A new laboratory test chamber for the determination of diffusive sampler uptake rates
Diffusive samplers are today widely used for air quality control in indoor and outdoor environments and for personal exposure studies as well. The uptake rate is a fundamental parameter of a sampler for the calculation of the concentration of the substance to be monitored depends directly on it. Upt...
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Published in | Atmospheric environment (1994) Vol. 39; no. 22; pp. 4049 - 4056 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.07.2005
Elsevier Science |
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Abstract | Diffusive samplers are today widely used for air quality control in indoor and outdoor environments and for personal exposure studies as well. The uptake rate is a fundamental parameter of a sampler for the calculation of the concentration of the substance to be monitored depends directly on it. Uptake rates can be affected by numerous factors. Their values and the range of validity have to be determined in an appropriate exposure chamber.
The laboratory test chamber presented here consists of a loop made of glass, stainless steel and PTFE containing the generated atmosphere in which diffusive samplers can be tested. It is possible to accommodate several samplers simultaneously and simulate various environmental conditions such as temperature, wind speed, wind direction, humidity, atmospheric composition, total pressure and exposure duration. All working parameters have to be monitored including the concentrations of the components of the generated atmosphere. It is shown that the expected concentration of a volatile compound like benzene can be reached very quickly whereas those of less volatile compounds like toluene or xylenes takes longer. The procedure for overcoming this difficulty is described in this paper.
By means of an application it is also shown that exposure duration can unequally affect diffusive sampler uptake rates depending on sampler geometry and the nature of the adsorbent. It appears that a radial high-uptake rate diffusive sampler packed with a thermally desorbable material may be unsuitable for long-term monitoring of a volatile compound like benzene. However an axial low-uptake rate diffusive sampler, also packed with a thermally desorbable material, seems more appropriate for this application due to the higher stability of its uptake rate. |
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AbstractList | Diffusive samplers are today widely used for air quality control in indoor and outdoor environments and for personal exposure studies as well. The uptake rate is a fundamental parameter of a sampler for the calculation of the concentration of the substance to be monitored depends directly on it. Uptake rates can be affected by numerous factors. Their values and the range of validity have to be determined in an appropriate exposure chamber. The laboratory test chamber presented here consists of a loop made of glass, stainless steel and PTFE containing the generated atmosphere in which diffusive samplers can be tested. It is possible to accommodate several samplers simultaneously and simulate various environmental conditions such as temperature, wind speed, wind direction, humidity, atmospheric composition, total pressure and exposure duration. All working parameters have to be monitored including the concentrations of the components of the generated atmosphere. It is shown that the expected concentration of a volatile compound like benzene can be reached very quickly whereas those of less volatile compounds like toluene or xylenes takes longer. The procedure for overcoming this difficulty is described in this paper. By means of an application it is also shown that exposure duration can unequally affect diffusive sampler uptake rates depending on sampler geometry and the nature of the adsorbent. It appears that a radial high-uptake rate diffusive sampler packed with a thermally desorbable material may be unsuitable for long-term monitoring of a volatile compound like benzene. However an axial low-uptake rate diffusive sampler, also packed with a thermally desorbable material, seems more appropriate for this application due to the higher stability of its uptake rate. Diffusive samplers are today widely used for air quality control in indoor and outdoor environments and for personal exposure studies as well. The uptake rate is a fundamental parameter of a sampler for the calculation of the concentration of the substance to be monitored depends directly on it. Uptake rates can be affected by numerous factors. Their values and the range of validity have to be determined in an appropriate exposure chamber. The laboratory test chamber presented here consists of a loop made of glass, stainless steel and PTFE containing the generated atmosphere in which diffusive samplers can be tested. It is possible to accommodate several samplers simultaneously and simulate various environmental conditions such as temperature, wind speed, wind direction, humidity, atmospheric composition, total pressure and exposure duration. All working parameters have to be monitored including the concentrations of the components of the generated atmosphere. It is shown that the expected concentration of a volatile compound like benzene can be reached very quickly whereas those of less volatile compounds like toluene or xylenes takes longer. The procedure for overcoming this difficulty is described in this paper. By means of an application it is also shown that exposure duration can unequally affect diffusive sampler uptake rates depending on sampler geometry and the nature of the adsorbent. It appears that a radial high-uptake rate diffusive sampler packed with a thermally desorbable material may be unsuitable for long-term monitoring of a volatile compound like benzene. However an axial low-uptake rate diffusive sampler, also packed with a thermally desorbable material, seems more appropriate for this application due to the higher stability of its uptake rate. |
Author | Frezier, Armelle Gonzalez-Flesca, Norbert |
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CitedBy_id | crossref_primary_10_1007_s11869_010_0102_7 crossref_primary_10_1016_j_atmosenv_2010_06_014 crossref_primary_10_1016_j_atmosenv_2009_02_048 crossref_primary_10_1016_j_atmosenv_2006_11_025 crossref_primary_10_5194_amt_5_1459_2012 crossref_primary_10_1007_s11356_013_2010_5 crossref_primary_10_1111_j_1600_0668_2009_00585_x |
Cites_doi | 10.1177/1420326X9800700502 10.1016/S1352-2310(02)01000-2 10.1080/15428119491018439 10.1021/es00011a004 10.1021/es00002a014 10.1021/es00069a018 10.1007/BF02987484 10.1016/S0048-9697(99)00387-3 10.1007/BF02987560 10.1093/annhyg/35.3.273 10.1016/S1352-2310(01)00288-6 10.1023/A:1006420412523 10.1021/es000182x 10.1023/A:1006435404346 10.1080/15298668191420828 10.1021/ac981291l 10.1039/a705610i 10.1080/03067319208027031 10.1038/35004651 10.1021/es990607j |
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Keywords | Diffusive samplers Air quality Benzene Toluene Atmospheric simulation Xylene Laboratory study Hydrocarbon Volatile organic compound Operating conditions Equipment specifications Passive detection Absorption Surveillance Sampler Air pollution Aromatic compound Kinetics Chemical diffusion Sampling Organic compounds |
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Description and characterisation of exposure chamber system publication-title: Environmental Science and Technology doi: 10.1021/es990607j contributor: fullname: Chung |
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SubjectTerms | Air quality Analysis methods Applied sciences Atmospheric pollution Atmospheric simulation Benzene Diffusive samplers Exact sciences and technology Pollution Toluene Xylene |
Title | A new laboratory test chamber for the determination of diffusive sampler uptake rates |
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