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Volume 2, Issue 4 (Winter 2009)                   IJT 2009, 2(4): 287-291 | Back to browse issues page

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Zavvar Mousavi H, Rouhollahi A, Shirkhanloo H. Determination of mercury concentration in the air of dental clinics and the urines of their personnel with cold vapor atomic absorption spectrometry. IJT 2009; 2 (4) :287-291
URL: http://ijt.arakmu.ac.ir/article-1-66-en.html
1- Department of Chemistry, College of Science, Semnan University, Semnan, Iran
2- Department of Chemistry, Faculty of Science, K.N Toosi University of Technology,Tehran, Iran
3- Department of Chemistry, Faculty of Science, K.N Toosi University of Technology,Tehran, Iran , amidshirkhanloo@yahoo.com
Abstract:   (8343 Views)
Background: Dental clinics are known to be one of the largest users of Toxic inorganic mercury. It is well documented that dentists and dental assistants who work with amalgam are chronically exposed to mercury vapor. This study investigates exposure to mercury vapor in a dental clinic.
Methods: GBC cold vapor atomic absorption spectrometry (AAS), using sodium borohydride as the reducing agent, was employed to determine mercury concentrations. The determination of mercury in urine and air was carried out using a flow injection system after sample treatment according to the standard procedure.
Result: In this study mercury exposure in some dentist and dental office personnel was examined. We studied 495 persons (280 dentists and 215 dental personnel) occupationally exposed to mercury while working at 58 dental clinics in Tehran. In addition 305 samples from dental office’s air were taken and their mercury was measured with HG-AAS.
Conclution: In this study, mercury levels in dentists urine and dental office atmosphere were lower than occupational safety and health administration (OSHA). Results acquired from this study show that the amount of mercury were in normal range and it is lower than to the potential for adverse exposure to elemental mercury vapor concentration in a dental office.
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Type of Study: Research | Subject: General

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