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Pyrolysis Characteristics of Cellulose Isolated from Selected Biomass Feedstocks using a Thermogravimetric Analyser

机译:使用热量分析仪从选定生物质原料中分离的纤维素的热解特性

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Utilisation of biomass by means of pyrolysis has received great interests for the production and use of biofuels. Biomass consists of three major components, namely, cellulose, hemicellulose and lignin and their contents vary from feedstock to feedstock. Understanding the pyrolysis behavior of each component and their interactions holds a key to understanding the complex biomass pyrolysis process. This study was aimed to compare the pyrolysis characteristics of cellulose from various biomass resources. Cellulose samples isolated from selected raw biomass materials, namely, pine wood and wheat straw, in addition to a pure cellulose sample acquired from Sigma Aldrich as a reference, were used in this study. The raw biomass sample was first milled to a particle size fraction of < 310 μm and treated using Soxhlet extraction in a 2:1 (v/v) toluene/ethanol solvent to remove wax. Lignin was then removed by treating the de-waxed sample in a 1M NaClO2 solution at 343K until the product became white. Finally, hemicellulose was leached out by soaking the de-lignified sample in a 6 wt % KOH solution at room temperature overnight and then at the same concentration at 353K for 2 h. Fourier transform infrared spectroscopy (FTIR) and X-ray diffractometer (XRD) were applied to characterise the surface functional groups and the crystallinity of the cellulose samples. The pyrolysis experiments were performed using a thermogravimetric analyser (TGA) in nitrogen at 10Kmin~(-1) heating rate from room temperature to the final temperature of 823K. The FTIR and XRD results indicated that cellulose can be successfully isolated from the raw biomass samples via the chemical treatment used. The cellulose isolated from both pine wood and wheat straw showed similar pyrolysis characteristics but differed significantly from the reference cellulose. The DTG curves of cellulose samples isolated showed characteristic peaks at 600 and 608K, ca 5-13K lower than that of the reference cellulose and exhibited a large flat shoulder in the temperature range of 475 - 575K. It was identified that the cellulose samples isolated from selected biomass had lower crystallinity and smaller crystallite compared to the reference cellulose, which in turn, impacted on their pyrolysis behavior.
机译:通过热解利用生物质的利益为生物燃料的生产和使用受到了极大的兴趣。生物质主要由三所大部分组成,即纤维素,半纤维素和木质素及其内容从原料有所不同原料。了解每个组分的热解行为及其相互作用使得理解复杂生物质热解过程的关键。本研究旨在比较各种生物质资源的纤维素的热解特性。除了从Sigma Aldrich获得作为参考的纯纤维素样品之外,除了从Sigma Aldrich获得的纯纤维素样品之外,还用于本研究,纤维素样品除了从Sigma Aldrich获得的纯纤维素样品外,还用于本研究。将原料生物质样品首先研磨成310μm的粒度分数,并在2:1(v / v)甲苯/乙醇溶剂中使用SOXHLET萃取处理以除去蜡。然后通过在343K在1M NaClO 2溶液中将脱蜡样品在343K中将脱蜡样品在343k中除去木质素,直至产品变为白色。最后,通过在室温下在6wt%KOH溶液中浸泡在室温下浸泡脱氧样品,然后在353K℃下浸出半纤维素。傅里叶变换红外光谱(FTIR)和X射线衍射仪(XRD)施用以表征表面官能团和纤维素样品的结晶度。在10kmin〜(-1)加热速率从室温至最终温度为823K的最终温度,在氮气中使用热分析仪(TGA)进行热解实验。 FTIR和XRD结果表明,纤维素可以通过所使用的化学处理从原料生物质样品成功分离。从杉木木和小麦秸秆中分离的纤维素显示出类似的热解特性,但从参考纤维素显着不同。被隔离的纤维素样品的DTG曲线显示在600和608K的特征峰,Ca 5-13k低于参考纤维素的Ca 5-13k,并在475-575K的温度范围内显示出大的扁平肩部。鉴定出从选定的生物质中分离的纤维素样品与参考纤维素相比具有较低的结晶度和更小的微晶,这反过来依次影响其热解作用。

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