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An investigation on polycyclic aromatic hydrocarbon emissions from pulverized coal combustion systems

机译:煤粉燃烧系统中多环芳烃排放的研究

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Results from a series of tests conducted to study the emission of polynuclear or polycyclic aromatic hydrocarbons (PAHs) from bench-scale and small industrial, water-tube boiler are discussed. A Middle Kittanning, and Upper Freeport seam coals were used in the study. Samples were extracted from the reactor outlet and from the inlet and outlet sides of the research boiler's (RB) baghouse using EPA promulgated methods. Only acenaphthene and fluoranthene were detected in down-fired combustor (DFC) samples. In addition to these two, naphthalene was detected in the RB samples. Emission factors ranged from 80 to 320 μg/kg of fuel fired. Although there were minor trends in the emissions' data, given the reproducibility limits for PAH compounds, no significant differences were found in the emissions with respect to the fuel type or form (pulverized coal (PC) vs. coal-water slurry fuel (CWSF), and raw vs. cleaned coal) and firing conditions (high and low excess air). The PAH emissions showed a decrease with increase in the firing rate. A bench-scale drop-tube reactor (DTR) was used to study the effects of temperature and residence time on PAH formation. The results revealed near constant PAH concentrations in the solid-phase samples, while the PAH concentrations in the vapor-phase samples increased as a function of temperature. At a temperature of around l300deg.C, the rate of PAH formation was exceeded by the rate of PAH oxidation, and PAH concentrations in the vapor phase began to decrease.
机译:讨论了一系列用于研究台式和小型工业水管锅炉排放多核或多环芳烃(PAH)的测试结果。该研究使用了中肯坦宁和上弗里波特煤层煤。使用EPA颁布的方法从反应堆出口以及研究锅炉(RB)袋滤室的入口和出口侧提取样品。在向下燃烧的燃烧器(DFC)样品中仅检测到ena和荧蒽。除上述两种外,在RB样品中还检出了萘。排放因子的范围是从80到320μg/ kg燃烧的燃料。尽管排放量数据的趋势很小,但考虑到PAH化合物的再现性限制,在排放量方面,在燃料类型或形式(粉煤(PC)与水煤浆燃料(CWSF))方面未发现显着差异),生煤与清洁煤)和燃烧条件(过量空气的高低)。 PAH排放随着燃烧速率的增加而降低。使用台式规模的滴管反应器(DTR)研究温度和停留时间对PAH形成的影响。结果表明,固相样品中的PAH浓度接近恒定,而气相样品中的PAH浓度则随温度的升高而增加。在大约1300℃的温度下,PAH的氧化速率超过了PAH的形成速率,并且气相中的PAH浓度开始降低。

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