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Pyrolysis of whole wood chips and rods in a novel ablative reactor

机译:新型烧蚀反应器中全木片和棒的热解

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The ability to carry out pyrolysis, of entire wood chips and rods instead of small particles would be of great value for mobile pyrolysis units, because of the large possible savings in grinding costs (7-9% of total process costs). With this goal in mind, we designed and constructed a novel lab-scale ablative reactor for fast pyrolysis of entire wood chips and even wood rods, converting those directly into a high yield of bio-oil for the first time. The bio-oil yield from fast pyrolysis of wood chips (10 x 20 mm) was as high as 60 wt.%, similar to that from wood crumbles (2 x 2 mm). Additionally, the yield and composition of bio-oil from ablative pyrolysis were in the same range as those obtained from a fluidized bed reactor using <1 mm particles, with the small differences (slightly lower yield and HHV, and higher water content) attributed to the longer vapor residence times in the ablative reactor, which promote secondary reactions. We modeled the heat transfer characteristics of this semi-batch system, and comparison with experimental measurements confirmed that radiation from the hot components does not significantly decompose the wood prior to direct contact with the hot metallic surface in ablative pyrolysis. The findings of this work have the potential to lead to new developments for small-scale, mobile pyrolysis units for the disposal of forest residues. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对整个木片和棒材进行热解而不是对小颗粒进行热解的能力,对于移动式热解装置而言,将具有巨大的价值,因为可以节省大量的研磨成本(占总加工成本的7-9%)。考虑到这一目标,我们设计并建造了一种新型的实验室规模的烧蚀反应器,用于快速裂解整个木片甚至木棒,这是首次将其直接转化为高产率的生物油。木片快速热解(10 x 20 mm)产生的生物油产率高达60 wt。%,与碎木(2 x 2 mm)产生的产率相似。此外,烧蚀热解产生的生物油的产率和组成与使用小于1毫米的颗粒从流化床反应器中获得的产率和组成处于相同的范围内,差异很小(稍低的产率和HHV,较高的水含量)是由于在烧蚀反应器中较长的蒸气停留时间,这会促进副反应。我们对这种半间歇式系统的传热特性进行了建模,并与实验测量结果进行了比较,结果证实,在烧蚀热解中直接与热金属表面接触之前,来自热组分的辐射不会显着分解木材。这项工作的发现可能会导致小规模的移动式热解装置(用于处理森林残留物)的新发展。 (C)2017 Elsevier Ltd.保留所有权利。

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