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Merck
  • Comparison of exposure assessment methods in occupational exposure to benzene in gasoline filling-station attendants.

Comparison of exposure assessment methods in occupational exposure to benzene in gasoline filling-station attendants.

Toxicology letters (2005-11-18)
Mariella Carrieri, Enrico Bonfiglio, Maria Luisa Scapellato, Isabella Maccà, Giovanna Tranfo, Paolo Faranda, Enrico Paci, Giovanni Battista Bartolucci
摘要

The aim of this study was to assess gasoline filling-station attendants' exposure to benzene and to determine which biological exposure index (BEI), trans,trans-muconic acid (t,t-MA) or S-phenylmercapturic acid (S-PMA), shows better correlation with environmental exposure. Exposure to benzene was measured using passive samplers (Radiello) attached to the collar of the overalls of subjects (n=33) just before the work-shift (approximately 8h); analysis was performed by GC-FID. S-PMA and t,t-MA were determined, respectively, by an immunochemiluminescent assay based on specific monoclonal antibodies and by HPLC-UV at 264 nm. Both methods of biological monitoring were performed on beginning and end-shift urine samples, and expected t,t-MA and S-PMA values were calculated. Smoking habits and life-style were ascertained by means of a questionnaire. Both environmental and biological monitoring data showed that benzene exposure for gasoline filling-station attendants was low when compared with the respective ACGIH limit values (means-benzene: 0.044 mg/m(3); t,t-MA: 171 microg/g creatinine; S-PMA: 2.7 microg/g creatinine). No significant correlation was found between exposure to benzene and t,t-MA or S-PMA excretion data. The use of expected values was also experimented for S-PMA and t,t-MA. This consists of calculating, on the basis of the known half-life of the benzene metabolite, the concentration of that metabolite that a worker should present at the end of the work-shift, the difference between this value and the value actually found is a measure of benzene exposure during work. The use of expected values in biological monitoring did not improve correlations. At these low benzene levels, environmental monitoring seems to be the best method of evaluating individual exposure. However, biological monitoring remains useful, as a mean of assessing group exposure.

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radiello 小柱吸附剂, for sampling BTEX and VOCs (CS2 Desorption), matrix SS net (100 mesh, 5.8 mm diam.), activated with activated charcoal (30-50 mesh), pk of 20
radiello 三角支撑板, pk of 20
radiello 扩散体外壳, white, configured for general use, pk of 20
radiello 小柱吸附剂, for sampling Aldehydes, matrix SS net with 2,4-DNPH coated FLORISIL®, pk of 20
radiello 小柱吸附剂, for sampling Ammonia (NH3), matrix microporous PE impregnated with phosphoric acid, pk of 20
radiello 扩散体外壳, blue, configured for sampling light sensitive compounds, pk of 20
radiello 扩散体外壳, yellow, configured for reduced sampling rates, pk of 20
radiello 小柱吸附剂, for sampling BTEX and VOCs (thermal desorption), matrix SS net (3 x 8 μm, 4.8 mm diam.), Carbograph, pk of 20
Supelco
radiello 亚甲蓝校正标准样,用于 H2S(硫化氢), pkg of 100 mL
radiello 室外防护罩, pk of 10
radiello 条形码标签, pk of 198
radiello 竖直连接头, threaded for standard use, pk of 20
radiello BTEX/VOC Starter试剂盒,CS2解吸
Supelco
radiello BTEX 校正套装(热解吸)
radiello 过滤套装, pk of 20
radiello 空储存管, glass (with stopper), volume 2.8 mL, pk of 100
Supelco
radiello醛校准标准品, 50 μg/mL each component in acetonitrile, pkg of 10 mL
Supelco
radiello BTEX 校正套装(CS2 解吸)
radiello 夹, suspending Radiello triangular support plate, pk of 20
radiello 1,3-丁二烯起动包,热解吸, pkg of 1 kit (2 RAD141 adsorbing cartridges and barcode labels, 1 RAD1202 yellow diffusive body, 1 RAD121 triangular support plate, 1 instruction sheet)