Environmental Engineering Reference
In-Depth Information
Jakober, C. and Phillips, T. Evaluation of ozone emissions from portable indoor air cleaners: Electrostatic
precipitators and ionizers; Staff Technical Report to the California ARB, www.arb.ca.gov/research/
indoor/esp_report.pdf (2008).
Jang, M., Kamens, R.M., Leach, K.B., and Strommen, M.R. A thermodynamic approach to group contribution
methods to model the partitioning of semi-volatile organic compounds on atmospheric particulate matter,
Environ. Sci. Technol ., 31 , 2805-2811 (1997).
Jenkins, R.A., Guerin, M.R., and Tompkins, B.A. The Chemistry of Environmental Tobacco Smoke: Composition
and Measurement , 2nd edn., Lewis, Boca Raton, FL, 467 p. (2000).
Jetter, J.J., Guo, Z.S., McBrian, J.A., and Flynn, M.R. Characterization of emissions from burning incense, Sci.
Total Environ ., 295 , 51-67 (2002).
Ji, X., Le Bihan, O., Ramalho, O., Mandin, C., D'Anna, B., Martinon, L., Nicolas, M., Bard, D., and Pairon,
J.C. Characterization of particles emitted by incense burning in an experimental house, Indoor Air , 20 ,
47-58 (2010).
Jimenez, J.R., Claiborn, C.S., Dhammapala, R.S., and Simpson, C.D. Methoxyphenols and levoglucosan ratios
in PM 2.5 from wheat and Kentucky bluegrass stubble burning in eastern Washington and northern Idaho,
Environ. Sci. Technol ., 41 , 7824-7829 (2007).
Johansson, J., Olander, L., and Johansson, R. Long-term test of the effect of room air cleaners on tobacco
smoke, Proceedings of the sixth International Conference on Indoor Air Quality and Climate , Vol. 6,
Helsinki, Finland, pp. 387-392 (1993).
Kamens, R.M., Jang, M., Chien, C.J., and Leach, K. Aerosol formation from the reaction of α-pinene and ozone
using a gas-phase kinetics and gas-particle partitioning theory, Environ. Sci. Technol ., 35 , 1394-1405 (1999).
Kamens, R., Lee, C.-T., Wiener, R., and Leith, D. A study to characterize indoor particles in three non-smoking
homes, Atmos. Environ ., 25A , 939-948 (1991).
Kavouras, I.G., Stratigakis, N., and Stephanou, E.G. Iso - and anteiso -alkanes: Speciic tracers of environmental
tobacco smoke in indoor and outdoor particle-size distributed urban aerosols, Environ. Sci. Technol ., 32 ,
1369-1377 (1998).
Kemmlein, S., Hahn, O., and Jann, O. Emissions of organophosphate and brominated lame retardants from
selected consumer products and building materials, Atmos. Environ ., 37 , 5485-5493 (2003).
Kerr, G. and Thi, L.C.N., Identiication of contaminants, exposures and control options for construction/
renovation activities, Final Report for ASHRAE Research Project 961-TRP, 220 p. (2001).
Kleindienst, T.E., Jaoui, M., Lewandowski, M., Offenberg, J.H., Lewis, C.W., Bhave, P.V., and Edney, E.O.
Estimates of the contributions of biogenic and anthropogenic hydrocarbons to secondary organic aerosol
at a Southeastern US location. Atmos. Environ ., 41 , 8288-8300 (2007).
Klepeis, N.E., Apte, M.G., Gundel, L.A., Sextro, R.G., and Nazaroff, W.W. Determining size-speciic emission
factors for environmental tobacco smoke particles, Aerosol Sci. Technol ., 37 , 780-790 (2003).
Knol, A.B., de Hartog, J.J., Boogaard, H., Slottje, P., van der Sluijs, J.P., Lebret, E., Cassee, F.R. et al. Expert
elicitation on ultraine particles: Likelihood of health effects and causal pathways, Part. Fibre Toxicol .,
6 , 19 (2009), doi: 10.1186/1743-8977-6-19.
Koponen, I.K., Jensen, K.J., and Schneider, T. Comparison of dust released from sanding conventional and
nanoparticle-doped wall and wood coatings, J. Expo. Sci. Environ. Epidemiol ., 21 , 408-418 (2011).
Koutrakis, P. and Briggs, S.L.K. Source apportionment of indoor aerosols in Suffolk and Onondaga Counties,
New York, Environ. Sci. Technol ., 26 , 521-527 (1992).
Lai, A.C.K. and Nazaroff, W.W. Modeling indoor particle deposition from turbulent low onto smooth surfaces,
J. Aerosol. Sci ., 31 , 463-476 (2000).
Landis, M.S., Norris, G.A., Williams, R.W., and Weinstein, J.P. Personal exposures to PM 2.5 mass and trace
elements in Baltimore, MD, USA, Atmos. Environ ., 35 , 6511-6524 (2001).
Lane, D.A. (Ed.) Gas and Particle Phase Measurements of Atmospheric Organic Compounds , Vol. 2 of Advances
in Environmental, Industrial and Process Control Technologies, Gordon and Breach, Amsterdam, the
Netherlands, 402 p. (1999).
Lane, T.E., Pinder, R.W., Shrivastava, M., Robinson, A.L., and Pandis, S.N. Source contributions to primary
organic aerosol: Comparison of the results of a source-resolved model and the chemical mass balance
approach, Atmos. Environ ., 41 , 3758-3776 (2007).
Leaderer, B.P., Boone, P.M., and Hammond, S.K. Total particle, sulfate and acidic aerosol emissions from
kerosene space heaters. Environ. Sci. Technol ., 24 , 908-912 (1990).
Leaderer, B.P, Naeher, L., Jankun, T., Balenger, K., Holford, T.R., Toth, C., Sullivan, J., Wolfson, J.M., and
Koutrakis, P. Indoor, outdoor, and regional summer and winter concentrations of PM 10 , PM 2.5 , SO 4 2− , H + ,
NH 4 + , NO 3 , NH 3 , and nitrous acid in homes with and without kerosene space heaters, Environ. Health
Perspect ., 107 , 223-231 (1999).
Search WWH ::




Custom Search