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Production of Bio-based Polyol from Oxypropylated Pyrolytic Lignin for Rigid Polyurethane Foam Application

机译:从氧化氧化热分解木质素生产生物基多醇的刚性聚氨酯泡沫涂料

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摘要

A recent trend in ecofriendly product development is the use of added-value lignin residues. This study aimed to assess the potential use of pyrolytic lignin (PL) for producing rigid polyurethane foam (RPUF). For this purpose, PL was recovered from bio-oil using water as extraction solvent. The PL was then subjected to oxypropylation in the presence of KOH and under mild temperature and pressure (482 K; 14 Bar). FTIR and hydroxyl number quantification was used to confirm and assess the occurrence of oxypropylation reaction. Thus, oxypropylated lignin (OL) was successfully used to produce RPUF. Results revealed a lignin recovery yield of 30 + 4% relative to the bio-oil weight. FTIR and NMR showed that the PL retained its aromatic structure after pyrolysis cracking. The weight ratio obtained after oxypropylation was 50/50/5 lignin/propylene oxide/KOH with a hydroxyl number of 703 mg KOH/g. Gradual substitution of polyol with OL ranged from 10 to 50%, and the ensuing foams were characterized in terms of chemical, physical, and morphological properties. Modulus of elasticity and insulation performance of 20% OL-based foam increased by 17% and 5.5%, respectively, compared to the commercial rigid polyurethane foam (CRPUF). SEM micrographs for OL-based polyurethane foams showed smaller cell structure, which is desirable for increasing rigidity. These findings demonstrate the potential use of pyrolytic lignin in the manufacturing of high performance biobased insulation materials.
机译:Ecofriendly产品开发的最新趋势是使用附加价值木质素残留物。本研究旨在评估热解性木质素(PL)生产刚性聚氨酯泡沫(RPUF)的潜在用途。为此目的,使用水作为萃取溶剂从生物油中回收PL。然后在KOH和温度温度和压力下(482k; 14巴),将PL进行氧基化。使用FTIR和羟值定量来确认和评估氧化丙基反应的发生。因此,成功地用于生产RPUF的氧化丙基木质素(OL)。结果表明,相对于生物油重量的木质素回收率为30 + 4%。 FTIR和NMR显示PL在热解裂化后保留其芳族结构。氧基化后得到的重量比为50/50/5木质素/环氧丙烷/ KOH,羟基数为703mg KOH / g。多元醇的多元醇的逐渐取代范围为10至50%,并且随后的泡沫以化学,物理和形态特性为特征。与商业刚性聚氨酯泡沫(CRPUF)相比,弹性弹性和绝缘性能分别增加了20%的泡沫泡沫增加17%和5.5%。 SEM用于基于OL的聚氨酯泡沫的显微照片显示出较小的电池结构,这是为了提高刚性而期望。这些发现表明了热解木质素在高性能生物保温材料制造中的潜在使用。

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  • 来源
    《Waste and biomass valorization》 |2020年第11期|6411-6427|共17页
  • 作者单位

    Research Forest Institute (Institut de recherche sur les forets - IRF) University of Quebec in Abitibi-Temiscamingue (UQAT) 445 Boul. de l'Universite Rouyn-Noranda QC J9X 5E4 Canada Centre Technologique des Residus Industriels (CTRI Technology Center for Industrial Waste) Cegep de l'Abitibi-Temiscamingue (College of Abitibi-Temiscamingue) 425 Boul. du College Rouyn-Noranda QC J9X 5E5 Canada;

    Centre Technologique des Residus Industriels (CTRI Technology Center for Industrial Waste) Cegep de l'Abitibi-Temiscamingue (College of Abitibi-Temiscamingue) 425 Boul. du College Rouyn-Noranda QC J9X 5E5 Canada;

    Centre Technologique des Residus Industriels (CTRI Technology Center for Industrial Waste) Cegep de l'Abitibi-Temiscamingue (College of Abitibi-Temiscamingue) 425 Boul. du College Rouyn-Noranda QC J9X 5E5 Canada;

    Centre Technologique des Residus Industriels (CTRI Technology Center for Industrial Waste) Cegep de l'Abitibi-Temiscamingue (College of Abitibi-Temiscamingue) 425 Boul. du College Rouyn-Noranda QC J9X 5E5 Canada;

    EnerLab 1895 Chemin de l'Industrie Saint-Mathieu-de-Beloeil QC J3G 4S5 Canada;

    Research Forest Institute (Institut de recherche sur les forets - IRF) University of Quebec in Abitibi-Temiscamingue (UQAT) 445 Boul. de l'Universite Rouyn-Noranda QC J9X 5E4 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bio-sourced materials; Rigid polyurethane foams; Bio-based polyol; Pyrolytic bio-oil; Pyrolytic lignin; Oxypropylation;

    机译:生物源材料;刚性聚氨酯泡沫;生物基多醇;热解生物油;热解木质素;氧气化合物;

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