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Catalytic Fast Pyrolysis of Biomass Impregnated with Potassium Phosphate in a Hydrogen Atmosphere for the Production of Phenol and Activated Carbon

机译:氢气氛中浸渍有磷酸钾的生物质的催化快速热解用于生产苯酚和活性炭

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摘要

A new technique was proposed to co-produce phenol and activated carbon (AC) from catalytic fast pyrolysis of biomass impregnated with K3PO4 in a hydrogen atmosphere, followed by activation of the pyrolytic solid residues. Lab-scale catalytic fast pyrolysis experiments were performed to quantitatively determine the pyrolytic product distribution, as well as to investigate the effects of several factors on the phenol production, including pyrolysis atmosphere, catalyst type, biomass type, catalytic pyrolysis temperature, and catalyst impregnation content. In addition, the pyrolytic solid residues were activated to prepare ACs with high specific surface areas. The results indicated that phenol could be obtained due to the synergistic effects of K3PO4 and hydrogen atmosphere, with the yield and selectivity reaching 5.3 wt% and 17.8% from catalytic fast pyrolysis of poplar wood with 8 wt% K3PO4 at 550°C in a hydrogen atmosphere. This technique was adaptable to different woody materials for phenol production. Moreover, gas product generated from the pyrolysis process was feasible to be recycled to provide the hydrogen atmosphere, instead of extra hydrogen supply. In addition, the pyrolytic solid residue was suitable for AC preparation, using CO2 activation method, the specific surface area was as high as 1,605 m2/g.
机译:提出了一种新技术,该技术可以通过在氢气氛围中对K3PO4浸渍的生物质进行催化快速热解来共同生产苯酚和活性炭(AC),然后活化热解固体残留物。进行了实验室规模的催化快速热解实验,以定量确定热解产物的分布,并研究了多种因素对苯酚生产的影响,包括热解气氛,催化剂类型,生物质类型,催化热解温度和催化剂浸渍量。另外,将热解固体残余物活化以制备具有高比表面积的AC。结果表明,由于K3PO4与氢气气氛的协同作用,可以得到苯酚,在550°C的氢气中,由8wt%的K3PO4催化快速热解杨木的产率和选择性分别达到5.3 wt%和17.8%。大气层。该技术适用于生产苯酚的各种木质材料。而且,由热解过程产生的气体产物可以再循环以提供氢气气氛,而不是额外的氢气供应。另外,该热解固体残渣适合于AC制备,采用CO 2活化法,比表面积高达1605m 2 / g。

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