[1] |
章思规.实用精细化学品手册:有机卷(下)[M],北京:化学工业出版社,1996: 1894-1896
|
[2] |
洪仲苓.化工有机原料深加工[M].北京:化学工业出版社.1997: 421-438
|
[3] |
Talbot R W, Beecher K M, Harriss R C, et al. Atmospheric geochemistry of formic and acetic acids at a mid-latitude temperature site [J]. Journal of Geophysical Research, 1988, 93:1638-1652
|
[4] |
Lefer B L, Talbot R W, Harriss R C, et al. Enhancement of acidic gases in biomass-burning impacted air masses over Canada [J]. Journal of Geophysical Research, 1994, 99: 1721-1737
|
[5] |
Kawamura K,Ikushima K. Seasonal changes in the distribution of dicarboxylic acids in the urban atmosphere [J]. Environment Science Technology, 1993, 27:2227-2235
|
[6] |
Kavouras I G, Mihalopoulos N, Stephanou E G. Secondary organic aerosol formation vs primary organic aerosol emission: Insitu-evidence for the chemical coupling between monoterpene-acidic photo-oxidation products and new particle formation over forests [J]. Environmental Science & Technology, 1999. 33: 1028-1037
|
[7] |
Matsumoto K, Nagao I, Tanaka H, et al. Seasonal characteristics of organic and inorganic species and their size distributions in atmospheric aerosols over the northwest Pacific Ocean [J]. Atmospheric Environment, 1998.32(11):1931-1946
|
[8] |
Jacob D J. Chemistry of OH in remote clouds and its role in the production of formic and peroxymonosulfate[J]. Journal of Geophysical Research, 1986, 91(D9): 9807-9826
|
[9] |
Norton R B, RobertS J M, Huebert B J. Tropospheric oxalate[J]. Geophysical Research Letters,1983,10 (7):517-520
|
[10] |
Sempere R, Kawamura K. Comparative distributions of dicarboxylic acids and related polar compounds in snow, rain and aerosols from urban atmosphere [J]. Atmospheric Environment,1994, 28 (3):449-459
|
[11] |
Legrand M, De Angelis M. Origins and variations of light carboxylic acids in polar precipitation [J]. Journal of Geophysical Research,1995,100 (D 1):1445-1462.
|
[12] |
王根绪,程国栋.西北干旱区水中氟的分布规律及环境特征[J].地理科学,2000,20:153-158
|
[13] |
|
[14] |
施雅风.中国冰川与环境[M]. 北京:科学出版社,2000:9-30
|
[15] |
刘肖. 使用淋洗液自动发生装置对硼酸化的水中痕量阴离子的分析[J].环境化学,2005,24(5):628-630
|
[16] |
Legrand M, De Angelis M. Light carboxylic acids in Greenland ice: A record of past forest fires and vegetation emissions from the boreal zone [J]. Journal of Geophysical Research, 1996, 101(D2):4129-4145
|
[17] |
李心清,秦大河,蒋倩等. 中国天山过去43 年大气环境变化:来自冰芯草酸根记录的证据[J].地球与环境,2005,33(1):1-5
|
[18] |
康世昌,秦大河,Mayewski P等.珠穆朗玛峰地区近200年冰芯草酸根记录及其环境意义[J].中国环境科学, 2000,20(3) :203-206
|
[19] |
甘肃省地方史志编纂委员会编. 甘肃省志·林业志[M],兰州:甘肃人民出版社,1999,4:23081
|
[20] |
杨丽华,李明灿,周雅璇.草酸生产的实验方法研究[J]. 河北农业大学学报,2002,25(1):83-85
|
[21] |
李心清,秦大河,周会.天山乌鲁木齐河源一号冰川冰芯中生物有机酸记录及其与南北极地区的差异[J].科学通报,2000,45 (13) :1419-1423
|
[22] |
李心清,秦大河,周会.天山与珠峰冰芯草酸根的一致性及其环境意义[J].中国环境科学, 2003,23(1):1-6
|
[23] |
Draxler R R, Hess G D. An overview of HYSPLIT_4 modeling system for trajectories, dispersion and deposition[J]. Australian Meteorological Magazine,1998, 47:295-308
|
[24] |
耿志新,侯书贵,张东启, 等. 公元1844以来珠穆朗玛峰地区大气环境变化高分辨路冰芯记录[J].冰川冻土,2007,29(5):694-703
|
[25] |
董志文,李忠勤,张明军,等.哈密庙尔沟平顶冰川积雪中粉尘微粒沉积特征[J].环境化学,2010,29(3):352-357
|
[26] |
周天骥,刘志辉.塔里木河干流流域地下水氟的分布及形成高氟地下水的环境因素.新疆地理学会,塔里木河流域水资源、环境与管理文集,1997:154-158
|
[27] |
金琼,王元定.甘肃河西走廊地区水中氟的分布规律及环境特征[J]. 甘肃农业大学学报,2001(3):310-315
|
[28] |
巴建文,闫成云.河西走廊平原地区地下水中氟的富集规律及成因探讨[J].干旱区资源与环境,2010,24(3):93-97
|
[29] |
杨林峰,彭明霞,文琛,等.氟污染现状及其治理技术研究进展[J].江西科学,2010,28(5):641-645
|