首页> 外文会议>ISPRS Technical Commission VIII Mid-Term Symposium >Design of Laser Based Monitoring Systems for Compliance Management of Odorous and Hazardous Air Pollutants in Selected Chemical Industrial Estates at Hyderabad, India
【24h】

Design of Laser Based Monitoring Systems for Compliance Management of Odorous and Hazardous Air Pollutants in Selected Chemical Industrial Estates at Hyderabad, India

机译:印度特化化学工业屋宇中食品和危险空气污染物依从性管理的基于激光监测系统的设计

获取原文

摘要

Industrialization can no longer sustain without internalization of the concerns of the receiving environment and land-use. Increased awareness and public pressure, coupled with regulatory instruments and bodies exert constant pressure on industries to control their emissions to a level acceptable to the receiving environment. However, when a group of industries come-up together as an industrial estate, the cumulative impacts of all the industries together often challenges the expected/desired quality of receiving environment, requiring stringent pollution control and monitoring measures. Laser remote sensing techniques provide powerful tools for environmental monitoring. These methods provide range resolved measurements of concentrations of various gaseous pollutants and suspended particulate matter (SPM) not only in the path of the beam but over the entire area. A three dimensional mapping of the pollutants and their dispersal can be estimated using the laser remote sensing methods on a continuous basis. Laser Radar (Lidar) systems are the measurements technology used in the laser remote sensing methods. Differential absorption lidar (DIAL) and Raman Lidar technologies have proved to be very useful for remote sensing of air pollutants. DIAL and Raman lidar systems can be applied for range resolved measurements of molecules like SO2, NO2, O3 Hg, CO, C2H4, H2O, CH4, hydrocarbons etc. in real time on a continuous basis. This paper describes the design details of the DAIL and Raman lidar techniques for measurement of various hazardous air pollutants which are being released into the atmosphere by the chemical industries operating in the Bachupally industrial Estate area at Hyderabad, India. The relative merits of the two techniques have been studied and the minimum concentration of pollutants that can be measured using these systems are presented. A dispersion model of the air pollutants in the selected chemical industrial estates at Hyderabad has been developed.
机译:工业化不再在没有接收环境和土地利用的内容的情况下维持。提高意识和公共压力,加上监管仪器和机构对行业施加不断压力,以控制其对接收环境可接受的水平的排放。然而,当一群行业作为工业庄园,所有行业的累计影响往往挑战接受环境的预期/所需质量,需要严格的污染控制和监测措施。激光遥感技术为环境监测提供了强大的工具。这些方法不仅提供了各种气态污染物和悬浮颗粒物质(SPM)的浓度的范围分辨率测量,而不是在梁的路径中,而是在整个区域上。可以连续使用激光遥感方法估计污染物及其分散的三维映射。激光雷达(LIDAR)系统是激光遥感方法中使用的测量技术。差分吸收激光雷达(拨号)和拉曼LIDAR技术已经证明对空气污染物的遥感非常有用。表盘和拉曼LIDAR系统可在连续的基础上实时应用于SO2,NO2,O3 HG,CO,C2H4,H 2 O,CO,烃等的分子分辨率测量。本文介绍了Dail和拉曼激光雷达技术的设计细节,用于测量各种危险空气污染物,这些危险空气污染物由在印度海德拉巴的Bachplupaly Industration地区的化学工业中被释放到大气中。已经研究了两种技术的相对优点,并且提出了可以使用这些系统测量的污染物的最小浓度。开发了一种海德拉巴所选化学工业屋恏的空气污染物的分散模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号