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Effect of Biomass Types on Bio-oil Characteristics in a Catalytic Fast Pyrolysis Process with a Ni/ZSM-5 Catalyst

机译:Ni / ZSM-5催化剂催化快速热解过程中生物质类型对生物油特性的影响

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The application of bio-oil for biofuel has been limited due to its low heating value, high acidity and high oxygenate content. Pursuant to the urgency of obtaining access to sustainable energy from renewable resources, the studies for bio-oil upgrading have been recently placed in high priority. This study is aimed at identifying the effect of biomass types on bio-oil product characteristics. The conversion of several types of biomass, i.e. rice straw, rubberwood (Hevea brasiliensis), and palm Empty Fruit Bunches (EFB) to bio-oil by-products was investigated in a Catalytic Fast Pyrolysis (CFP) reactor using a Ni/ZSM-5 nickel nitrate and zeolite catalyst at 550oC and at atmospheric pressure. The results show that Ni/ZSM-5 catalyst has actively enhanced the de-oxygenation reaction process and aromatic production. The composition of aromatic compounds in bio-oil from rubberwood, rice straw, and EFB are 10.25 wt%, 7.8 wt%, and 5.98 wt%, respectively. In the absence of a catalyst, bio-oil from rice straw contains no aromatics.
机译:由于生物油的低热值,高酸度和高含氧量,其在生物燃料中的应用受到了限制。由于迫切需要从可再生资源中获取可持续能源,因此生物油提质的研究近来受到高度重视。这项研究旨在确定生物质类型对生物油产品特性的影响。在Ni / ZSM-催化快速热解(CFP)反应器中研究了稻草,橡胶木(巴西橡胶树)和棕榈空果束(EFB)等几种生物质向生物油副产物的转化。 5在550oC和大气压下的硝酸镍和沸石催化剂。结果表明,Ni / ZSM-5催化剂有效地促进了脱氧反应过程和芳烃的产生。来自橡胶木,稻草和EFB的生物油中的芳香族化合物组成分别为10.25 wt%,7.8 wt%和5.98 wt%。在没有催化剂的情况下,稻草产生的生物油不含芳烃。

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