[1] |
O’BRIEN P J, SIRAKI A G, SHANGARI N. Aldehyde sources, metabolism, molecular toxicity mechanisms, and possible effects on human health [J]. Crit Rev Toxicol, 2005, 35: 609-662. doi: 10.1080/10408440591002183
|
[2] |
SKYBOVA M, LENICEK J, RYCHTECKA A N, et al. Determination of volatile organic compounds in the atmosphere and their influence on ozone formation [J]. Fresenius Environmental Bulletin, 2006, 15(12): 1616-1623.
|
[3] |
ATKINSON R. Gas-phase tropospheric chemistry of organic compounds: A review [J]. Atmos Environ, 1990, 24A: 1-41.
|
[4] |
GARAYCOECHEA J I, CROSSAN G P, LANGEVIN F, et al. Alcohol and endogenous aldehydes damage chromosomes and mutate stem cells [J]. Nature, 2018, 553: 171-177. doi: 10.1038/nature25154
|
[5] |
PANG X, LEE X. Temporal variations of atmospheric carbonyls in urban ambient air and street canyons of a Mountainous city in Southwest China [J]. Atmospheric Environment, 2010, 44: 2098-2106. doi: 10.1016/j.atmosenv.2010.03.006
|
[6] |
HUANG J A, FENG Y L, FU J M, et al. A method of detecting carbonyl compounds in tree leaves in China [J]. Environmental Science and Pollution Research, 2010, 17: 1129-1136. doi: 10.1007/s11356-009-0277-3
|
[7] |
崔婷惠, 李恒, 唐石云, 等. 超临界流体色谱与气相色谱-质谱联用测定卷烟主流烟气中醛酮类化合物的研究 [J]. 分析测试学报, 2018, 39(7): 766-771. doi: 10.3969/j.issn.1004-4957.2018.07.002
CUI T H, LI H, TANG S Y, et al. Determination of aldehydes and ketones compounds in mainstream cigarette smoke by supercritical fluid chromatography and gas chromatography-mass spectrometry [J]. Journal of Instrumental Analysis, 2018, 39(7): 766-771(in Chinese). doi: 10.3969/j.issn.1004-4957.2018.07.002
|
[8] |
史纯珍, 姜锡, 姚志良, 等. 烹饪油烟羰基化合物排放特征 [J]. 环境工程学报, 2015, 9(3): 1376-1380. doi: 10.12030/j.cjee.20150364
SHI C Z, JIANG X, YAO Z L, et al. Carbonyl compounds emission characteristics in cooking fumes [J]. Chinese Journal of Environmental Engineering, 2015, 9(3): 1376-1380(in Chinese). doi: 10.12030/j.cjee.20150364
|
[9] |
KIM K H, CHOI B, PARK S, et al. Emission characteristics of compression ignition (CI) engine using diesel blended with hydrated butanol [J]. Fuel, 2019, 257(1): 1-9.
|
[10] |
LI J, CHEN J Y, JI Y M, et al. Solar light induced transformation mechanism of allyl alcohol to monocarbonyl and dicarbonyl compounds on different TiO2: A combined experimental and theoretical investigation [J]. Chemosphere, 2019, 232(9): 287-295.
|
[11] |
SUKHAREV S, MARIYCHUK R, ONYSKO M, et al. Fast determination of total aldehydes in rainwaters in the presence of interfering compounds [J]. Environmental Chemistry Letters, 2019, 17(3): 1405-1411. doi: 10.1007/s10311-019-00875-z
|
[12] |
ZWIENER C, FRIMMEL F H. LC-MS analysis in the aquatic environment and in water treatment technology–a critical review [J]. Analytical and Bioanalytical Chemistry, 2004, 378: 862-874. doi: 10.1007/s00216-003-2412-1
|
[13] |
崔连喜, 李利荣, 吴宇峰, 等. 液相色谱法测定土壤和沉积物中15种醛酮类化合物 [J]. 理化检验:化学分册, 2018, 54(4): 484-487.
CUI L X, LI L R, WU Y F, et al. LC determination of 15 carbonyl compounds in soil and sediment [J]. Physical Testing and Chemical Analysis part B:Chemical Analysis, 2018, 54(4): 484-487(in Chinese).
|
[14] |
李利荣, 关玉春, 吴宇峰, 等. 2, 4-二硝基苯肼衍生-固相萃取-液相色谱法测定环境固体基质中15种醛酮类羰基化合物的含量 [J]. 理化检验:化学分册, 2018, 54(7): 841-846.
