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EVALUATION OF THE LEVEL OF GASEOUS FUEL-BOUND SULFUR ON FINE PARTICULATE EMISSION FROM A LOW EMISSION GAS TURBINE ENGINE

机译:低排放燃气轮机微细颗粒物排放中气态硫含量的评估

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The present work investigates the effect of natural gas fuel sulfur on particulate emissions from stationary gas turbine engines used for electricity generation. Fuel sulfur from standard line gas was scrubbed using a system of fluidized reactor beds containing a specially designed activated carbon purposely built for sulfur absorption. A sulfur injection system using sonic orifices was designed and constructed to inject methyl mercaptan into the scrubbed gas stream at varying concentrations. Using these systems, particulate emissions created by various fuel sulfur levels between 0 and 15 ppmv were investigated. Particulate samples were collected from a Capstone C65 microturbine generator system using a Horiba MDLT-1302TA micro dilution tunnel and analyzed using a Horiba MEXA-1370PM particulate analyzer. In addition, ambient air samples were collected to determine incoming particulate levels in the combustion air. The Capstone C65 engine air filter was also tested for particulate removal efficiency by sampling downstream of the filter. To further differentiate the particulate entering the engine in the combustion air from particulate being emitted from the exhaust stack, two high efficiency HEPA filters were installed to eliminate a large portion of incoming particulate. Variable fuel sulfur testing showed that there was a strong correlation between total particulate emission factor and fuel sulfur concentration. Using eleven variable sulfur tests, it was determined that an increase of 1 ppmv fuel sulfur will produce an increase of approximately 2.8 μg/m~3 total particulate. Also, the correlation predicted that, for this particular engine, the total particulate emission factor for zero fuel sulfur was approximately 19.1 μg/m~3. With the EC and OC data removed, the correlation became 2.5 μg/m~3 of sulfur particulate produced for each ppmv of fuel sulfur. The correlation also predicted that with no fuel sulfur present, 7.8 μg/m~3 of particulate will be produced by sulfur passing through the engine air filter.
机译:本工作调查了天然气燃料硫对用于发电的固定式燃气轮机的颗粒物排放的影响。使用包含专门设计用于硫吸收的活性炭的流化反应器床系统洗涤标准管线气中的燃料硫。设计并构造了使用音孔的硫注入系统,以将甲基硫醇以不同的浓度注入洗涤后的气流中。使用这些系统,研究了由0至15 ppmv之间的各种燃料硫含量产生的颗粒物排放。使用Horiba MDLT-1302TA微稀释隧道从Capstone C65微型涡轮发电机系统中收集颗粒样品,并使用Horiba MEXA-1370PM颗粒分析仪进行分析。另外,收集环境空气样品以确定燃烧空气中进入的微粒水平。 Capstone C65发动机空气滤清器还通过在滤清器下游采样来测试微粒去除效率。为了进一步区分燃烧空气中进入发动机的颗粒物和从排气烟囱排放的颗粒物,安装了两个高效HEPA过滤器以消除大部分进入的颗粒物。可变燃料硫测试表明,总颗粒物排放因子与燃料硫浓度之间存在很强的相关性。使用十一个可变的硫测试,可以确定增加1 ppmv的燃料硫将增加大约2.8μg/ m〜3的总颗粒。同样,相关性预测,对于该特定发动机,零燃料硫的总颗粒物排放因子约为19.1μg/ m〜3。去除EC和OC数据后,对于每ppmv的燃料硫,相关性变为2.5μg/ m〜3的硫颗粒。相关性还预测,在不存在燃料硫的情况下,硫通过发动机空气滤清器将产生7.8μg/ m〜3的颗粒。

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