Research Center for Environmental Changes, Academia Sinica, Taipei 11529, Taiwan.
Department of Chemistry, National Central University, Chungli 320, Taiwan.
Chemosphere. 2016 Feb;144:484-92. doi: 10.1016/j.chemosphere.2015.08.028. Epub 2015 Sep 18.
To advance the capabilities of probing chemical composition aloft, we designed a lightweight remote-controlled whole air sampling component (WASC) and integrated it into a multicopter drone with agile maneuverability to perform aerial whole air sampling. A field mission hovering over an exhaust shaft of a roadway tunnel to collect air samples was performed to demonstrate the applicability of the multicopter-carried WASC apparatus. Ten aerial air samples surrounding the shaft vent were collected by the multicopter-carried WASC. Additional five samples were collected manually inside the shaft for comparison. These samples were then analyzed in the laboratory for the chemical composition of 109 volatile organic compounds (VOCs), CH4, CO, CO2, or CO2 isotopologues. Most of the VOCs in the upwind samples (the least affected by shaft exhaust) were low in concentrations (5.9 ppbv for total 109 VOCs), posting a strong contrast to those in the shaft exhaust (235.8 ppbv for total 109 VOCs). By comparing the aerial samples with the in-shaft samples for chemical compositions, the influence of the shaft exhaust on the surrounding natural air was estimated. Through the aerial measurements, three major advantages of the multicopter-carried WASC were demonstrated: 1. The highly maneuverable multicopter-carried WASC can be readily deployed for three-dimensional environmental studies at a local scale (0-1.5 km); 2. Aerial sampling with superior sample integrity and preservation conditions can now be performed with ease; and 3. Data with spatial resolution for a large array of gaseous species with high precision can be easily obtained.
为了提高高空化学成分探测能力,我们设计了一种轻便的遥控全空气采样组件(WASC),并将其集成到具有灵活机动性的多旋翼无人机中,以进行空中全空气采样。在一条道路隧道的排气竖井上方进行了一项悬停实地任务,以演示多旋翼无人机携带的 WASC 仪器的适用性。多旋翼无人机采集了竖井通风口周围的十个空中空气样本。为了比较,还在竖井内手动采集了另外五个样本。然后在实验室中分析这些样本,以确定 109 种挥发性有机化合物(VOCs)、CH4、CO、CO2 或 CO2 同位素的化学成分。上风样本(受竖井排气影响最小)中的大多数 VOCs 浓度较低(总 109 种 VOCs 为 5.9 ppbv),与竖井排气中的 VOCs 形成强烈对比(总 109 种 VOCs 为 235.8 ppbv)。通过比较空气样本和竖井内样本的化学成分,估计了竖井排气对周围自然空气的影响。通过空中测量,展示了多旋翼无人机携带的 WASC 的三个主要优势:1. 高度机动的多旋翼无人机携带的 WASC 可以轻松部署在本地尺度(0-1.5 公里)进行三维环境研究;2. 现在可以轻松进行具有优越样品完整性和保存条件的空中采样;3. 可以轻松获得具有高精度的大量气态物质的具有空间分辨率的数据。