利用乙醇酸在废生物质衍生的增值工业硬木牛皮纸木质素中形成醚键

Saman Ghahri, Byung-Dae Park
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摘要

通过使用乙醇酸交联技术硬木牛皮纸木质素(THKL)中的醚键形成,研究了生物粘合剂的应用。利用工业硬木牛皮纸黑液通过酸化提取 THKL。通过傅立叶变换红外光谱(FTIR)、固态 13C 交叉偏振/魔角旋转核磁共振(13C CP/MAS NMR)光谱、X 射线光电子能谱(XPS)、凝胶渗透色谱(GPC)、差示扫描量热法(DSC)和热重分析(TGA)分析了交联和未交联 THKL 的化学和热性能。傅立叶变换红外光谱(FTIR)结果显示,在 1075 cm-1 和 1324 cm-1 处出现了一个新的峰值,该峰值与交联导致的醚键和半缩醛形成相对应。13C CP/MAS NMR 光谱显示,由于 THKL 中的芳香族和脂肪族羟基减少,存在较多的醚键,并且由于交联,在 62-64 ppm 和 168-191 ppm 处形成了新的键。XPS 结果显示,乙醇酸和 THKL 之间形成了新的键,导致交联 THKL 中的原子氧百分比和碳氧键增加,在 287.7 和 288.8 与 O-C-O 和 O-C=O 有关的峰强度变化中可以检测到这一点。此外,由于键的形成,氧含量从 14.88% 增加到 31.76%。GPC 证实 THKL 的分子量更高,分子量分布更广。交联 THKL 的 DSC 和 TGA 曲线显示出放热行为、高热稳定性和低热降解率。由于木浆工业产生了大量的牛皮纸黑液,而且 THKL 具有诱人的化学特性,因此 THKL 有望成为一种原料,通过使用乙醇酸交联其不同的羟基,生产出绿色、可持续的生物粘合剂。
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Ether Bond Formation in Waste Biomass–Derived, Value-Added Technical Hardwood Kraft Lignin Using Glycolic Acid
Ether bond formation in technical hardwood kraft lignin (THKL) by crosslinking using glycolic acid was investigated for bio-adhesive applications. Industrial hardwood kraft black liquor was used to extract the THKL utilized by acidification. Chemical and thermal properties of the THKL with and without crosslinking were analyzed by Fourier transform infrared (FTIR) spectroscopy, solid-state 13C cross-polarization/magic angle spinning nuclear magnetic resonance (13C CP/MAS NMR) spectroscopy, X-ray photoelectron spectroscopy (XPS), gel permeation chromatography (GPC), differential scanning calorimetry (DSC), and thermogravimetric analysis (TGA). FTIR results revealed a new peak corresponding to the ether bond and hemiacetal formation due to crosslinking at 1075 cm-1 and 1324 cm-1. 13C CP/MAS NMR spectra revealed the presence of a higher number of ether bonds due to the reduced aromatic and aliphatic hydroxyl groups in THKL and new bonds formed at 62-64 ppm and 168-191 ppm due to crosslinking. XPS results revealed that new bonds were formed between glycolic acid and THKL, leading to increased atomic oxygen percentage and carbon–oxygen bonds in crosslinked THKL detected by peak intensity changes at 287.7 and 288.8 related to O–C–O and O–C=O. Also, the oxygen content increased from 14.88% to 31.76% due to bond formation. GPC confirmed a higher molecular weight and broader molecular-weight distribution of THKL. DSC and TGA curves of crosslinked THKL revealed exothermic behavior, high thermal stability, and low thermal degradation rate. Owing to a significant amount of kraft black liquor being generated by wood pulp industries and attractive chemical properties of THKL, THKL demonstrates promise as a raw material to produce green, sustainable bio-adhesives via the crosslinking of its different hydroxyl groups using glycolic acid.
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