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Lessons Learned from Fenceline Monitoring at an Integrated Olefins Facility in Jefferson County, Texas

机译:从德克萨斯州杰斐逊县的综合烯烃工厂中从Fenceline监测中了解到的经验教训

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A Photochemical Assessment Monitoring System (PAMS) has been in operation at an integrated Olefins Manufacturing facility in Jefferson County, Texas since 2004. This system was installed as a Supplemental Environmental Project (SEP) in accordance with an Agreed Final Judgment with the Texas Commission on Environmental Quality (formerly the Texas Natural Resource Conservation Commission). The two monitoring stations incorporate meteorological instruments along with Gas Chromatographic (GC) analyzers and are capable of measuring seven chemical compounds in the ambient air at the site's property boundaries. Prior to the installation of the real time PAMS GCA monitors, a Summa Canister sampling system had been in operation since 1997 and continues to operate as a supplement to this system. When designing a fenceline monitoring project, several factors should be considered to ensure cost effective, reasonable, and accurate measurements of the ambient air are achieved. Compounds to be monitored should be based on the predominant chemicals encountered in the facility's manufacturing process. In order to ensure an adequate, reliable system is installed, the design should be robust to meet demanding environmental conditions required for field monitoring equipment. Remote access via the Internet for troubleshooting and problem solving, as well as transmission of data to a remote location, will provide optimum, accurate data collection with the most efficient use of resources. Operation of the system should not only include the sampling and collection of data, but also frequent calibration of the equipment and regular audits of the program. Operating issues such as electrical power outages, ancillary equipment failures, leaks in the sampling and analyzing equipment, failure of gas chromatograph components, computer hardware and software failures, communication interface interruptions, and adverse weather conditions are challenges to be encountered. Efficient problem solving and troubleshooting is paramount to maintaining these systems, and is dependent on the expertise of the managing personnel.
机译:自2004年以来,一家光化学评估监测系统(PAMS)一直在德克萨斯州杰斐逊县的一体化烯烃制造工厂运营。该系统按照与德克萨斯州委员会的商定的最终判决书(SEP)作为补充环境项目安装环境质量(以前德克萨斯自然资源保护委员会)。这两个监测站包括气象仪器以及气相色谱(GC)分析仪,并且能够在该场地的物业边界处测量环境空气中的七种化学化合物。在安装实时PAMS GCA监视器之前,自1997年以来一直在运行的Summa Canister采样系统,并继续作为该系统的补充。在设计FenceLine监测项目时,应考虑有几种因素,以确保实现的经济效益,合理,准确地测量环境空气。要监测的化合物应基于设施制造过程中遇到的主要化学品。为了确保安装了足够,可靠的系统,设计应坚固,以满足现场监测设备所需的要求环境条件。通过Internet进行故障排除和问题解决的远程访问,以及数据传输到远程位置,将提供最佳的准确数据收集,具有最有效的资源使用。系统的操作不仅应包括采样和数据集合,还要频繁校准设备和程序的定期审核。诸如电源停电,辅助设备故障,采样设备泄漏等运行问题,气相色谱仪组件的失效,计算机硬件和软件故障,通信接口中断和恶劣天气条件是遇到的挑战。有效的问题解决和故障排除对于维护这些系统至关重要,并取决于管理人员的专业知识。

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