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Emissions from Premixed Combustion of Polystyrene

机译:聚苯乙烯预混燃烧的排放

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Pyrolysis of polystryrene (PS) followed by combustion was tested in a two-stage drop-tube furnace at steady-state steady-flow conditions. PS particles were pyrolyzed at 1000 ℃ in nitrogen, and subsequently, the pyrolyzate gases were mixed with oxygen-containing gases and were burned homogeneously at 900, 1000, or 1100 ℃. Nominally premixed combustion occurred at different equivalence ratios, depending on the feed rates of the polymer. The effluents of pyrolysis and combustion were analyzed for fixed gases (CO, CO_2, O_2), light hydrocarbons, PAH, and particulates. It was found that the yields of pyrolysis gas decreased with increasing polymer feed rate. CO_2 emissions peaked at an equivalence ratio near unity, while the CO emissions were significantly large only at fuel-rich equivalence ratios, φ > 1. The total light hydrocarbon and the PAH yields from combustion of the PS pyrolyzates increased with increasing equivalence ratio. The generated particulates were mostly in the ranges of 0-0.4 and 0.65-1.10 μm. Overall, PAH and soot emissions from the indirect burning of PS, i.e., the homogeneous combustion of the pyrolyzates, were an order of magnitude lower than corresponding emissions from direct burning of the solid polymer, as previously monitored in this laboratory using identical sampling and analytical techniques. Therefore, pyrolysis/gasification of PS followed by combustion is shown to be a credible method for low-emission waste-to-energy conversion.
机译:聚苯乙烯(PS)的热解,然后燃烧是在两段式滴管式炉中在稳态稳态流条件下进行测试的。将PS粒子在氮气中于1000℃热解,然后将热解气体与含氧气体混合,并在900、1000或1100℃均匀燃烧。根据聚合物的进料速率,在不同的当量比下发生名义上的预混燃烧。分析了热解和燃烧的流出物中的固定气体(CO,CO_2,O_2),轻烃,PAH和颗粒物。发现热解气体的产率随着聚合物进料速率的增加而降低。 CO_2排放在接近当量比时达到峰值,而仅当富燃料当量比φ> 1时,CO排放量才显着增加。PS热解产物燃烧时的总轻烃和PAH产量随当量比增加而增加。产生的颗粒大部分在0-0.4至0.65-1.10μm的范围内。总体而言,PS间接燃烧(即热解产物的均质燃烧)产生的PAH和烟尘排放量比固体聚合物直接燃烧产生的相应排放量低一个数量级,如之前在该实验室中使用相同的采样和分析方法进行监测技术。因此,PS的热解/气化然后燃烧被证明是用于低排放废物转化为能源的可靠方法。

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