Investigation of value-added compounds derived from oak wood using hydrothermal processing techniques and comprehensive analytical approaches (HPLC, GC-MS, FT-IR, and NMR)

Yunus Başar, F. Gül, M. S. Nas, M. Alma, M. H. Calimli
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Abstract

In this study, slow pyrolysis of oak woods was carried out in a fixed bed tube reactor at four different temperatures ranging from 100 °C to 400 °C and at 5 °C/min speed time intervals. The compositions of the produced bio-tar and bio-oils were determined in detail using FT-IR, GC-MS, HPLC, and NMR devices. Several pyrolysis parameters were carried out to reveal the distribution of pyrolytic products under different pyrolysis temperatures (100–400 °C) and times (1–4 h). During the slow pyrolysis process, oak wood started to decompose to form organic volatile products at a set temperature of 100 °C and reached a maximum yield of volatile products at around 400 °C. GC-MS analyses revealed that different valuable components such as furans, phenolic compounds, carbonyls, linear, aromatic compounds, acids, and hydrocarbons have been formed. Based on the experimental results of the pyrolysis, it has been detected that the temperature and time interval are very effective parameters in the conversion of oak wood to the amount of liquid product.
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利用水热加工技术和综合分析方法(HPLC、GC-MS、FT-IR 和 NMR)研究从橡木中提取的增值化合物
本研究在固定床管式反应器中对橡木进行了缓慢热解,温度范围从 100 °C 到 400 °C,速度间隔为 5 °C/分钟。利用傅立叶变换红外光谱、气相色谱-质谱、高效液相色谱和核磁共振装置详细测定了生成的生物焦油和生物油的成分。在不同的热解温度(100-400 °C)和时间(1-4 小时)下,进行了多项热解参数测试,以揭示热解产物的分布情况。在缓慢热解过程中,橡木在设定温度 100 ℃ 时开始分解形成有机挥发物,并在 400 ℃ 左右达到最大挥发物产量。气相色谱-质谱分析表明,呋喃、酚类化合物、羰基、线性、芳香族化合物、酸和碳氢化合物等不同的有价值成分已经形成。根据热解的实验结果,可以发现温度和时间间隔是将橡木转化为液态产品的非常有效的参数。
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