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Sustainable production of value-added products from fast pyrolysis of palm shell residue in tandem micro-reactor and pilot plant

机译:通过串联微反应器和中试装置中棕榈壳残留物的快速热解,可持续生产增值产品

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The objective of this research is to develop and utilize bio-oil collected from palm shell through optimization of pyrolysis conditions and quantitative chemical characterization. To recover maximum value-added chemicals, the fast pyrolysis of palm shell was conducted in a tandem micro-reactor followed by the generation of bio-oil in a fluidized bed pilot plant. The experimental results from tandem micro-reactor showed that the high yield of value-added products such as anhydrosugars (levoglucosan, cellobiosan), and aromatics (phenols, guaicol) was obtained at a temperature of 500 degrees C and particle size of 600 gm. The higher temperatures favoured the production of carboxylic acids (acetic acids, propionic acid) and furans (hydroxymethyl furfural, furfural) accompanied by a reduction of aromatics from 6.5 wt % to 3.6 wt%. The maximum bio-oil yield obtained was approximately 60 wt% for a feeding rate of 100 g/h, particle size of 600 gm and temperature of 500 degrees C in the pilot plant. A GC-MS chromatography connected to the system indicated that the pyrolytic gas was predominantly composed of CO2. The experimental results and the subsequent physicochemical characteristics confirmed that the palm residue has the potential to be a good feedstock for pyrolysis process to produce biochemicals or biofuels. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是通过优化热解条件和定量化学表征来开发和利用从棕榈壳中收集的生物油。为了回收最大附加值的化学品,在串联微型反应器中对棕榈壳进行快速热解,然后在流化床中试装置中生成生物油。串联微反应器的实验结果表明,在500℃的温度和600 gm的粒径下可获得高产值的高附加值产品,例如脱水糖(左旋葡聚糖,纤维二胺)和芳香族化合物(苯酚,愈创木酚)。较高的温度有利于羧酸(乙酸,丙酸)和呋喃(羟甲基糠醛,糠醛)的生产,同时芳族化合物从6.5重量%降低至3.6重量%。在试验工厂中,对于100 g / h的进料速度,600 gm的粒径和500摄氏度的温度,获得的最大生物油产率约为60 wt%。连接到系统的GC-MS色谱表明,热解气体主要由CO2组成。实验结果和随后的理化特性证实,棕榈渣有潜力成为热解过程中生产生物化学品或生物燃料的良好原料。 (C)2019 Elsevier Ltd.保留所有权利。

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