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首页> 外文期刊>Journal of Occupational Medicine and Toxicology >Hydrogen sulphide exposure in waste water treatment
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Hydrogen sulphide exposure in waste water treatment

机译:废水中硫化氢的暴露

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The aims of this study was to assess exposure to hydrogen sulphide (H2S) among waste water treatment workers (WWWs), and achieve a better measure of the risks of H2S exposure than only using the eight-hour average value and the ceiling value because the exposure pattern of H2S for WWWs is dominated by short-term peaks. Ninety-three measurements of H2S from 56 WWWs in three cities and three rural areas were collected. All exposure measurements were carried out from the start of the day until lunch time (sampling time 4–5?h) when most of the practical work was performed. The type of tasks and extent of flushing were registered. H2S was measured using direct-reading instruments with logging: OdaLog L2/LL, Dr?ger X-am 5000 and Dr?ger Pac 7000 (0.1–200?ppm). Number and duration of peaks for different work tasks, seasons, places and extent of flushing were combined in an exposure index (IN), and evaluated in a mixed-model analysis, building a model aimed to predict exposure for different job tasks. Nine Percent (8 of 93) of all H2S measurements have peaks above 10?ppm; in addition, 15% (14 of 93) have peaks of 5–10?ppm, 35% (33 of 93) have peaks of 1–5?ppm and 65% (62 of 93) have peaks of 0.1–1?ppm. 29% of the measurements of hydrogen sulphide showed no registered level?>?0.1?ppm. From the mixed-model analyses we see that exposure level, expressed as H2S index IN, varied between places, work type, season and degree of flushing. For the work in a plant in the capital, the exposure index varied from 0.02 for working in spring doing some flushing, to 0.7 for working at the same plant in winter doing flushing more than three times or more than 10?min. Collecting sewage from cesspools in city 2 in winter doing a lot of flushing gave a hydrogen sulphide index of 230. The use of a H2S index, taking into consideration peak height, duration and number of peaks, could be a tool for exposure assessment for H2S.
机译:这项研究的目的是评估废水处理工人(WWW)中的硫化氢(H2S)暴露,并且比仅使用8小时平均值和上限值来更好地衡量H2S暴露的风险,因为万维网上H2S的暴露方式主要由短期峰值决定。收集了来自三个城市和三个农村地区的56个WWW的93个H2S测量值。从一天的开始到午餐时间(采样时间4-5?h)进行所有实际工作,然后进行所有暴露测量。记录任务类型和冲洗程度。硫化氢的测定采用了带读数的直读仪器:OdaLog L2 / LL,Dr?ger X-am 5000和Dr?ger Pac 7000(0.1–200?ppm)。将不同工作任务的高峰次数和持续时间,季节,地点和潮红程度合并到一个暴露指数(IN)中,并在混合模型分析中进行评估,从而建立一个模型来预测不同工作任务的暴露程度。在所有H2S测量中,有百分之九(93中的8%)具有高于10?ppm的峰值;另外,15%(93中的14)的峰值为5–10?ppm,35%(93中的33)的峰值为1–5?ppm,65%(93中的62)的峰值为0.1–1?ppm 。 29%的硫化氢测量结果表明没有记录到的水平≥0.1ppm。从混合模型分析中,我们看到暴露水平(以H2S指数IN表示)在场所,工作类型,季节和潮红程度之间有所不同。对于首都某工厂的工作,暴露指数从春季进行冲洗时的0.02到冬季在同一家工厂冲洗超过三倍或10分钟以上的冬天时的暴露指数为0.7。冬季从城市2的污水池收集污水并进行大量冲洗,得出的硫化氢指数为230。考虑到峰高,峰长和峰数,使用H2S指数可以作为H2S暴露评估的工具。

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