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Exposure to Ultrafine Particles in the Ferroalloy Industry Using a Logbook Method

机译:使用Logbook方法暴露于铁合金工业中的超细颗粒

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摘要

Background: It is difficult to assess workers’ exposure to ultrafine particles (UFP) due to the lack of personal sampling equipment available for this particle fraction. The logbook method has been proposed as a general method for exposure assessment. This method measures the time and concentration components of the time-weighted average concentration separately and could be suitable for investigation of UFP exposure. Objectives: In this study, we have assessed workers’ exposure to UFP in a ferrosilicon plant. The main tasks of the furnace workers were identified, and the logbook method was used in combination with stationary measurements of UFP taken as close to the identified task areas as possible. In order to verify the results, respirable particles were collected using stationary sampling in close proximity to the UFP measuring instrument, and personal full-shift sampling of respirable particles was performed simultaneously. Thus, exposure to respirable particles determined using the logbook method could be compared to the results of standard measurement. Methods: The particle number concentration of ultrafine particles was determined using a NanoScan SMPS. Respirable particle concentration and exposure were determined using a sampling train consisting of a pump, filter, filter cassettes, and SKC Cyclone for the respirable fraction. Attendance times for workers at each work location were registered via thorough observations made by the research team. Results: The logbook method for exposure estimation based on stationary sampling equipment made it possible to calculate UFP exposure for workers operating the furnaces at a ferrosilicon plant. The mid-size furnace and the large furnace were evaluated separately. The workers operating the largest furnace were exposed to 1.47 × 104 particles/cm3, while workers operating the mid-size furnace were exposed to 2.06 × 104 particles/cm3, with a mean of 1.74 × 104 particles/cm3. Substantial contributions from the casting area, ladle transport corridor, and both tapping areas were made. Exposure to respirable particles was 2.04 mg/m3 (logbook); 2.26 mg/m3 (personal sampling) for workers operating the large-sized furnace, 3.24 mg/m3 (logbook); 2.44 mg/m3 (personal sampling) for workers operating the medium-sized furnace, and 2.57 mg/m3 (logbook); 2.53 mg/m3(personal sampling) on average of all tappers. The average ratio of these two methods’ results was 1.02, which indicates that the logbook method could be used as a substitute for personal sampling when it is not possible to perform personal sampling, at least within this industry. Conclusions: The logbook method is a useful supplement for exposure assessment of UFP, able to identify the most polluted areas of the workplace and the contribution of different work tasks to the total exposure of workers, enabling companies to take action to reduce exposure.
机译:背景:由于该粒子分数缺乏可用的个人采样设备,难以评估工人暴露于超细颗粒(UFP)。已经提出了日志方法作为接触评估的一般方法。该方法可以单独测量时间加权平均浓度的时间和浓度分量,可适用于对UFP暴露的研究。目标:在这项研究中,我们已经评估了在硅铁植物中的工人暴露于UFP。鉴定了炉工人的主要任务,并且对Logbook方法与尽可能接近识别的任务领域的UFP的固定测量结合使用。为了验证结果,使用紧邻UFP测量仪器的固定取样收集可吸入的颗粒,同时进行可吸入颗粒的个人全移除采样。因此,可以将使用日志方法确定的可吸入可吸入的粒子与标准测量结果进行比较。方法:使用纳米型SMP测定超细颗粒的粒子数浓度。使用由泵,过滤器,滤清器盒和SKC旋风器组成的采样列车测定可吸入的颗粒浓度和曝光,用于可吸入级分。每个工作地点的工人的出勤时间通过研究团队的彻底观察来注册。结果:基于静止采样设备的曝光估计的日志方法使得可以计算在硅铁工厂操作炉的工人的UFP曝光。分别评估中尺寸的炉子和大型炉子。操作最大炉的工人暴露于1.47×104颗粒/ cm3,而操作中尺寸炉的工人暴露在2.06×104颗粒/ cm3,平均为1.74×104颗粒/ cm3。制造了铸造区,钢包运输走廊和两个攻丝区域的实质性贡献。暴露于可吸入颗粒为2.04mg / m3(日志); 2.26毫克/立方米(个人采样)为操作大型炉子的工人,3.24 mg / m3(日志); 2.44 mg / m3(个人采样)用于操作中型炉的工人,2.57 mg / m3(日志);平均所有提示夹的2.53 mg / m3(个人采样)。这两种方法的平均比率为1.02,这表明当在该行业中不可能执行个人采样时,Logbook方法可以用作个人采样的替代品。结论:Logbook方法是UFP的曝光评估的有用补充,能够识别工作场所最污染的地区以及不同工作任务对工人总曝光的贡献,使公司能够采取行动减少曝光。

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