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首页> 外文期刊>Energy sources. Part A, Recovery, utilization, and environmental effects >Mechanisms of Thermochemical Biomass Conversion Processes. Part 1: Reactions of Pyrolysis
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Mechanisms of Thermochemical Biomass Conversion Processes. Part 1: Reactions of Pyrolysis

机译:热化学生物质转化过程的机理。第1部分:热解反应

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摘要

The present work is a study on the pyrolysis mechanisms of biomass structural constituents. Biomass resources include wood and wood wastes, agricultural crops and their waste byproducts, municipal solid waste, animal wastes, waste from food processing, and aquatic plants and algae. The major organic components of biomass can be classified as cellulose, hemicelluloses, and lignin. The pyrolysis.is thermal degradation of biomass by heat in the absence of oxygen, which results in the production of charcoal (solid), bio-oil (liquid), and fuel gas products. Thermal degradation of cellulose proceeds through two types of reaction: a gradual degradation, decomposition, and charring on heating at lower temperatures; and a rapid volatilization accompanied by the formation of levoglucosan on pyrolysis at higher temperatures. The hemicelluloses reacted more readily than cellulose during heating. Of the hemicelluloses, xylan is the least thermally stable, because pentosans are most susceptible to hydrolysis and dehydration reactions. Dehydration reactions around 473 K are primarily responsible for thermal degradation of lignin. Between 423 K and 573 K, cleavage of α- and β-aryl-alkyl-ether linkages occurs. Around 573 K, aliphatic side chains start splitting off from the aromatic ring.
机译:目前的工作是对生物质结构成分的热解机理的研究。生物质资源包括木材和木材废物,农作物及其废物副产品,城市固体废物,动物废物,食品加工产生的废物以及水生植物和藻类。生物质的主要有机成分可分为纤维素,半纤维素和木质素。热解是在不存在氧气的情况下通过热量对生物质进行热降解,从而导致生成木炭(固体),生物油(液体)和燃气产品。纤维素的热降解通过两种类型的反应进行:逐渐降解,分解和在较低温度下加热时炭化;在较高温度下热解时会迅速挥发,并形成左旋葡聚糖。在加热期间,半纤维素比纤维素更容易反应。在半纤维素中,木聚糖的热稳定性最低,因为戊聚糖最容易发生水解和脱水反应。约473 K的脱水反应是木质素热降解的主要原因。在423 K和573 K之间,发生α-和β-芳基-烷基-醚键的裂解。大约573 K,脂族侧链开始从芳环上分开。

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