M J, SUN J Y, ZHANG Y M, et al. The influence of air mass sources on the particle number concentration and the size distribution at Mt. Waliguan [J]. Journal of Glaciology and Geocryology, 2009, 31(4): 659-663(in Chinese).
[21] 张近扬, 宋韶华, 许睿, 等. 基于后向气团轨迹的区域大气污染颗粒物来源分析 [J]. 中国环境监测, 2017, 33(2): 42-46. doi: 10.19316/j.issn.1002-6002.2017.02.07 ZHANG J Y, SONG S H, XU R, et al. Source of airborne particulate matter in Guilin based on backward trajectory model [J]. Environmental Monitoring in China, 2017, 33(2): 42-46(in Chinese). doi: 10.19316/j.issn.1002-6002.2017.02.07
[22] 张芳. 大气CO2、CH4和CO浓度资料再分析及源汇研究[D]. 北京: 中国气象科学研究院, 2011. ZHANG F. Re-analysis and evaluation of atmospheric carbon dioxide(CO2), methane(CH4) and carbon monoxide(CO) at mount Waliguan, China[D]. Beijing: Chinese Academy of Meteorological Sciences, 2011 (in Chinese).
[23] 栾天, 周凌晞, 方双喜, 等. 龙凤山本底站大气 CO2数据筛分及浓度特征研究 [J]. 环境科学, 2014, 35(8): 2864-2870. LUAN T, ZHOU L X, FANG S X, et al. Atmospheric CO2 data filtering method and characteristics of the molar fractions at the Longfengshan WMO/GAW regional station in China [J]. Environmental Science, 2014, 35(8): 2864-2870(in Chinese).
[24] FANG S X, TANS P P, STEINBACHER M, et al. Comparison of the regional CO2 mole fraction filtering approaches at a WMO/GAW regional station in China [J]. Atmospheric Measurement Techniques, 2015, 8(12): 5301-5313. doi: 10.5194/amt-8-5301-2015
[25] 张芳, 周凌晞, 刘立新, 等. 瓦里关气相色谱法大气CO2和CH4在线观测数据处理分析 [J]. 环境科学, 2010, 31(10): 2267-2272. ZHANG F, ZHOU L X, LIU L X, et al. Data processing and QA/QC of atmosphere CO2 and CH4 concentrations by a method of GC-FID in situ measurement at waliguan station [J]. Chinese Journal of Environmental Science, 2010, 31(10): 2267-2272(in Chinese).
[26] 臧昆鹏, 周凌晞, 方双喜, 等. 新型CO2和CH4混合标气标校流程及方法 [J]. 环境化学, 2011, 30(2): 511-516. ZANG K P, ZHOU L X, FANG S X, et al. A new system for calibration and propagation of mixed CO2 and CH4 standards [J]. Environmental Chemistry, 2011, 30(2): 511-516(in Chinese).
[27] CHEN D S, WANG X T, NELSON P, et al. Ship emission inventory and its impact on the PM2.5 air pollution in Qingdao Port, North China [J]. Atmospheric Environment, 2017, 166: 351-361. doi: 10.1016/j.atmosenv.2017.07.021
[28] 方双喜, 周凌晞, 栾天, 等. 浙江临安大气本底站CO浓度及变化特征 [J]. 环境科学, 2014, 35(7): 2454-2459. doi: 10.13227/j.hjkx.2014.07.003 FANG S X, ZHOU L X, LUAN T, et al. Distribution of co at Lin'an station in Zhejiang Province [J]. Environmental Science, 2014, 35(7): 2454-2459(in Chinese). doi: 10.13227/j.hjkx.2014.07.003
[29] ZANG K P, ZHANG G, XU X M, et al. Impact of air-sea exchange on the spatial distribution of atmospheric methane in the Dalian Bay and adjacent coastal area, China [J]. Chemosphere, 2020, 251: 126412. doi: 10.1016/j.chemosphere.2020.126412
[30] 方双喜, 李邹, 周凌晞, 等. 云南香格里拉本底站大气CH4体积分数及变化特征 [J]. 环境科学学报, 2012, 32(10): 2568-2574. FANG S X, LI Z, ZHOU L X, et al. Variation of CH4 concentrations at Yunnan Xianggelila background station in China [J]. Acta Scientiae Circumstantiae, 2012, 32(10): 2568-2574(in Chinese).
[31] 赵恒, 王体健, 江飞, 等. 利用后向轨迹模式研究TRACE-P期间香港大气污染物的来源 [J]. 热带气象学报, 2009, 25(2): 181-186. doi: 10.3969/j.issn.1004-4965.2009.02.008 ZHAO H, WANG T J, JIANG F, et al. Investigation into the source of air pollutants to Hong Kong by using backward trajectory method during the TRACE-P campaign [J]. Journal of Tropical Meteorology, 2009, 25(2): 181-186(in Chinese). doi: 10.3969/j.issn.1004-4965.2009.02.008
[32] 徐晓斌, 刘希文, 林伟立. 输送对区域本底站痕量气体浓度的影响 [J]. 应用气象学报, 2009, 20(6): 656-664. doi: 10.3969/j.issn.1001-7313.2009.06.002 XU X B, LIU X W, LIN W L. Impacts of air parcel transport on the concentrations of trace gases at regional background stations [J]. Journal of Applied Meteorological Science, 2009, 20(6): 656-664(in Chinese). doi: 10.3969/j.issn.1001-7313.2009.06.002
[33] SABINE C L, FEELY R A, GRUBER N, et al. The oceanic sink for anthropogenic CO2 [J]. Science, 2004, 305(5682): 367-371. doi: 10.1126/science.1097403