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Using pyrolytic acid leaching as a pretreatment step in a biomass fast pyrolysis plant: Process design and economic evaluation

机译:在生物质快速热解工厂中使用热解酸浸出作为预处理步骤:工艺设计和经济评估

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摘要

Removing alkali and alkaline earth metals (AAEMs) from biomass, with pyrolytic acids, before pyrolysis leads to increased organic oil and sugar yields. These pyrolytic acids are produced and concentrated within the pyrolysis process itself. The purpose of this paper was to evaluate under which conditions acid leaching of pinewood, bagasse and straw can improve the technical and economic feasibility of a pyrolysis process. Therefore, a preliminary process design for the implementation of acid leaching at a pyrolysis plant, with a biomass capacity of 5 and 50 t h~(-1) was made and compared with a pyrolysis plant using the untreated biomass. Target products were heating oil and/or additional pyrolytic sugars. It has been calculated that with the leaching step the heat for pyrolysis and drying of the biomass can still be supplied by the combustion of the char and gases, but insufficient excess heat is available to produce electricity for the process. Critical for the economics of the acid leaching pyrolysis process are the amount of extractives in the biomass (organics ending up in the waste water) but not its moisture content. Mechanical dewatering before thermal drying turns out to be very important. The economics of the presented approach turned out to be very sensitive to the plant scale, CAPEX and obviously to the biomass price. At the current market scenario and state of proven techniques the production of sugars and heating oil from bagasse at 50 t h~(-1) is the most economic option (IRR 15.4%).
机译:在热解之前,用热解酸从生物质中去除碱金属和碱土金属(AAEM),可提高有机油和糖的产量。这些热解酸在热解过程本身中产生并浓缩。本文的目的是评估在什么条件下松木,蔗渣和稻草的酸浸可以改善热解工艺的技术和经济可行性。因此,进行了生物质处理能力为5和50 t h〜(-1)的热解厂实施酸浸的初步工艺设计,并与使用未经处理的生物质的热解厂进行了比较。目标产品是加热油和/或其他热解糖。已经计算出,在浸出步骤中,仍然可以通过焦炭和气体的燃烧来提供用于生物质的热解和干燥的热量,但是没有足够的多余热量来产生用于该过程的电。对于酸浸热解过程的经济性而言,至关重要的是生物质中的萃取物(最终排入废水中的有机物)的量,而不是其水分含量。事实证明,在热干燥之前进行机械脱水非常重要。结果表明,所提出方法的经济性对工厂规模,资本支出和生物质价格非常敏感。在当前的市场情况和成熟的技术水平下,在50 t h〜(-1)的蔗渣中生产糖和取暖油是最经济的选择(IRR 15.4%)。

著录项

  • 来源
    《Biomass & bioenergy》 |2016年第12期|388-404|共17页
  • 作者单位

    Sustainable Process Technology Croup, Faculty of Science and Technology, University of Twente, Postbus 217, 7500AE Enschede, The Netherlands;

    Sustainable Process Technology Croup, Faculty of Science and Technology, University of Twente, Postbus 217, 7500AE Enschede, The Netherlands;

    Sustainable Process Technology Croup, Faculty of Science and Technology, University of Twente, Postbus 217, 7500AE Enschede, The Netherlands;

    Sustainable Process Technology Croup, Faculty of Science and Technology, University of Twente, Postbus 217, 7500AE Enschede, The Netherlands;

    Sustainable Process Technology Croup, Faculty of Science and Technology, University of Twente, Postbus 217, 7500AE Enschede, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fast pyrolysis; Acid leaching; Alkali and alkaline earth metals; Pyrolytic sugars; Process design; Techno-economic evaluation;

    机译:快速热解;酸浸;碱金属和碱土金属;热解糖;流程设计;技术经济评估;

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