窄馏分复合锅炉燃料的性能

K. Shevchenko, A. Grigorov, I. Sinkevich
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引用次数: 0

摘要

为了提高锅炉燃料的性能,特别是粘度-温度,建议将其与二次聚合物原料(低压聚乙烯和聚丙烯)热破坏所得的窄燃料馏分结合使用。当100级燃料油与窄馏分混合时,密度值降至865 (873)kg / m3,条件粘度降至2.50(2.63)度。,倾点可达8(13)℃),硫含量可达0.17 wt%。下燃烧热增加到43606 (43850)kJ / kg。同时,闪点值逐渐降低到114(127)℃。这种减少是一个负点,它导致燃料油在其使用,储存,泵送和运输过程中的防火安全性增加。然而,闪点的值,根据法规文件的要求,在可接受的范围内。也就是说,该指标值可以限定燃料油在狭窄燃油馏分中的含量。确定了100级燃料油组成中窄馏分的合理浓度为质量的30%以内。闪点值是燃料油在使用、储存、泵送和运输过程中火灾危险的一个指标,在提高燃料油的其他性能特性的背景下,在这些限制范围内有允许的降低。拟议的复合锅炉燃料的生产一方面可以通过在生产过程中涉及二次聚合物原料-必须强制处置的固体废物-来扩大该工艺的原料基础,另一方面可以通过增加其产量来满足对锅炉燃料的现有需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PROPERTIES OF BOILER FUEL COMPOUNDED BY NARROW FUEL FRACTIONS
In order to improve the performance properties, in particular viscosity-temperature, of boiler fuel, it is proposed to combine them with narrow fuel fractions obtained by thermal destruction of secondary polymer raw materials (low pressure polyethylene and polypropylene). When compounding grade 100 fuel oil with narrow fuel fractions, the values ​​of density are reduced to 865 (873) kg / m3, conditional viscosity to 2.50 (2.63) deg. um., pour point up to 8 (13) °C), sulfur content up to 0.17 wt%. and the lower heat of combustion increases to 43606 (43850) kJ / kg. At the same time, there is a gradual decrease in the value of the flash point to 114 (127) °C. This reduction is a negative point, which leads to increased fire safety of fuel oil during its use, storage, pumping and transport. However, the values of the flash point, according to the requirements of regulatory documentation, are within acceptable limits. That is, the value of this indicator can limit the content of fuel oil in narrow fuel fractions. It is determined that the rational concentration of narrow fuel fractions in the composition of fuel oil grade 100, is within 30% of the mass. Within these limits, there is a permissible decrease in flash point values – an indicator that characterizes the fire hazard of fuel oil during its use, storage, pumping and transportation against the background of improving other performance properties of fuel oil. The production of the proposed compound boiler fuel on the one hand allows to expand the raw material base of the process by involving in the production process secondary polymer raw materials – solid waste subject to mandatory disposal, on the other – to meet existing demand for boiler fuel by increasing its production.
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