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首页> 外文期刊>Fuel Processing Technology >Fate of sodium and chlorine during the co-hydrothermal carbonization of high-alkali coal and polyvinyl chloride
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Fate of sodium and chlorine during the co-hydrothermal carbonization of high-alkali coal and polyvinyl chloride

机译:高碱煤和聚氯乙烯加氢碳化期间钠和氯的命运

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This paper offered a synthetic co-hydrothermal carbonization (co-HTC) process to remove the sodium and chloride from high-alkali coal and polyvinyl chloride (PVC) to address the issue of contamination caused by high-alkali coal and chlorinated wastes. This work examined the effect of the mass ratio of PVC to coal (R-p/c) ranging from 0 to 0.20 (g/g) and the co-HTC temperature ranging from 225 to 300 degrees C on the dechlorination efficiency (DE), the sodium removal efficiency (RE), and the higher heating value (HHV) of hydrochar. Both of the temperature and R-p/c have noteworthy effect on the improvement of DE and RE in the co-HTC process. In this process, the temperature and R-p/c have significant effect on the morphology of hydrochar. Cracks on the surface of hydrochar became more visible with the increase of R-p/c, which could benefit to remove sodium ions from coal matrix. The co-HTC process was conducive to the improvement of HHV. The co-HTC process is cost-effective because sodium and chloride were removed from raw materials simultaneously without chemical additives. Thus, this work presents an innovative insight into the technological development of waste-to-energy and high-alkali-coal cleaner production.
机译:本文提供了合成的加氢热碳化(CO-HTC)方法,用于从高碱煤和聚氯乙烯(PVC)中除去钠和氯化物,以解决由高碱碱煤和氯化废物引起的污染问题。该工作检测了PVC与煤(RP / C)的质量比为0-0-0-0(g / g)的影响,并且在脱氯效率(de)上的225℃至300℃的共hTC温度范围为0.20(g / g),钠去除效率(RE),以及氢乙酸的较高的加热值(HHV)。两种温度和R-P / C都对CO-HTC工艺中的DE和RE的改善具有值得注意的影响。在该方法中,温度和R-P / C对水炭的形态有显着影响。随着R-P / C的增加,氢乙酸表面的裂缝变得更加明显,这可能有利于从煤基质中除去钠离子。 CO-HTC过程有利于HHV的改善。共同HTC工艺具有成本效益,因为没有化学添加剂,同时从原料中除去钠和氯。因此,这项工作提出了一种创新的洞察力,对废物到能量和高碱 - 煤净化器生产的技术发展。

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