Literature DB >> 18203562

A pilot study to determine mercury exposure through vapor and bound to PM10 in a dental school environment.

Adriana Gioda1, Gilberto Hanke, Augusto Elias-Boneta, Braulio Jiménez-Velez.   

Abstract

Mercury (Hg) is widely used in the dental working environment, exposing dental practitioners and assistants to potentially toxic Hg vapors. Concentrations of Hg in vapor and in particulate matter (PM10) were measured in the Dental Simulation Laboratory (DSL) and in the Dental Clinic (DC) at the School of Dentistry, University of Puerto Rico. PM10 samples were collected over a 36-h period and Hg vapor was collected for eight-hour periods. PM10 mass was determined gravimetically and Hg (bound to PM10 and vapor) was extracted and analyzed by atomic absorption. Indoor levels of PM10 in the DSL ranged from 9.2 to 41.6 microg/m3 and 35.0 to 68.2 microg/m3 in the DC. Levels of particle-bound Hg ranged from 0.1 to 1.2 microg/m3 and in vapor 1.1 to 3.3mg/m3 at the DSL; the DC levels ranged from <0.01 to 0.2 microg/m3 for particle bound Hg and 13.6 to 102.7 microg/m3 in vapor. PM10 concentrations were below Indoor Air Quality suggested limits for total dust (100 microg/m3). Levels of mercury bound to PM10 were low; however, mercury vapor was several times higher than the suggested OSHA (permissible exposure limit--100 microg/m3) in the DSL.

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Year:  2007        PMID: 18203562     DOI: 10.1177/0748233707078219

Source DB:  PubMed          Journal:  Toxicol Ind Health        ISSN: 0748-2337            Impact factor:   2.273


  2 in total

Review 1.  Rethinking the Dental Amalgam Dilemma: An Integrated Toxicological Approach.

Authors:  Hector Jirau-Colón; Leonardo González-Parrilla; Jorge Martinez-Jiménez; Waldemar Adam; Braulio Jiménez-Velez
Journal:  Int J Environ Res Public Health       Date:  2019-03-22       Impact factor: 3.390

2.  Mercury vapor volatilization from particulate generated from dental amalgam removal with a high-speed dental drill - a significant source of exposure.

Authors:  David Warwick; Matt Young; Joe Palmer; Robin Warwick Ermel
Journal:  J Occup Med Toxicol       Date:  2019-07-17       Impact factor: 2.646

  2 in total

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