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Real-time Measurements of the Particle Geometric Surface Area by the Weighted-sum Method on a University Campus

机译:大学校园加权和方法粒子几何表面积的实时测量

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摘要

This study conducted field measurements of the particle geometric surface area (GSA) and number concentrations on a university campus via two real-time approaches: applying the weighted-sum (WS) method and using a Scanning Mobility Particle Sizer (SMPS). The measurements were conducted on 4 subjects: laser printing, 3D printing, machining (waterjet cutting, sanding, and welding), and environmental aerosols. The highest emissions were found with 3D printing and welding; these concentrations were measured in the printer’s enclosure and when the local exhaust ventilation was on, respectively. In general, the two methods agreed well with each other, with an overall Pearson correlation coefficient of 0.85, although the concentrations constantly fluctuated over a wide range, from 20 to 4 × 104 μm2 cm–3. Since the GSA concentrations reported in this study are the first measurements for some scenarios, our results can serve as a reference for further research as well as for individuals in the vicinity of these emissions.
机译:本研究通过两个实时方法对大学校园内的粒子几何表面积(GSA)和数量浓度进行了现场测量:应用加权和(WS)方法并使用扫描移动性粒子Sizer(SMPS)。测量是在4个科目中进行的:激光印刷,3D印刷,加工(Waterjet切割,砂光和焊接)和环境气溶胶。 3D印刷和焊接发现最高排放量;在打印机的外壳中测量这些浓度,并且当局部排气通风接通时。通常,这两种方法彼此吻合得很好,总皮子相关系数为0.85,尽管浓度在宽范围内不断波动,从20到4×104μm2cm-3。由于本研究报告的GSA浓度是某些情况的第一次测量,我们的结果可以作为进一步研究的参考以及这些排放附近的个人。

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