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Evaluation of an innovative use of removable thin film coating technology for the abatement of hazardous contaminants.

机译:评估可移动薄膜涂层技术在减少有害污染物方面的创新应用。

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摘要

This study evaluates a new decontamination technique for the mitigation and abatement of hazardous particulates. The traditional decontamination methods used to clean facilities and equipment are time-consuming, prolonging workers' exposure time, may generate airborne hazards, and can be expensive. The use of removable thin film coating as a decontamination technique for surface contamination proved to be a more efficient method of decontamination. This method was tested at three different sites on different hazardous metals. One application of the coating reduced the levels of these metals 90% and had an average reduction of one magnitude. The paired t-tests that were performed for each metal demonstrated that there was a statistically significant reduction of the metal after the use of the coating: lead (p = 0.03), beryllium (p = 0.05), aluminum (p = 0.006), iron (p = 0.0001), and copper (p = 0.004). The Kendall tau-b correlation coefficient demonstrates that there was a positive correlation between the initial levels of contamination and the removal efficiency for all the samples taken from different locations on the floor for each of the three sites. This new decontamination technique worked efficiently, requiring only one application, which decreased exposure time and did not generate any airborne dust.
机译:这项研究评估了一种新的去污技术,用于缓解和消除有害微粒。用于清洁设施和设备的传统去污方法非常耗时,延长了工人的暴露时间,可能会产生空气传播的危害,并且价格昂贵。使用可去除的薄膜涂层作为表面污染的去污技术已被证明是一种更有效的去污方法。该方法在不同有害金属的三个不同位置进行了测试。涂层的一次涂覆将这些金属的含量降低了90%,平均降低了一个数量级。对每种金属进行的配对t检验表明,使用涂层后,该金属在统计上显着减少:铅(p = 0.03),铍(p = 0.05),铝(p = 0.006),铁(p = 0.0001)和铜(p = 0.004)。肯德尔tau-b相关系数表明,对于三个位置中的每个位置,从地板上不同位置采集的所有样品的初始污染水平与去除效率之间都存在正相关。这项新的去污技术有效运行,仅需一次应用即可,减少了暴露时间,并且不会产生任何空气中的粉尘。

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