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与工作场所空气中过氧化氢存在相关的健康风险评估——一种创新监测方案的分析方法评估

Health risk assessment related to hydrogen peroxide presence in the workplace atmosphere - analytical methods evaluation for an innovative monitoring protocol.

作者信息

Mucci Nicola, Dugheri Stefano, Bonari Alessandro, Farioli Andrea, Rapisarda Venerando, Garzaro Giacomo, Cappelli Giovanni, Arcangeli Giulio

机构信息

University of Florence, Florence, Italy (Department of Experimental and Clinical Medicine).

Careggi University Hospital, Florence, Italy (Occupational Medicine Unit - Industrial Hygiene and Toxicology Laboratory).

出版信息

Int J Occup Med Environ Health. 2020 Mar 13;33(2):137-150. doi: 10.13075/ijomeh.1896.01508. Epub 2020 Jan 30.

DOI:10.13075/ijomeh.1896.01508
PMID:32080682
Abstract

OBJECTIVES

Hydrogen peroxide (HP) accounts for 15% of the total global chemical revenue. According to the National Institute of Occupational Safety and Health, the HP concentration immediately dangerous to human life or health is 75 ppm. Operators exposed to HP should pay attention when choosing the monitoring technique that should be specific and sensitive enough to discriminate the exposure levels from background concentrations. In order to assess the long- and short-term exposure to HP in disinfection processes, the authors compared 6 industrial hygiene monitoring methods to evaluate their efficiency in measuring airborne HP concentrations.

MATERIAL AND METHODS

Airborne HP concentrations were evaluated using an on-fiber triphenylphosphine solid-phase microextraction method, and they were compared with those obtained using a 13-mm Swinnex titanium oxysulfate filter holder and 4 portable direct-reading electrochemical sensors. A survey carried out in wood pulp bleaching, food and beverage disinfection processing, and in a hospital department to reduce the risk of spreading nosocomial infections, was performed during routine operations to access the risk of HP occupational exposure.

RESULTS

Through the generation of HP gaseous dynamic atmospheres (0.1-85 ppm), the authors evaluated the consistency of the results obtained using the 6 methods described. The monitoring campaigns showed that the increase in HP could be relatively high (until 67 ppm) in food and beverage processing.

CONCLUSIONS

In the authors' opinion, the current 8-h time-weighted average limits of 1 ppm for HP do not reflect the actual risk; a short-term exposure limit would, therefore, provide a much better protection. 2020;33(2):137-50.

摘要

目的

过氧化氢(HP)占全球化学品总收入的15%。根据美国国家职业安全与健康研究所的数据,对人类生命或健康立即危险的HP浓度为75 ppm。接触HP的操作人员在选择监测技术时应予以注意,该技术应足够特异和灵敏,以区分背景浓度下的暴露水平。为了评估消毒过程中HP的长期和短期暴露情况,作者比较了6种工业卫生监测方法,以评估它们在测量空气中HP浓度方面的效率。

材料与方法

使用纤维上三苯基膦固相微萃取法评估空气中HP浓度,并将其与使用13毫米Swinnex硫酸氧钛滤膜夹和4种便携式直读电化学传感器获得的浓度进行比较。在木浆漂白、食品和饮料消毒加工以及医院科室进行的一项调查中,为降低医院感染传播风险,在常规操作期间进行了调查,以评估HP职业暴露风险。

结果

通过生成HP气态动态气氛(0.1 - 85 ppm),作者评估了使用上述6种方法获得的结果的一致性。监测活动表明,在食品和饮料加工中HP的增加可能相对较高(高达67 ppm)。

结论

作者认为,目前HP的8小时时间加权平均限值1 ppm并不能反映实际风险;因此,短期暴露限值将提供更好的保护。2020;33(2):137 - 5

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