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首页> 外文期刊>Egyptian journal of petroleum >Developing a free-fall reactor for rice straw fast pyrolysis to produce bio-products
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Developing a free-fall reactor for rice straw fast pyrolysis to produce bio-products

机译:开发用于水稻秸秆快速热解以生产生物产品的自由落体反应器

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Recently, the world energy demand is increasing due to the growing world population. Accordingly, many research works are directed toward the new resources of renewable energy in order to compensate the shortage in petroleum based products. The use of biomass as a source for renewable energy is of growing importance. One of the most problematic agriculture wastes in Egypt is rice straw which is generated in huge amounts over a limited harvesting period. In this study the main objective is to develop and design a new rice straw fast pyrolysis reactor that improves some inefficiencies in traditional reactors while maintaining high bio-oil yields. To accomplish this target, a laboratory scale plant with a free-fall reactor was designed to avoid lack of moving parts; Compared it with other plants, the designed under investigation plant has the advantage of simple design. Two basic principles were combined in the design of the free-fall reactor; the first principle dealt with the particle heating rate, while the second considered the particle’s free-fall velocity. Based on this developed and designed free-fall reactor, the fast pyrolysis process of rice straw was carried out at temperatures ranging from 450?°C to 700?°C. The obtained bio-products from this process are liquid bio-oil, bio char and non-condensable gases. The characterization and chemical composition of the bio-oil and non-condensable gases were determined, respectively. It was concluded that the above mentioned free-fall reactor can be used for producing useful bio-products from rice straw and sharing to solve the most problematic agriculture waste.
机译:最近,由于世界人口的增长,世界能源需求正在增加。因此,许多研究工作都针对可再生能源的新资源,以弥补石油基产品的短缺。使用生物质作为可再生能源的重要性越来越高。埃及最成问题的农业废料之一是稻草,稻草在有限的收获期内大量产生。在这项研究中,主要目标是开发和设计一种新型稻草快速热解反应器,该反应器可改善传统反应器中的一些效率低下的问题,同时保持高生物油产量。为了实现这一目标,设计了带有自由下落反应器的实验室规模的工厂,以避免缺少活动部件。与其他工厂相比,被设计工厂具有设计简单的优点。自由落体反应堆的设计结合了两个基本原理。第一个原理处理粒子的升温速率,第二个原理考虑粒子的自由下落速度。基于此开发和设计的自由落体反应器,稻草的快速热解过程在450°C至700°C的温度范围内进行。从该过程中获得的生物产物是液体生物油,生物炭和不可凝气体。分别确定了生物油和不凝性气体的特征和化学组成。结论是上述自由落体反应器可用于由稻草生产有用的生物产品,并用于解决最有问题的农业废物。

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