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Cellulose, hemicellulose and lignin slow steam pyrolysis: Thermal decomposition of biomass components mixtures

机译:纤维素,半纤维素和木质素的缓慢蒸汽热解:生物质组分混合物的热分解

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摘要

Biomass thermochemical decomposition products have been extensively studied as renewable substitutes of fossil fuel. The approach proposed in this work considers vegetal waste as a source of both energy and matter through the production of a vapor phase fuel, highly diluted in steam, suitable to be burned in non-conventional combustion systems and a char with soil amending and fertilizing properties. To demonstrate the feasibility of such a process an experimental set-up has been designed with the aim to investigate the effect of pressure, heating rate and final temperature in proper variation ranges (P= 1-5 × 10~5 Pa, HR = 5-40 K/min, T=473-973 K) on the yields and on the chemical and physical properties of gaseous and solid products. In this paper the effect of temperature at constant pressure (P= 5 × 10~5 Pa) and heating rate (HR = 5K/min) has been investigated in order to explore all the stages of the thermochemical degradation from torrefaction to mild gasification passing through devolatilization. For real biomasses a basic study on characterization of biomass components is needed. Knowledge of dependences on feedstock nature and process conditions is crucial for the comprehension of phenomena occurring during steam pyrolysis of real complex biomasses and for the optimization of the process operating variables. This study characterizes steam pyrolysis up to 873 K (at pressure P= 5 × 10~5 Pa and heating rate HR = 5 K/min) both of three single biomasses constituents (cellulose, hemicellulose and lignin) and of three binary mixtures in order to evaluate possible interactions between the biomass components. The results obtained highlight the importance of the interactions between components, mainly cellulose and lignin, on the yield and characteristics of solid and gaseous products. In particular, strong components interactions have been detected on the specific surface area of the solid product.
机译:生物质热化学分解产物已作为化石燃料的可替代替代品进行了广泛的研究。这项工作中提出的方法通过生产蒸气相燃料将植物废料视为能源和物质的来源,蒸气相被高度稀释,适合在非常规燃烧系统中燃烧,并且具有对土壤进行改良和施肥的特性。 。为了证明这种方法的可行性,设计了一个实验装置,旨在研究压力,加热速率和最终温度在适当变化范围内(P = 1-5×10〜5 Pa,HR = 5)的影响。 -40 K / min,T = 473-973 K),取决于气态和固态产品的产率以及化学和物理性质。本文研究了在恒压(P = 5×10〜5 Pa)和升温速率(HR = 5K / min)下温度的影响,以探索从焙烧到温和气化通过的热化学降解的所有阶段。通过脱挥发分。对于真实的生物质,需要对生物质成分进行表征的基础研究。对原料性质和工艺条件的依赖性的了解对于理解实际复杂生物质的蒸汽热解过程中发生的现象以及工艺操作变量的优化至关重要。这项研究的特征是三种单一生物质成分(纤维素,半纤维素和木质素)和三种二元混合物的蒸汽热解速率最高可达873 K(在压力P = 5×10〜5 Pa和加热速率HR = 5 K / min时)。评估生物质组分之间可能的相互作用。获得的结果突出了主要是纤维素和木质素的组分之间的相互作用对固体和气体产物的产率和特性的重要性。特别地,已经在固体产品的比表面积上检测到强的组分相互作用。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2013年第3期|213-222|共10页
  • 作者单位

    Institute of Research on Combustion - C.N.R.. Piazzale V. Tecchio 80, 80125 Napoli. Italy;

    Institute of Research on Combustion - C.N.R.. Piazzale V. Tecchio 80, 80125 Napoli. Italy;

    Institute of Research on Combustion - C.N.R.. Piazzale V. Tecchio 80, 80125 Napoli. Italy;

  • 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
  • 关键词

    steam pyrolysis; vegetal wastes; biofuel; biochar;

    机译:蒸汽热解植物废物;生物燃料生物炭;

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