LI L R, GUAN Y C, WU Y F, et al. Determination of 15 aldehyde and ketone carbonyl compounds in environmental solid matrix by liquid chromatography with 2, 4-dinitrophenylhydrazine derivatization and solid phase extraction [J]. Physical Testing and Chemical Analysis part B:Chemical Analysis, 2018, 54(7): 841-846(in Chinese).
|
[15] |
QIAN X, SHEN H Q, CHEN Z M. Characterizing summer and winter carbonyl compounds in Beijing atmosphere [J]. Atmospheric Environment, 2019, 214: 116845. doi: 10.1016/j.atmosenv.2019.116845
|
[16] |
景盛翱. 上海市典型区域大气羰基化合物水平研究 [J]. 环境污染与防治, 2017, 39(7): 713-716.
SHENG J A. Study on the level of ambient carbonyl compounds in typical regions of Shanghai [J]. Environmental Pollution & Control, 2017, 39(7): 713-716(in Chinese).
|
[17] |
MANDIC A I, SEDEJ I J, SAKAC M B, et al. Static headspace gas chromatographic method for aldehyde determination in crackers [J]. Food Analytical Methods, 2013, 6(1): 61-68. doi: 10.1007/s12161-012-9415-5
|
[18] |
CALEJO I, MOREIRA N, ARAUJO A M, et al. Optimization and validation of a HS-SPME-GC-IT/MS method for analysis of carbonyl volatile compounds as biomarkers in human urine: Application in a pilot study to discriminate individuals with smoking habits [J]. Talanta, 2016, 148: 486-493. doi: 10.1016/j.talanta.2015.09.070
|
[19] |
PEREIRA E A, REZENDE M O O, TAVARES M F M. Analysis of low molecular weight aldehydes in air samples by capillary electrophoresis after derivatization with 4-hydrazinobenzoic acid [J]. J Sep Sci, 2004, 27(1-2): 28-32. doi: 10.1002/jssc.200301665
|
[20] |
GUO S J, CHEN M, TAN J H. Seasonal and diurnal characteristics of atmospheric carbonyls in Nanning, China [J]. Atmospheric Research, 2016, 169: 46-53. doi: 10.1016/j.atmosres.2015.09.028
|
[21] |
TIE C, HU T, JIA Z X, Zhang J L. Derivatization strategy for the comprehensive characterization of endogenous fatty aldehydes using HPLC-multiple reaction monitoring [J]. Anal Chem, 2016, 88: 7762-7768. doi: 10.1021/acs.analchem.6b01756
|
[22] |
OCHS S M, FASCIOTTI M, BARRETO R P, et al. Optimization and comparison of HPLC and RRLC conditions for the analysis of carbonyl-DNPH derivatives [J]. Talanta, 2010, 81(1-2): 521-529. doi: 10.1016/j.talanta.2009.12.036
|
[23] |
OCHS S M, FASCIOTTI M, NETTO A D P. Analysis of 31hydrazones of carbonyl compounds by RRLC-UV and TTLC-MS(/MS): A comparison of methods [J]. Journal of Spectroscopy, 2015(6b): 1-11.
|
[24] |
ZUREK G, KARST U. Liquid chromatography-mass spectrometry method for the determination of aldehydes derivatized by the hantzsch reaction [J]. J Chromatogr A, 1999, 864: 191-197. doi: 10.1016/S0021-9673(99)01041-9
|
[25] |
孟志娟, 孙文毅, 赵丽敏, 等. 气相色谱-静电场轨道阱高分辨质谱快速筛查农产品中 70 种农药残留 [J]. 分析化学, 2019, 47(8): 1227-1234.
MENG Z J, SUN W Y, ZHAO L M, et al. Rapid screening of 70 kinds of pesticide residues in agricultural products by gas chromatography-electrostatic field orbit trap high resolution mass spectrometry [J]. Chinese Journal of Analytical Chemistry, 2019, 47(8): 1227-1234(in Chinese).
|
[26] |
陈溪, 吴慈, 王龙祥, 等. 基于超高效液相色谱-高分辨质谱技术的水中 112 种药品和个人护理用品的高通量筛查和定量方法 [J]. 色谱, 2019, 36(11): 1147-1157.
CHEN X, WU C, WANG L X, et al. High-throughput screening and quantitative analysis method of 112 pharmaceutical and personal care products in water based on ultra-high performance liquid chromatography with high-resolution mass spectrometry [J]. Chinese Journal of Chromatography, 2019, 36(11): 1147-1157(in Chinese).
|