Studies on the effect of additives concentrations on synthesis and characterization of furan-lignin foams

Q2 Materials Science
Alaba Joseph Adebayo , Olugbenga Oludayo Oluwasina , Joseph Kolawole Ogunjobi , Labunmi Lajide
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引用次数: 2

Abstract

Bio-based foams are growing and promising materials to replace petroleum-based foams because of their beneficial qualities including their affordability, outstanding fire resistance, high thermal insulation performance, eco-friendliness and the bio-sourced origin of the feedstock components. This study produced rigid bio-based foams using chemicals derived from plants, primarily from furfuryl alcohol and polyol derived from lignin. Lignin-based polyol and furfuryl alcohol were used to produce furan-lignin foams, which are free of formaldehyde and ozone damaging substances. Seven different furan-lignin foams were produced by substituting the toxic formaldehyde with a more eco-friendly glyoxal as a hardener while using diethyl ether and bentonite as blowing agent and filler respectively. Effects of these reagents on the quality of foams produced were assessed by varying their contents in the formulations. The properties of the produced bio-based foams such as compressive resistance, water absorption capacity, density and moisture content were evaluated. Further product characterizations: elemental composition, thermo-gravimetric analysis, Fourier transforms infrared spectroscopy and Scanning electron microscopy were carried out on the foams. The reaction leading to foam production was spontaneous at room temperature with an acid catalyst. Results showed that the concentrations of the blowing agent, hardener and filler, all had effects on the quality of the bio-based foams produced. Scanning electron microscopy results showed that the foams possessed closed cell morphologies, a rigid foam characteristic for good thermal and acoustic performance but modest water absorption, with cell widths of 10–200 μm, having high densities and strong compressive strengths as inherent characteristics. The results of the characterization indicated that the foams may be used as a thermal barrier or a support in construction and packaging applications because they had strong thermal stability, high compressive strengths, and a modest capacity to absorb water.

添加剂浓度对呋喃木质素泡沫合成及表征影响的研究
生物基泡沫是一种新兴的、有前途的材料,可以取代石油基泡沫,因为它具有经济实惠、优异的防火性能、高绝热性能、生态友好性和原料成分的生物来源等优点。本研究使用从植物中提取的化学物质,主要是糠醇和从木质素中提取的多元醇,生产硬质生物基泡沫。采用木质素基多元醇和糠醇制备了不含甲醛和臭氧破坏物质的呋喃-木质素泡沫。以乙醚和膨润土分别作为发泡剂和填料,以更环保的乙二醛代替有毒的甲醛,制备了7种不同的呋喃木质素泡沫。通过改变这些试剂在配方中的含量来评估它们对泡沫质量的影响。对制备的生物基泡沫的抗压性能、吸水性能、密度和含水率进行了评价。进一步的产品表征:元素组成,热重分析,傅里叶变换红外光谱和扫描电子显微镜对泡沫进行。在室温下,在酸性催化剂的作用下,泡沫的生成是自发的。结果表明,发泡剂、硬化剂和填料的浓度对生物基泡沫的质量都有影响。扫描电镜结果表明,该泡沫具有闭孔形态,为刚性泡沫,具有良好的热声性能和吸水性,孔宽为10 ~ 200 μm,具有高密度和强抗压强度的固有特征。表征结果表明,由于泡沫具有很强的热稳定性,高抗压强度和适度的吸水能力,因此可以用作建筑和包装应用中的热障或支撑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Research in Green and Sustainable Chemistry
Current Research in Green and Sustainable Chemistry Materials Science-Materials Chemistry
CiteScore
11.20
自引率
0.00%
发文量
116
审稿时长
78 days
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