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首页> 外文期刊>Journal of occupational and environmental hygiene >Evaluation of cut-off saw exposure control methods for respirable dust and crystalline silica in roadway construction.
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Evaluation of cut-off saw exposure control methods for respirable dust and crystalline silica in roadway construction.

机译:道路施工中可吸入粉尘和结晶二氧化硅的切割锯暴露控制方法评估。

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摘要

Dust reduction equipment adapted for single-person operation was evaluated for gas-powered, commercially available cut-off saws during concrete curb cutting. Cutting was performed without dust control and with two individual exposure control methods: wet suppression and local exhaust ventilation (LEV). The wet suppression system comprised a two-nozzle spray system and a 13.3-L hand-pressurized water supply system with an optimum mean flow rate of 0.83 L/min for 16 min of cutting. The LEV system consisted of a spring-loaded guard, an 18.9-L collection bag, and a centrifugal fan with an estimated exhaust rate of 91 ft(3)/min. Task-based, personal filter samples were obtained for four saw operators during cutting durations of 4 to 16 min on five job sites. Seventeen filter samples were collected without dust control, 14 with wet suppression, and 12 with LEV, yielding a geometric mean respirable dust concentration of 16.4 mg/m(3), 3.60 mg/m(3), and 4.40 mg/m(3), respectively. A dust reduction of 78.0% for wet suppression and 73.2% for LEV was observed vs. no dust control. A statistically significant difference (p < 0.001) was also revealed for wet suppression and LEV when compared with no dust control; however, a significant difference (p = 0.09) was not observed between wet suppression and LEV. Despite these significant dust reductions, workers are still projected to exceed the ACGIH 8-hr time-weighted average threshold limit value for quartz (0.025 mg/m(3)) in less than 1 hr of cutting for both dust control methods. Further research is still needed to improve dust reduction and portability of both control methods, but the current LEV system offers important advantages, including a drier, less slippery work area and year-round functionality in cold weather.
机译:评估了适用于单人操作的除尘设备,用于在混凝土路缘石切割过程中使用气动力的市售切割锯。切割是在没有粉尘控制的情况下进行的,并且有两种单独的暴露控制方法:湿抑制和局部排气通风(LEV)。湿式抑制系统包括一个两喷嘴喷雾系统和一个13.3升手动加压供水系统,在切割16分钟时的最佳平均流速为0.83 L / min。 LEV系统由一个装有弹簧的防护罩,一个18.9公升的集尘袋和一个离心风机组成,估计排气量为91 ft(3)/ min。在五个作业现场,在4到16分钟的切割时间内,为四名锯操作员获得了基于任务的个人过滤器样本。在没有粉尘控制的情况下收集了17个过滤器样品,在抑制湿气的情况下收集了14个样本,在LEV情况下收集了12个样本,得出的几何平均可吸入粉尘浓度为16.4 mg / m(3),3.60 mg / m(3)和4.40 mg / m(3 ), 分别。与没有粉尘控制相比,观察到了湿抑制粉尘减少了78.0%,LEV粉尘减少了73.2%。与无粉尘控制相比,湿抑制和LEV也有统计学上的显着差异(p <0.001)。但是,在湿抑制和LEV之间未观察到显着差异(p = 0.09)。尽管这些粉尘减少量很大,但两种粉尘控制方法在不到1小时的切割时间内,仍预计工人会超过ACGIH石英的8小时时间加权平均阈值限值(0.025 mg / m(3))。仍需要进一步研究以提高两种控制方法的降尘效率和便携性,但是当前的LEV系统具有重要的优势,包括更干燥,工作区域更少的湿滑以及在寒冷天气下全年无休的功能。

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