NIOSH/HELD/CMBM, Cincinnati, Ohio.
Department of Chemistry, College of Arts and Sciences, Bowling Green State University, Bowling Green, Ohio.
J Occup Environ Hyg. 2019 Nov;16(11):717-726. doi: 10.1080/15459624.2019.1657580. Epub 2019 Sep 18.
This study evaluated a novel robotic direct reading method that used a real-time location system to measure the spatial-concentration distribution of volatile organic compounds (VOCs) in a chemistry laboratory. The CEMWIP II is a custom-made sensor that measures VOCs, temperature, humidity, and location, sending data wirelessly in real time to a remote location for display and storage. In this study, the CEMWIP II device was mounted on a robotic platform to create a CEMWIP II-mobile platform. The autonomous mobile platform was released from a corner of the room and allowed to travel randomly along an open floor with the goal of characterizing the spatial distribution of VOCs and identifying their sources in the laboratory. The experiment consisted of 12 runs made of permutations of four corner release sites and four beaker locations, with two beakers containing water and two containing the solvent acetone. The autonomous mobile platform was tasked with locating the two beakers of acetone. The sensor had a detection limit of 100 ppb and the confidence of detecting a source within a 1.46 m area was p = 0.0005 by ANOVA. The CEMWIP II-mobile platform was able to measure the spatial distribution of VOCs within a laboratory that were associated with open solvent containers.
本研究评估了一种新型的机器人直接读取方法,该方法使用实时定位系统来测量化学实验室中挥发性有机化合物 (VOC) 的空间浓度分布。CEMWIP II 是一种定制的传感器,可测量 VOC、温度、湿度和位置,并将数据无线实时发送到远程位置进行显示和存储。在本研究中,CEMWIP II 设备被安装在机器人平台上,以创建 CEMWIP II 移动平台。自主移动平台从房间的一角释放,并允许在开放的地板上随机行驶,目的是描述 VOC 的空间分布并识别实验室中的来源。实验由四个角落释放点和四个烧杯位置的排列组合的 12 次运行组成,其中两个烧杯装有水,两个装有溶剂丙酮。自主移动平台的任务是找到两个装有丙酮的烧杯。该传感器的检测限为 100 ppb,通过方差分析,传感器在 1.46 米区域内检测到源的置信度为 p = 0.0005。CEMWIP II 移动平台能够测量与敞开溶剂容器相关的实验室中 VOC 的空间分布。