Searching for Optimal Measurement Parameters by Thermogravimetry for Determining the Degree of Modification of Thermally Modified Wood

IF 2.4 2区 农林科学 Q1 FORESTRY Forests Pub Date : 2023-12-19 DOI:10.3390/f15010008
R. Cerc Korošec, Boštjan Žener, N. Čelan Korošin, M. Humar, Davor Kržišnik, G. Rep, Urška Lavrenčič Štangar
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Abstract

When wood is thermally modified, several chemical reactions take place that change the chemical and physical properties of the wood. These changes correlate with the degree of modification, which is mostly a function of the temperature and duration of modification, and consequently with the mass loss during this process. There is a lack of standardised quality control to verify the degree of heat treatment of wood and thus its quality. One of the possible methods to check the degree of thermal modification of a particular type of wood is thermogravimetry (TG). It is based on the assumption that processes that did not take place during thermal modification continue when the TG experiment is carried out. In this method, calibration curves have to be established based on TG measurements of standard samples that have been thermally modified at different temperatures and whose mass loss during modification is known. The calibration curves show the mass loss during the TG measurement as a function of the mass loss during the previous thermal modification. The course of thermal decomposition during the TG measurements is influenced by many parameters, such as the mass of the sample, the heating rate, the atmosphere in which the measurement takes place, and the shape of the crucible in which the sample is placed. In this paper, the influence of these parameters on the calibration curves was investigated. We have focused on oak wood. The best parameters result in a calibration curve with the largest correlation coefficient R2 and the highest slope of the line k. On this basis, we can determine the mass loss during the thermal modification of unknown samples of the same wood species under the same measurement conditions.
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利用热重法测定热改性木材的改性程度,寻找最佳测量参数
对木材进行热改性时,会发生一些化学反应,从而改变木材的化学和物理特性。这些变化与改性程度有关,而改性程度主要是改性温度和持续时间的函数,因此也与这一过程中的质量损失有关。目前缺乏标准的质量控制来检验木材的热处理程度,从而检验其质量。检查特定类型木材热改性程度的可行方法之一是热重分析法 (TG)。该方法基于这样一个假设,即在进行 TG 实验时,热改性过程中未发生的过程仍在继续。在这种方法中,必须根据在不同温度下经过热改性的标准样品的 TG 测量结果建立校准曲线,这些样品在改性过程中的质量损失是已知的。校准曲线显示了 TG 测量过程中的质量损失与之前热改性过程中质量损失的函数关系。TG 测量过程中的热分解过程受许多参数的影响,如样品的质量、加热速率、测量时的气氛以及放置样品的坩埚形状。本文研究了这些参数对校准曲线的影响。我们重点研究了橡木。在此基础上,我们可以确定在相同测量条件下,同一木材种类的未知样品在热改性过程中的质量损失。
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来源期刊
Forests
Forests FORESTRY-
CiteScore
4.40
自引率
17.20%
发文量
1823
审稿时长
19.02 days
期刊介绍: Forests (ISSN 1999-4907) is an international and cross-disciplinary scholarly journal of forestry and forest ecology. It publishes research papers, short communications and review papers. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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