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The evaluation of particle counting efficacy of the new optical scattering method detecting the fluorescence for the particle number concentration standard in liquid

机译:新型光散射法检测液体中粒子数浓度标准品的荧光的粒子计数功效评估

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In order to establish a particle number concentration standard and the related calibration technology in liquids, a new particle counter based on the simultaneous detection of scattered light and fluorescence was examined. Sample particles from 2 to 10 micrometers in diameter were dyed. By making use of the fact that bubbles make no coincidence signals between scattered light and fluorescence on the other hand particles make coincidence signals, we could distinguish particles from bubbles. And we can establish the particle number concentration and the calibration technology in liquid. Using this system, fluorescence could be measured at 525 nm, 625 nm, or 675 nm as well as at 575 nm. To examine the electric counting error and error due to stray light counting, the four channels were compared. The difference in counting between each of the channels was less than 0.1% in relative standard deviation. To evaluate the reliability of the particle counts obtained with this system, the obtained values were compared with counts obtained using a microscope. With a microscope, the total area was manually scanned for the total counting to reduce the statistical uncertainty. The results of both methods were in good agreement, with a counting efficiency of 100% plus or minus 10% for 2 micrometer particles, and of 100% plus or minus 5% for 10 micrometer particles. The difference in the repetition of the new counter was less than 1%.
机译:为了建立液体中的粒子数浓度标准和相关的校准技术,研究了一种基于同时检测散射光和荧光的新型粒子计数器。将直径为2到10微米的样品颗粒染色。通过利用气泡在散射光和荧光之间没有产生重合信号这一事实,而粒子又产生了重合信号,我们可以将粒子与气泡区分开。可以建立液体中的颗粒数浓度和校正技术。使用该系统,可以在525 nm,625 nm或675 nm以及575 nm处测量荧光。为了检查电计数误差和由于杂散光计数引起的误差,比较了四个通道。每个通道之间的计数差异相对标准偏差小于0.1%。为了评估使用此系统获得的颗粒计数的可靠性,将获得的值与使用显微镜获得的计数进行比较。用显微镜手动扫描总面积以进行总计数,以减少统计不确定性。两种方法的结果吻合得很好,对于2微米的颗粒,计数效率分别为100%正负10%,对于10微米的颗粒,计数效率为100%正负5%。新计数器重复的差异小于1%。

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