Volatility Characterization of Cooking-Generated Aerosol Particles

被引:91
作者
Buonanno, G. [1 ]
Johnson, G. [2 ]
Morawska, L. [2 ]
Stabile, L. [1 ]
机构
[1] Univ Cassino, Dipartimento Meccan Strutture Ambiente & Terr, I-03043 Cassino, Italy
[2] Queensland Univ Technol, Int Lab Air Qual & Hlth, Brisbane, Qld 4001, Australia
关键词
NUCLEATION MODE PARTICLES; SIZE DISTRIBUTIONS; ULTRAFINE PARTICLES; PARTICULATE MATTER; AIR-POLLUTION; INDOOR; EMISSION; GAS; EXPOSURE; OUTDOOR;
D O I
10.1080/02786826.2011.580797
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Cooking-generated aerosol characterization is crucial for providing an accurate evaluation of human exposure to particle concentrations. In addition, when evaluating the dimensional properties of aerosols emitted from cooking activities, one key aspect to be investigated is the composition of the particles emitted. To this end, an evaluation of the volatility of cooking-generated aerosol particles was performed in this study. Total concentration and size distribution measurements were carried out using a thermal conditioning device, along with a scanning mobility particle sizer (SMPS) and an aerodynamic particle sizer (APS), in order to evaluate the amount of volatile material emitted by different cooking activities (frying and grilling), as well as those involving different kinds of food (fatty and vegetable foods). The results showed a shift in the dominant size distribution mode toward smaller diameters with higher aerosol conditioning temperatures. The corresponding total number concentrations were roughly constant when fatty foods were cooked, but a significant reduction in total particle concentration was observed when vegetable foods were fried or grilled. These results seem to demonstrate the presence of a nonvolatile core when cooking fatty foods. The larger volatile fraction associated with vegetable food cooking is also demonstrated by comparing the nonvolatile surface area and volatile mass distributions for each cooking activity, in order to evaluate the particle's chemical and physical effects on human being.
引用
收藏
页码:1069 / 1077
页数:9
相关论文
共 39 条
[1]   Relative contribution of outdoor and indoor particle sources to indoor concentrations [J].
Abt, E ;
Suh, HH ;
Catalano, P ;
Koutrakis, P .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (17) :3579-3587
[2]   Characterization of indoor particle sources: A study conducted in the metropolitan Boston area [J].
Abt, E ;
Suh, HH ;
Allen, G ;
Koutrakis, P .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2000, 108 (01) :35-44
[3]  
[Anonymous], 1994, Human respiratory tract model for radiological protection : a report of a Task Group of the International Commission on Radiological Protection, V1st, P1
[4]  
[Anonymous], FLAVOUR MEAT MEAT PR
[5]   Oxidative Potential of Semi-Volatile and Non Volatile Particulate Matter (PM) from Heavy-Duty Vehicles Retrofitted with Emission Control Technologies [J].
Biswas, Subhasis ;
Verma, Vishal ;
Schauer, James J. ;
Cassee, Flemming R. ;
Cho, Arthur K. ;
Sioutas, Constantinos .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (10) :3905-3912
[6]   Assessment of indoor fine aerosol contributions from environmental tobacco smoke and cooking with a portable nephelometer [J].
Brauer, M ;
Hirtle, R ;
Lang, B ;
Ott, W .
JOURNAL OF EXPOSURE ANALYSIS AND ENVIRONMENTAL EPIDEMIOLOGY, 2000, 10 (02) :136-144
[7]   Uncertainty Budget of the SMPS-APS System in the Measurement of PM1, PM2.5, and PM10 [J].
Buonanno, G. ;
Dell'Isola, M. ;
Stabile, L. ;
Viola, A. .
AEROSOL SCIENCE AND TECHNOLOGY, 2009, 43 (11) :1130-1141
[8]   Particle emission factors during cooking activities [J].
Buonanno, G. ;
Morawska, L. ;
Stabile, L. .
ATMOSPHERIC ENVIRONMENT, 2009, 43 (20) :3235-3242
[9]   Sensory and chemical investigations on the effect of oven cooking on warmed-over flavour development in chicken meat [J].
Byrne, DV ;
Bredie, WLP ;
Mottram, DS ;
Martens, M .
MEAT SCIENCE, 2002, 61 (02) :127-139
[10]  
DANIELLI JF, 1949, Q J MICROSC SCI, V90, P309