Department of Environmental Engineering and Science, Feng Chia University, Taichung, Taiwan.
Environ Sci Pollut Res Int. 2013 Mar;20(3):1526-36. doi: 10.1007/s11356-012-1109-4. Epub 2012 Aug 7.
The science parks have helped shape Taiwan as a high-tech island with a good reputation worldwide. But some complaints on air pollution from the science parks have recently risen. To better understand the environmental effects of volatile organic compounds (VOCs) emitted from various high-tech factories in a science park, this study uses a source-receptor approach to characterize the environmental effects of VOCs from control device exhaust in Taichung Science Park. The chemical mass balance model (CMB8.2) of field measurements of 30 stacks and ambient air at nine sites was used to identify the source and relative contribution of ambient VOCs. The exhaust gas of various pollution control devices was also sampled by drawing a stream of the gases from the exhaust duct at its sampling port. The VOC source profile of each control device exhaust was determined using a database of noncharacteristic compounds. Monthly ambient concentrations of 167 VOCs were divided into monsoon datasets to investigate the effect of monsoon conditions on the emission of VOCs in the science park. This study also suggests a method for determining the optimum source profile in source-receptor modeling, and identifies and analyzes the sources of ambient VOCs at nine sites during southwest and northeast monsoons. Results show a direct relationship between the relative contribution of each source and its control device efficiency. The proposed source-receptor approach can characterize the environmental effect of air pollutants from various factories and successfully assess the efficiency of various control devices.
科学园区帮助台湾塑造了一个在全球享有良好声誉的高科技岛屿。但最近,一些人对科学园区的空气污染提出了抱怨。为了更好地了解科学园区内各种高科技工厂排放的挥发性有机化合物(VOC)对环境的影响,本研究采用源-受体方法来描述台中科学园区中挥发性有机化合物从控制设备排放的环境效应。使用化学质量平衡模型(CMB8.2)对 30 个烟囱和 9 个地点的环境空气进行实地测量,以确定环境 VOC 的来源和相对贡献。还通过在采样口从排气管道中抽取气流来对各种污染控制设备的废气进行采样。使用非特征化合物数据库确定每个控制设备排气的 VOC 源谱。将每月 167 种 VOC 的环境浓度分为季风数据集,以研究季风条件对科学园区 VOC 排放的影响。本研究还提出了一种在源-受体建模中确定最佳源谱的方法,并在西南和东北季风期间识别和分析了九个地点的环境 VOC 来源。结果表明,每个源的相对贡献与其控制设备效率之间存在直接关系。所提出的源-受体方法可以描述来自各种工厂的空气污染物的环境效应,并成功评估各种控制设备的效率。