Zhang Yue, Gong Zhaoheng, Sa Suzane de, Bateman Adam P, Liu Yingjun, Li Yongjie, Geiger Franz M, Martin Scot T
School of Engineering and Applied Sciences, Harvard University; Department of Environmental Science and Engineering, Gillings School of Global Public Health, University of North Carolina;
School of Engineering and Applied Sciences, Harvard University.
J Vis Exp. 2018 Nov 18(141). doi: 10.3791/55685.
The production and the evolution of atmospheric organic particulate matter (PM) are insufficiently understood for accurate simulations of atmospheric chemistry and climate. The complex production mechanisms and reaction pathways make this a challenging research topic. To address these issues, an environmental chamber, providing enough residence time and close-to-ambient concentrations of precursors for secondary organic materials, is needed. The Harvard Environmental Chamber (HEC) was built to serve this need, simulating the production of gas and particle phase species from volatile organic compounds (VOCs). The HEC has a volume of 4.7 m and a mean residence time of 3.4 h under typical operating conditions. It is operated as a completely mixed flow reactor (CMFR), providing the possibility of indefinite steady-state operation across days for sample collection and data analysis. The operation procedures are described in detail in this article. Several types of instrumentation are used to characterize the produced gas and particles. A High-Resolution Time-of-Fight Aerosol Mass Spectrometer (HR-ToF-AMS) is used to characterize particles. A Proton-Transfer-Reaction Mass Spectrometer (PTR-MS) is used for gaseous analysis. Example results are presented to show the use of the environmental chamber in a wide variety of applications related to the physicochemical properties and reaction mechanisms of organic atmospheric particulate matter.
对于大气化学和气候的精确模拟而言,大气有机颗粒物(PM)的生成与演化尚未得到充分理解。复杂的生成机制和反应路径使得这成为一个具有挑战性的研究课题。为解决这些问题,需要一个环境舱,它能为二次有机物质提供足够的停留时间以及接近环境浓度的前体物质。哈佛环境舱(HEC)便是为满足这一需求而建造的,用于模拟挥发性有机化合物(VOCs)生成气相和颗粒相物质的过程。HEC的容积为4.7立方米,在典型运行条件下平均停留时间为3.4小时。它作为一个完全混合流反应器(CMFR)运行,为样本采集和数据分析提供了跨日进行无限期稳态运行的可能性。本文详细描述了其操作程序。使用了几种类型的仪器来表征所产生的气体和颗粒。一台高分辨率飞行时间气溶胶质谱仪(HR-ToF-AMS)用于表征颗粒。一台质子转移反应质谱仪(PTR-MS)用于气体分析。文中给出了示例结果,以展示环境舱在与有机大气颗粒物的物理化学性质和反应机制相关的各种应用中的使用情况。