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Evaluation of synthetic bio-phenol resins derived from biomass gasification in bio-adhesive formulation

机译:生物粘合剂制剂中生物质气化衍生的合成生物酚树脂的评价

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Bio-phenol formaldehyde adhesives formulated from sustainable biomass sources is an excellent alternative to phenolic petroleum-based adhesives with lower pollution level. This study aimed to formulate bio-adhesive from two types of biomass namely palm kernel shell (PKS) and Leucaena sp. Wood. The intention was to find the best process condition which results in maximum content of bio-phenol in the product. The bio-based phenolic resins (biooils) were produced from gasification process and their physical and chemical properties were determined. Both produced bio-oils were involved in formulation of bio-based phenol formaldehyde adhesives (resinification) at different operating conditions (temperature, time and catalyst loading). The chemical functional groups and individual compounds of the phenol resins and bio-adhesive samples were identified by GC-MS. The results indicated that temperature has persistent increasing effect on phenol percent of the bio-oil from Leucaena sp. wood however for the bio-oil from PKS the increase of phenol was until the temperature of 85 °C. Reaction time and catalyst loading were observed to have similar effects on resinification of both bio-oil samples. The bio-adhesive produced under best operating condition has the highest amount of bio-phenol and therefore is considered an environmental friendly adhesive with lower cost and pollution than the petroleum-based types.
机译:由可持续生物量来源配制的生物酚醛甲醛粘合剂是具有较低污染水平的酚类石油基粘合剂的优异替代方案。本研究旨在从两种类型的生物质中配制生物粘合剂,即棕榈仁壳(PKS)和Leucaena sp。木头。目的是找到最佳的过程条件,导致产品中的生物苯酚的最大含量。生物基酚醛树脂(生物酚)由气化过程制备,测定其物理和化学性质。在不同的操作条件下(温度,时间和催化剂负载),两种产生的生物油都参与了生物基酚醛甲醛粘合剂(树脂化)。通过GC-MS鉴定了化学官能团和酚醛树脂和生物粘合剂样品的各个化合物。结果表明,温度对来自Leucaena SP的生物油的苯酚百分比持续增加。然而,对于来自PKS的生物油,苯酚的增加直至85℃的温度。观察到反应时间和催化剂负载对生物油样品的树脂具有类似的影响。在最佳操作条件下产生的生物粘合剂具有最高量的生物酚,因此被认为是较低的成本和污染的环保粘合剂,而不是基于石油的类型。

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