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Filters: Author is Melissa M. Lunden [Clear All Filters]
Building a predictive model of indoor concentrations of outdoor PM-2.5 for a residential research house in Clovis, California. 2002..
"Can combining economizers with improved filtration save energy and protect equipment in data centers?." Building and Environment 45.3 (2010) 718-726. LBNL-2939E..
"Capture Efficiency of Cooking- Related Fine and Ultrafine Particles by Residential Exhaust Hoods." Indoor Air (2014). LBNL-6664e..
"Characteristics of fine particle growth events observed above a forested ecosystem in the Sierra Nevada Mountains of California." Aerosol Science and Technology 40.5 (2006) 373-388..
"Characterization Of Reaction Products And Ultrafine Particles From Ozone-initiated Chemistry On Filters From Ventilation Systems In Commercial Buildings." 12th International Conference on Indoor Air Quality and Climate, June 5-10, 2011. Austin, TX: Proceedings of Indoor Air 2011, a885 3, 2011..
Characterizing the Formation of Secondary Organic Aerosols—Interim Report. Lawrence Berkeley National Laboratory, 2004..
"A concentration rebound method for measuring particle penetration and deposition in the indoor environment." Aerosol Science & Technology 37 (2003) 847-864. LBNL-51631..
"A Concentration Rebound Method For Measuring Particle Penetration Into A Residence, Section 12A1." Proceedings of the 19th Annual American Association for Aerosol Research, St. Louis, MO 2000..
"The effect of penetration factor, deposition, and environmental factors on the indoor concentration of pm2.5 sulfate, nitrate, and carbon." Proceedings of the Indoor Air 2002 Conference, Monterey, CA 2002: 846-851..
Experimental investigation of the effect of changes in house environment on the indoor concentration of particles of outdoor origin within a residence. 2002..
"Factors affecting the indoor concentrations of carbonaceous aerosols of outdoor origin." Atmospheric Environment 42.22 (2007) 5660-5671..
"Indoor, Outdoor And Regional Profiles Of Pm2.5 Sulfate, Nitrate And Carbon." 9th International Conference on Indoor Air 2002. Vol. 1. Monterey, CA: Indoor Air 2002, Santa Cruz, CA, 2002. 874-879. LBNL-49980..
"Indoor secondary pollutants from cleaning product and air freshener use in the presence of ozone." Atmospheric Environment 40 (2006) 6696-6710. LBNL-59308..
"Indoor Secondary Pollutants from Household Product Emissions in the Presence of Ozone: A Bench-Scale Chamber Study." Environmental Science and Technology 40 (2006) 4421-4428. LBNL-58785..
An instrument for automated simultaneous measurements of ammonia and nitric acid in indoor and outdoor air. 2002..
"Investigation of formaldehyde and acetaldehyde sampling rate and ozone interference for passive deployment of Waters Sep-Pak XPoSure samplers." Atmospheric Environment 80 (2013) 184-189..
"Measurement of Black Carbon and Particle Number Emission Factors from Individual Heavy-Duty Trucks." Environmental Science and Technology 43.5 (2009) 1419-1424..
"Optical and Physical Properties from Primary On-Road Vehicle Particle Emissions and Their Implications for Climate Change." Journal of Aerosol Science 41.1 (2009) 36-50..
"Predicting Indoor PM2.5 Of Outdoor Origin: Testing a transient size-resolved Model Using Intensive Measurements From A Residence." Proceedings of the Indoor Air 2002 Conference, Monterey, CA 2002: 152-157..
Quantifying Stove Emissions Related to Different Use Patterns for the Silver‐mini (Small Turkish) Space Heating Stove. Berkeley: Lawrence Berkeley National Laboratory, 2012. LBNL-6319E..
"Secondary organic aerosol from ozone-initiated reactions with terpene-rich household products." Atmospheric Environment 42.35 (2008) 8234–8245..
"Secondary Pollutants From Cleaning Products And Air Fresheners In The Presence Of Ozone." Proceedings of The 10th International Conference on Indoor Air Quality and Climate - Indoor Air 2005. Vol. 2(9). Beijing, China: Tsinghua University Press, 2005. 2081-2085. LBNL-57038..