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Syngas production from residual biomass of forestry and cereal plantations using hybrid filtration combustion

机译:利用混合过滤燃烧从林业和谷物种植园的残留生物质生产合成气

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This work shows and discusses the experimental results obtained from hybrid filtration combustion using biomass pellets originating from cereal plantations and forestry industry, which are some of the most common residual biomass sources in Chile. The biomass is made from oat cane, wheat cane, shining gum (Eucalyptus nitens) and insignis pine (Pinus radiata). The experiments were carried out using a porous media reactor filled with biomass pellets and alumina spheres in equal volumetric quantity. The gasifying agents used were a natural gas air mixture (equivalence ratio: Phi = 1.1) and an air-steam flow, in which the steam content varied from 20 to 40% of the initial air flow, changing filtration velocity from 26.1 to 31.3 and 36.5 cm/s, respectively. Using natural gas, temperature increased only using insignis pine while the usage of cereal plantation residuals enhanced syngas production. Maximum syngas production was achieved using wheat cane, obtaining 50% more H-2 and 97% more CO than the base line. Using steam, temperature of combustion was slightly influenced by a steam presence increase. Also, H-2 production was only enhanced when using wheat cane and insignis pine, while CO production was lower than the base line in every case. Maximum H-2 and CO production were obtained by the base line of shining gum, showing that the presence of steam disfavors syngas production in most cases. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项工作显示并讨论了使用谷物种植园和林业生产的生物质颗粒通过混合过滤燃烧获得的实验结果,这些颗粒是智利最常见的残留生物质来源。生物质由燕麦,藤条,光亮的口香糖(尤加利树)和徽章松(Pinus radiata)制成。使用填充有等体积量的生物质颗粒和氧化铝球的多孔介质反应器进行实验。使用的气化剂是天然气空气混合物(当量比:Phi = 1.1)和空气-蒸汽流,其中蒸汽含量从初始空气流的20%变为40%,过滤速度从26.1改变为31.3,分别为36.5厘米/秒。使用天然气,仅使用徽章松提高温度,而使用谷物种植园残留物则提高了合成气的产量。使用小麦手杖可实现最大的合成气产量,比基准线多获得50%的H-2和97%的CO。使用蒸汽,燃烧温度受到蒸汽存在量增加的轻微影响。此外,仅在使用小麦藤和徽章松的情况下,H-2的产量会增加,而在每种情况下,CO的产量均低于基线。通过光亮胶的基线获得最大的H-2和CO产量,表明在大多数情况下,蒸汽的存在不利于合成气的生产。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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