Kuo Fung-Yu, Lin Ying-Chen, Ke Ling-Yi, Tsai Chuen-Jinn, Yao Da-Jeng
Institute of NanoEngineering and MicroSystems, National Tsing Hua University, Hsinchu 30013, Taiwan.
Institute of Environmental Engineering, National Chiao Tung University, Hsinchu 30013, Taiwan.
Micromachines (Basel). 2018 Aug 12;9(8):398. doi: 10.3390/mi9080398.
A device to monitor particulate matter of size 2.5 μm (PM2.5) that has been designed and developed includes a surface-acoustic-wave sensor operating in a shear horizontal mode (SH-SAW) combined with a cyclone separator. In our tests, aerosols generated as incense smoke were first separated and sampled inside a designed cyclone separator; the sampled PM2.5 was then introduced into the sensing area of an SH-SAW sensor for detection. The use of microcentrifuge tubes as a cyclone separator effectively decreases the size and power consumption of the device; the SAW sensor in a well design and operating at 122 MHz was fabricated with MEMS techniques. After an explanation of the design of the cyclone separator, a simulation of the efficiency and the SAW sensor detection are discussed. A microcentrifuge tube (volume 0.2 mL, inlet and outlet diameters 0.5 mm) as a separator has separation cutoff diameters 50% () at 2.5 μm; the required rate of volumetric flow at the inlet is 0.125 LPM, according to simulation with computational fluid dynamics (CFD) software; the surface-acoustic-wave (SAW) sensor exhibits sensitivity approximately 9 Hz/ng; an experiment for PM2.5 detection conducted with the combined device shows a strong positive linear correlation with a commercial aerosol monitor. The limit of detection (LOD) is 11 μg/m³ with sample time 160 s and total detection duration about 5 min.
一种已设计和开发的用于监测2.5微米颗粒物(PM2.5)的设备,包括一个工作在水平剪切模式(SH-SAW)的表面声波传感器与一个旋风分离器相结合。在我们的测试中,作为香烟雾产生的气溶胶首先在设计的旋风分离器内被分离和采样;然后将采样的PM2.5引入SH-SAW传感器的传感区域进行检测。使用微量离心管作为旋风分离器有效地减小了设备的尺寸和功耗;采用MEMS技术制造了设计良好且工作在122 MHz的SAW传感器。在解释了旋风分离器的设计之后,讨论了效率模拟和SAW传感器检测。作为分离器的微量离心管(体积0.2 mL,进出口直径0.5 mm)在2.5微米处的分离截止直径为50%();根据计算流体动力学(CFD)软件的模拟,入口处所需的体积流量为0.125 LPM;表面声波(SAW)传感器的灵敏度约为9 Hz/ng;用组合设备进行的PM2.5检测实验显示与商用气溶胶监测仪有很强的正线性相关性。检测限(LOD)为11μg/m³,采样时间为160 s,总检测持续时间约为5分钟。