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首页> 外文期刊>Environmental research >Behavioral characteristics of polyhexamethyleneguanidine (PHMG) particles in aqueous solution and air when sprayed into an ultrasonic humidifier
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Behavioral characteristics of polyhexamethyleneguanidine (PHMG) particles in aqueous solution and air when sprayed into an ultrasonic humidifier

机译:喷涂到超声加湿器中的聚六亚甲基胍(PHMG)颗粒在水溶液和空气中的行为特征

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Polyhexamethyleneguanidine (PHMG) is widely used as a disinfectant to prevent microbial contamination in ultrasonic humidifiers in Korea; however, sales have been prohibited by the government after an outbreak of severe lung injury among humidifier disinfectant users. This study was therefore conducted to determine the characteristics of PHMG particles in aqueous solution and to investigate the behavior of airborne particles generated when using PHMG as a humidifier disinfectant. Three types of PHMG were selected (manufactured in Korea, USA, and China), with dynamic light scattering (DLS) used to determine their behavioral characteristics in aqueous solution. To determine the airborne behavioral characteristics, PHMG was diluted to obtain high (62.5-65 ppm) and low (6.25-6.5 ppm) concentrations, and then real-time monitoring instruments were used to measure the effect of using a diffusion dryer and thermodenuder to control moisture in a cleanroom. A polycarbonate filter sample was analyzed by held emission-scanning electron microscope-energy dispersive spectrometry (FE-SEM-EDS) to determine the particle morphology. The DLS intensity results for the three products showed a slightly right-shifted (~100 nm) bimodal distribution relative to the airborne particle size distribution. The size of the airborne PHMG particles increased during the spraying due to aggregation, with the particle size of aggregated particles confirmed by FE-SEM to be approximately 20 nm or more. As the PHMG concentration increased by 10 times, the airborne concentrations measured by the real-time monitoring instrument increased by 2-3 times for nanoparticles, and by 45-85 times for 1-10 um particles during humidifier operation; however, 99% of the particles generated could be classified as PM_1. Without ventilation, even after operating the humidifier, the PHMG particles could be airborne for about 2 h until the background concentration was reached. Therefore, we found that the airborne behavior was affected by PHMG concentration. Products from different manufacturers had no effect on the airborne behavior.
机译:在韩国,聚六亚甲基胍(PHMG)被广泛用作消毒剂,以防止微生物污染。但是,在加湿器消毒剂使用者中发生严重的肺损伤后,政府已禁止销售。因此,本研究旨在确定水溶液中PHMG颗粒的特性,并研究使用PHMG作为加湿器消毒剂时产生的空气传播颗粒的行为。选择了三种类型的PHMG(在韩国,美国和中国制造),并使用动态光散射(DLS)来确定其在水溶液中的行为特征。为了确定空气传播的行为特征,将PHMG稀释以获得高浓度(62.5-65 ppm)和低浓度(6.25-6.5 ppm),然后使用实时监测仪器来测量使用扩散干燥器和热剥蚀仪进行测量的效果。控制洁净室中的水分。通过保持发射扫描电子显微镜-能量色散光谱法(FE-SEM-EDS)分析聚碳酸酯过滤器样品,以确定颗粒形态。三种产品的DLS强度结果显示,相对于机载粒径分布而言,其双峰分布略有右移(〜100 nm)。空气中PHMG颗粒的尺寸在喷雾过程中由于聚集而增加,通过FE-SEM确认的聚集颗粒的粒径为约20nm或更大。随着PHMG浓度增加10倍,在加湿器运行期间,由实时监控仪器测量的空气中浓度对于纳米粒子增加了2-3倍,对于1-10 um粒子增加了45-85倍;但是,可以将生成的99%的颗粒分类为PM_1。如果没有通风,即使在运行加湿器之后,PHMG颗粒也可以在空气中飞行约2小时,直到达到背景浓度为止。因此,我们发现空中行为受PHMG浓度影响。来自不同制造商的产品对空中行为没有影响。

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