Stern R M. Indicators of matrix dependent variation in effective dose for chromium and nickel aerosol exposures[J]. The Science of the Total Environment, 1988, 71: 301-307
[2]
Caglieiri A, Goldoni M, Acampa O, et al. The effect of inhaled chromium on different exhaled breath condensate biomarkers among chrome-plating workers[J]. Environmental Health Perspectives, 2006, 114(4): 542-546
[3]
《环境空气质量标准》GB 3095-2012[S]. 2012
[4]
Ashley K, Howe A M, Demange M, et al. Sampling and analysis considerations for the determination of hexavalent chromium in workplace air[J]. Journal of Environmental Monitoring, 2003, 5: 707-716
An J L, Wang Y S, Li X, et al. Measurement on the atmospheric SO2, NOx, CO and O3 concentrations in Beijing[J]. Ecology and Environment, 2007, 16(6): 1585-1589
Werner M L, Nico P S, Marcus M A, et al. Use of micro-XANES to speciate chromium in airborne fine particles in the Sacramento Valley[J]. Environmental Science & Technology, 2007, 41 (14): 4919-4924
[12]
Jacques B, Herman P. Environmental analytical and physical chemistry series. Vol. 1, Chapter 4 [M]. Boca Raton, Florida, USA: The Chemical Rubber Company Press, 1992: 145-186
[13]
Kimbrough D E, Cohen Y, Winer A M, et al. A critical assessment of chromium in the environment[J]. Critical Reviews in Environmental Science and Technology, 1999, 29: 1-46
[14]
Meng Q, Fan Z, Brian B, et al. Development and evaluation of a method for hexavalent chromium in ambient air using IC-ICP-MS[J]. Atmospheric Environment, 2011, 45:2021-2027
[15]
Goldoni M, Caglieiri A, Poli D, et al. Determination of hexavalent chromium in exhaled breath condensate and environmental air among chrome plating workers[J]. Analytica Chimica Acta, 2006, 562: 229-235
[16]
Boiano J M, Wallace M E, Sieber, W K, et al. Comparison of three sampling and analytical methods for the determination of airborne hexavalent chromium[J]. Journal of Environmental Monitoring, 2000, 2 (4): 329-333
[17]
Barnowski C, Jakubowski N, Stuewer D, et al. Speciation of chromium by direct coupling of ion exchange chromatography with inductively coupled plasma mass spectrometry[J]. Journal of Analytical Atomic Spectrometry, 1997, 12 (10): 1155-1161
[18]
Khakhathi L, Mandiwana, Nikolay P, et al. Electrothermal atomic absorption spectrometric determination of total and hexavalent chromium in atmospheric aerosols[J]. Journal of Hazardous Materials B, 2006, 136:379-382
[19]
Kristof T, Geert S, Nico B, et al. Determination of hexavalent chromium in ambient air: A story of method induced Cr(Ⅲ) oxidation[J]. Atmospheric Environment, 2011, 45: 5332-5341
Pettine M, Capri S. Digestion treatments and risks of Cr(Ⅲ)-Cr(Ⅵ) interconversions during Cr(Ⅵ) determination in soils and sediments e-A review[J].Analytica Chimica Acta, 2005, 540: 231-238
[23]
Constantini Samara. Chemical mass balance source apportionment of TSP in a lignite-burning area of Western Macedonia, Greece[J]. Atmospheric Environment, 2005, 39: 6430-6443
Yang Y, Wang Y, Huang W, et al. Size distributions and elemental compositions of particulate matter on clear, hazy and foggy days in Beijing, China[J]. Advances in Atmospheric Science, 2010, 27(3): 663-675
[26]
Draxler R R,Rolph G D. HYSPLIT (Hybrid Single-Particle Lagrangian Integrated Trajectory) Model access via NOAA ARL READY Website[EB/OL] .[2014-07-20] . NOAA Air Resources Laboratory, Silver Spring, MD. http://ready.arl.noaa.gov/HYSPLIT.php
[27]
Rolph GD. Real-time Environmental Applications and Display system (READY) Website[EB/OL] .[2014-07-20]. NOAA Air Resources Laboratory, Silver Spring, MD. http://ready.arl.noaa.gov