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首页> 外文期刊>Journal of Aerosol Science >Measuring electrostatic charge on pneumatically generated spray drops
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Measuring electrostatic charge on pneumatically generated spray drops

机译:测量气动产生的喷雾滴的静电电荷

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Activities such as the suppression of coal dust would benefit from an improved understanding about how the presence of surfactant alters the charge distribution of spray drops. However, there is no standard method to measure charge and size distributions of nozzle-generated spray drops. To fill this gap, a new spray drop charge measurement system was developed to measure a broad range of sizes and electrostatic charges for spray drops based on the principle that the free-falling drops can be separated according to their electrostatic mobility in an electrical field with known strength. High and low concentration (1 x 10(-4) and 1 x 10(-6) M, respectively) anionic, cationic, and nonionic surfactant sprays and water spray were tested. Nonionic and cationic surfactant-containing sprays and water spray carried net positive charge on average, while anionic surfactant-containing sprays tended to carry net negative charge on average. Increasing surfactant concentration did not increase the magnitude of drop charge among the tested surfactants. Drop charge level was significantly higher among larger size drops, with the average charge per particle on 320 mu m drops 1000 to 10,000 times higher than on 20 mu m drops. The spray drop charge measurement system developed in this study can be used to measure spray drops with an electrostatic charge ranging from 0 to 960,000 charges per drop and diameter ranging from 20 to 270 mu m. Potential design improvements described in this study and additional computing power could improve measurement accuracy and precision, as well as the capacity of the system.
机译:对表面活性剂的存在如何改变雾滴电荷分布的更好理解将有助于抑制煤尘等活动。然而,目前还没有标准的方法来测量喷嘴产生的雾滴的电荷和尺寸分布。为了填补这一空白,开发了一种新的喷雾液滴电荷测量系统,以测量喷雾液滴的各种尺寸和静电电荷,其原理是自由下落的液滴可以根据其在已知强度电场中的静电迁移率进行分离。测试了高浓度和低浓度(分别为1x10(-4)和1x10(-6)M)阴离子、阳离子和非离子表面活性剂喷雾和水喷雾。含有非离子和阳离子表面活性剂的喷雾和水喷雾平均带净正电荷,而含有阴离子表面活性剂的喷雾平均带净负电荷。增加表面活性剂浓度不会增加受试表面活性剂中滴电荷的大小。在较大尺寸的液滴中,液滴电荷水平明显较高,320μm液滴的平均每粒子电荷是20μm液滴的1000到10000倍。本研究开发的雾滴电荷测量系统可用于测量每滴0到960000电荷、直径20到270μm的雾滴。本研究中描述的潜在设计改进和额外的计算能力可提高测量精度和精度,以及系统的容量。

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