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Determination of gas-particle partitioning parameters and indoor air concentrations of synthetic musk compounds

dc.contributor.advisor Sofuoğlu, Aysun en
dc.contributor.author Özcan, Çiğdem
dc.date.accessioned 2023-11-13T09:28:10Z
dc.date.available 2023-11-13T09:28:10Z
dc.date.issued 2013 en
dc.department Environmental Engineering en_US
dc.description Thesis (Master)--Izmir Institute of Technology, Environmental Engineering, Izmir, 2013 en
dc.description Includes bibliographical references (leaves: 53-59) en
dc.description Text in English; Abstract: Turkish and English en
dc.description ix, 59 leaves en
dc.description.abstract Gas-particle partitioning of compounds is the key process determining the fate of chemical in the environment. The partitioning process can be modeled depending upon dominancy of being adsorptive or absorptive partitioning and referred with partition coefficient (Kp m3.μg-1). Kp is related to liquid phase vapor pressure of a compound of interest. Due to difficulty related to model parameters, researchers have been developed a parameter called octanol air partition coefficient, KOA which can be directly measured and used to estimate Kp. Synthetic musk compounds (SMCs) are the one group of semi volatile organic compounds which are resistant to degradation, lipophilic and have moderate vapor pressures. They have been widely used in detergents, soaps, cosmetics, perfumes to give nice odorous effect for the product of interest. Most of their chemical properties values based on estimation methods. This study designed to measure octanol-air partition coefficients (KOA) and supercooled liquid vapor pressures (PL) by GC retention time method as a function of temperature to estimate gas-particle partitioning of SMCs. In addition ten indoor air gas and particulate phase samples were collected from a university cafeteria to determine experimental partition coefficient in the indoor air environment. The log KOA and log PL values of synthetic musk compounds were ranged between 6.42 to 8.77 and 0.52 to -4.53, respectively at 25 0C. All of the compounds were detected in the gas phase and the concentrations ranged from 0.27 ng/m3 to 106.8 ng/m3. In the particulate phase only DPMI, ADBI, ATII, MX and MK were detected in the range of 0.06 ng/m3 to 210.5 ng/m3. Although the correlation between the gas-particle partitioning coefficient (KP) and PL was found as weak, KOA was determined as a good descriptor for gas-particle partitioning process. en
dc.identifier.uri http://standard-demo.gcris.com/handle/123456789/4188
dc.institutionauthor Özcan, Çiğdem
dc.language.iso en en_US
dc.oaire.dateofacceptance 2013-01-01
dc.oaire.impulse 0
dc.oaire.influence 2.9837197E-9
dc.oaire.influence_alt 0
dc.oaire.is_green true
dc.oaire.isindiamondjournal false
dc.oaire.keywords Environmental Engineering
dc.oaire.keywords Çevre Mühendisliği
dc.oaire.popularity 9.2213404E-10
dc.oaire.popularity_alt 0.0
dc.oaire.publiclyfunded false
dc.publisher Izmir Institute of Technology en
dc.relation.publicationcategory Tez en_US
dc.rights info:eu-repo/semantics/openAccess en_US
dc.subject Gas-particle partitioning en
dc.subject.lcsh Volatile organic compounds--Environmental aspects en
dc.title Determination of gas-particle partitioning parameters and indoor air concentrations of synthetic musk compounds en_US
dc.type Master Thesis en_US
dspace.entity.type Publication

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