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A sequential process for hydrogen production based on continuous HDPE fast pyrolysis and in-line steam reforming

机译:基于连续HDPE快速热解和在线蒸汽重整的连续制氢工艺

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A continuous process has been developed consisting in the flash pyrolysis (500 degrees C) of high density polyethylene (HDPE) in a conical spouted bed reactor (CSBR) followed by steam reforming in a fluidized bed reactor (Ni commercial catalyst). The effect reforming temperature in the 600-700 degrees C range, space time from 2.1 to 20.8 scat min g(HDPE)(-1) and steam/plastic ratio between 3 and 5 have on product yields and gas composition has been studied. The continuous pyrolysis-reforming process performs well, with no operational problems and attaining complete HDPE conversion. Under the optimum conditions, i.e., 700 degrees C, space time 16.7 g(cat) min g(HDPE)(-1) and steam/plastic of ratio 5, the H-2 yield was 92.5% of that corresponding to stoichometry, which accounts for a H-2 production of 38.1 g per 100 g of HDPE in the feed. (C) 2016 Elsevier B.V. All rights reserved.
机译:已开发出一种连续方法,包括在锥形喷头床反应器(CSBR)中对高密度聚乙烯(HDPE)进行快速热解(500摄氏度),然后在流化床反应器(Ni商业催化剂)中进行蒸汽重整。研究了600-700摄氏度范围内的重整温度,2.1至20.8 scat min g(HDPE)(-1)的时空以及3/5之间的蒸汽/塑料比对产品收率和气体组成的影响。连续的热解重整过程运行良好,没有操作问题,并且可以完成HDPE的完全转化。在最佳条件下,即700摄氏度,时空为16.7 g(cat)min g(HDPE)(-1),蒸汽/塑料的比例为5,H-2的产率为化学计量的92.5%,饲料中每100克HDPE的H-2产量为38.1克。 (C)2016 Elsevier B.V.保留所有权利。

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