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Pyrolysis and combustion kinetics and emissions of waste lube oils

机译:废润​​滑油的热解和燃烧动力学及排放

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The present work studies first the kinetics of the global primary thermal decomposition of raw waste lubricant oils in helium atmosphere conditions and with different proportions of helium:oxygen by TGA. In addition, pyrolysis and partial oxidation runs were carried out in a tubular reactor at 723 and 1123 K, where the volatiles and semivolatiles evolved were quantified by gas chromatography. TGA analysis shows nearly no difference between helium and helium-oxygen atmosphere, yielding no appreciable residue. Primary decomposition, which takes place between 450 and 700 K, can be modeled with two different processes: the main one (92.6% of the initial material) is an evaporation of the motor oil (with apparent zero order and a kinetic constant dependent on the mass and heating rate) and a small contribution of a typical solid carbonoceous pyrolysis. In the tubular reactor, gases evolved in pyrolysis at 773 K corroborate TG findings that the process is mainly an evaporation, with little changes with respect to the original chemical structure of the oil. Nevertheless, the gas composition changes completely in the presence of air, where the partial oxidation in the gas phase after evaporation yields lower chain paraffins and olefines. Gas evolution at 1123 K is completely different, yielding showing typical cracked flue gas composition: light gases with abundant olefins and poly-condensed aromatics.
机译:本工作首先研究了粗制废润滑油在氦气气氛条件下以及不同比例的氦气:氧气的情况下通过TGA进行的全局一次热分解的动力学。此外,在管式反应器中于723和1123 K进行热解和部分氧化,其中通过气相色谱法定量析出的挥发物和半挥发物。 TGA分析表明,氦气和氦氧气氛之间几乎没有差异,没有产生明显的残留物。一次分解发生在450至700 K之间,可以用两种不同的过程进行建模:主要的一次分解(占初始材料的92.6%)是机油的蒸发(表观零级,其动力学常数取决于汽化率)。质量和加热速率)和典型的固体碳热解的贡献很小。在管式反应器中,在773 K的热解中放出的气体证实了TG的发现,该过程主要是蒸发,相对于油的原始化学结构几乎没有变化。然而,气体成分在空气存在下会完全改变,在蒸发后气相中的部分氧化会生成较低链的链烷烃和烯烃。 1123 K处的气体逸出完全不同,产生的裂化烟气具有典型的组成:轻质气体,含丰富的烯烃和缩聚的芳烃。

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