首页> 外文会议>ASME turbo expo >A COST EFFECTIVE ADVANCED EMISSIONS MONITORING SOLUTION FOR GAS TURBINES - STATISTICAL HYBRID PREDICTIVE SYSTEM THAT ACCURATELY MEASURES NITROGEN OXIDES, CARBON MONOXIDE, SULFUR DIOXIDE, HYDROCARBON AND CARBON DIOXIDE MASS EMISSION RATES
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A COST EFFECTIVE ADVANCED EMISSIONS MONITORING SOLUTION FOR GAS TURBINES - STATISTICAL HYBRID PREDICTIVE SYSTEM THAT ACCURATELY MEASURES NITROGEN OXIDES, CARBON MONOXIDE, SULFUR DIOXIDE, HYDROCARBON AND CARBON DIOXIDE MASS EMISSION RATES

机译:成本高效的燃气轮机排放监控解决方案-统计混合预测系统,可精确测量氮氧化物,一氧化碳,二氧化硫,碳氢化合物和二氧化碳的排放量

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U.S. Federal regulations under Title IV of the Clean Air Act Amendments promulgated in 1990 require continuous monitoring of nitrogen oxides (NO_x) and carbon dioxide emissions from large gas turbines. Local, regional, or State authorities may mandate continuous monitoring for carbon monoxide, sulfur dioxide, volatile organic compounds, and other specific pollutant parameters. U.S. regulations that require continuous emissions monitoring systems (CEMS) also allow for the use of predictive approaches as an alternative providing the installed predictive emissions monitoring system (PEMS) meets rigorous performance specification criteria and the site performs ongoing quality assurance tasks such as periodic audits with portable analyzers and annual accuracy testing. A statistical hybrid predictive emission monitoring system (PEMS) has been deployed at numerous sites in the United States to meet EPA requirements for continuous monitoring of gas turbine pollutant emissions. This paper discusses specific implementations of a unique cost-effective statistical hybrid PEMS on various classes of gas turbines ranging in size from 60kW to 180 MW, both gas-fired and liquid-fired units, in simple cycle and combined cycle mode of operation. The turbines were equipped with a variety of NO_x control strategies including dry low NO_x, steam and water injection, solid post-combustion catalyst, SoLoNO_x™ and selective catalytic reduction. In each instance the predictive engine operated on training data of at least three days and up to ninety days as required to develop a robust empirical model of the emissions. Each model was subsequently evaluated using standard U.S. EPA performance specification test methods. The results of PEMS performance testing on these gas turbines are presented along with additional information regarding the quality assurance and quality control procedures put in place and the costs to support the ongoing operation of the deployed compliance statistical hybrid PEMS.
机译:根据1990年颁布的《清洁空气法修正案》第IV篇的美国联邦法规要求对大型燃气轮机的氮氧化物(NO_x)和二氧化碳排放进行连续监测。地方,地区或州政府可能要求对一氧化碳,二氧化硫,挥发性有机化合物和其他特定污染物参数进行连续监测。要求连续排放监测系统(CEMS)的美国法规还允许使用预测方法作为替代方案,前提是已安装的预测排放监测系统(PEMS)符合严格的性能规范标准,并且现场执行持续的质量保证任务,例如定期审核便携式分析仪和年度准确性测试。统计混合预测排放监测系统(PEMS)已在美国众多站点部署,以满足EPA对燃气轮机污染物排放进行连续监测的要求。本文讨论了独特的,具有成本效益的统计混合式PEMS在燃气轮机和液体轮机的大小从60kW到180 MW的各种类型的燃气轮机上以简单循环和联合循环运行模式的具体实施方式。涡轮机配备了多种NO_x控制策略,包括干式低NO_x,蒸汽和水喷射,固体后燃催化剂,SoLoNO_x™和选择性催化还原。在每种情况下,预测引擎都需要根据至少三天到九十天的训练数据进行操作,以建立可靠的排放经验模型。随后使用标准的美国EPA性能规格测试方法对每个模型进行评估。将介绍在这些燃气轮机上进行的PEMS性能测试的结果,以及有关已实施的质量保证和质量控制程序以及支持已部署合规性统计混合PEMS的持续运行的成本的其他信息。

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    《ASME turbo expo》|2008年|267-276|共10页
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    Brian Swanson;

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  • 入库时间 2022-08-26 14:57:45

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