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Fast Pyrolysis Bio-Oils from Wood and Agricultural Residues

机译:木材和农业残留物的快速热解生物油

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摘要

Fast pyrolysis bio-oil (pyrolysis liquid) from plant residues is one alternative to replace fossil fuels and feedstocks. Fast pyrolysis liquid is a potential source of revenues for companies who have biomass residues at thctr disposal. Once produced, bio-oils may be shipped, stored, and utilized much like conventional liquid fuels once their specific fuel properties are taken into account. First encouraging large scale bio-oil utilization tests with published results were carried out in Stockholm in the 1990s in a heating boiler designed for heavy fuel oil. Industrial ovens are also potential users of bio-oil. Bio-oil would also be an interesting fuel for small scale distributed heal or power production. However, introducing a new fuel into the markets is not going to happen easily. Bio-oil is quite different from conventional liquid fuels, and many challenges remains to be overcome. A stepwise market introduction is proposed: bio-oil would first replace fuel oil in boilers, where its properties would no! be prohibitive. Once the overall utilization chain has been proven, more demanding uses may be introduced. VTT has been developing an integrated concept, in which fast pyrolysis is integrated to a fluidized-bed boiler. The experimental work on fast pyrolysis has been focused in supporting this concept. In Scandinavia, forest residues are the most feasible feedstocks for pyrolysis. These residues contain extractive matter that yield a second liquid phase. This is both an opportunity (for recovering byproduct) and a challence (for using both phases as fuel). Agro-biomasses are more challenging feedstocks for energy use due to the high amount of alkali metals and nitrogen in the oil. In addition, they produce more water during pyrolysis, causing phase instability. In this paper, fast pyrolysis is discussed including experimental results from pyrolysis of wood and agricultural residues as well as results from a tcchno-cconomic evaluation.
机译:来自植物残渣的快速热解生物油(热解液)是替代化石燃料和原料的一种选择。对于那些有生物质残留物处置的公司来说,快速热解液是潜在的收入来源。一旦生产出来,一旦考虑了生物燃料的特定燃料特性,它们就可以像传统的液体燃料一样进行运输,存储和利用。 1990年代在斯德哥尔摩为重燃料油设计的加热锅炉中进行了首次令人鼓舞的大规模生物油利用试验,并公布了结果。工业烤箱也是生物油的潜在用户。对于小规模的分布式医疗或发电,生物油也将是一种有趣的燃料。但是,将新的燃料引入市场并不容易。生物油与常规液体燃料完全不同,许多挑战有待克服。建议逐步引入市场:生物油将首先取代锅炉中的燃料油,而后者的性能将无法实现!禁止。一旦证明了整个利用链,就可以引入更多苛刻的用途。 VTT一直在开发一种集成的概念,其中将快速热解集成到流化床锅炉中。快速热解的实验工作一直集中在支持这一概念上。在斯堪的纳维亚半岛,森林残留物是热解最可行的原料。这些残留物包含产生第二液相的萃取物。这既是机会(用于回收副产物),又是挑战(用于将两相都用作燃料)。农业生物质是能源使用中更具挑战性的原料,因为油中碱金属和氮的含量很高。此外,它们在热解过程中会产生更多的水,从而引起相不稳定。本文讨论了快速热解,包括木材和农业残留物热解的实验结果,以及技术经济评价的结果。

著录项

  • 来源
    《Energy & fuels》 |2010年第janaafeba期|1380-1388|共9页
  • 作者单位

    VTT, P.O. Box 1000, 02044 VTT, Finland;

    VTT, P.O. Box 1000, 02044 VTT, Finland;

    VTT, P.O. Box 1000, 02044 VTT, Finland;

    VTT, P.O. Box 1000, 02044 VTT, Finland;

    VTT, P.O. Box 1000, 02044 VTT, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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