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Method for the determination of perfluorooctanoic acid in air samples using liquid chromatography with mass spectrometry

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<title>Method for the determination of perfluorooctanoic acid in air samples using liquid chromatography with mass spectrometry</title>
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<namePart>Kaiser, Mary A.</namePart>
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<namePart>American Industrial Hygiene Association</namePart>
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<dateIssued encoding="marc">2005</dateIssued>
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<abstract>The occupational exposure potential for perfluooctanoic acid (PFOA) is greatest for employees involved in the fluoropolymer manufacturing operations that use PFOA as a polymerization aid. The primary exposure routes are skin (dermal), ingestion, and inhalation. Good hygiene, engineering controls, and personal protective equipment will reduce employee exposure</abstract>
<note type="statement of responsibility">Mary A. Kaiser... [et al.]</note>
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<topic>Higiene industrial</topic>
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<topic>Contaminantes químicos</topic>
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<topic>Polímeros</topic>
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<topic>Enfermedades profesionales</topic>
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<topic>Inhalación</topic>
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<topic>Toxicología</topic>
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<topic>Espectrometría</topic>
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<title>Journal of occupational and environmental hygiene</title>
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<publisher>Cincinnati, Ohio : American Industrial Hygiene Association : American Conference of Governmental Industrial Hygienists</publisher>
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<part>
<text>Vol. 2, nº 6, June 2005 ; p. 307-313</text>
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