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首页> 外文期刊>The Korean journal of chemical engineering >Effect of heating rate on pyrolysis of low-grade pyrolytic oil
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Effect of heating rate on pyrolysis of low-grade pyrolytic oil

机译:升温速率对低级热解油热解的影响

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The low-grade pyrolytic oil produced from pyrolysis of municipal plastic waste in a commercial rotary kiln reaction system cannot be an acceptable fuel oil due to its low quality. Thus, the degradation of pyrolytic oil was conducted in a bench scale batch reactor, which was done by two experiment conditions of high heating rate (about 7 °C/min) and low heating rate (1.5-3.6 °C/min) up to 420 ℃ of reaction temperature. The characteristics of raw pyrolytic oil were examined and also the characteristics of products obtained by different heating rates were compared. Raw pyrolytic oil had higher H/C ratio and higher heating value than commercial oils, and also its peak range in GC analysis showed wide distribution including all the range of gasoline, kerosene and diesel. In the upgrading of pyrolytic oil, cumulative amount profile of product oil, as a function of reaction time, was similar in shape to the degradation temperature profile. All product oils obtained by different degradation temperature had higher H/C ratio and slightly higher heating value than those of raw pyrolytic oil. Also, the characteristics of product oils were influenced by heating rate and reaction temperature.
机译:在工业回转窑反应系统中,由城市塑料废物的热解产生的低级热解油由于其质量低而不能作为可接受的燃料油。因此,热解油的降解是在台式间歇式反应器中进行的,这是通过高加热速率(约7°C / min)和低加热速率(1.5-3.6°C / min)至最高反应温度为420℃。检查了原料热解油的特性,并比较了不同加热速率得到的产品的特性。原料热解油具有比商业用油更高的H / C比和更高的发热量,并且其气相色谱分析的峰范围显示出广泛的分布,包括所有范围的汽油,煤油和柴油。在热解油的提质中,作为反应时间函数的产物油的累积量曲线在形状上与降解温度曲线相似。通过不同的降解温度获得的所有成品油均具有比原料热解油更高的H / C比和稍高的发热量。而且,产物油的特性受加热速率和反应温度的影响。

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