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Synthesis of palm oil based polyol via glycerolysis and transamidation reactions for polyurethane foam production

机译:通过甘油分解和氨基转移反应合成棕榈油基多元醇以生产聚氨酯泡沫

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摘要

Renewable sources like vegetable oil have been used to prepare many polymeric resins due to the awareness on environmental issue and depletion on petrochemical sources. In polyurethane (PU) production, petroleum-based polyols such as polypropylene glycol (PPG) have been replaced with plant-based polyols from canola oil, soybean oil and palm oil. However, these vegetable oils need to be chemically or physically modified in order to increase their functionalities especially hydroxyl groups. In this study, palm oil (PO) had been modified via two different reaction routes, namely, glycerolsis and transamidation. FTIR spectra of both routes confirmed that the hydroxyl groups (-OH) had been successfully introduced into the palm oil molecular structure. The modified PO was then be reacted with p-diphenylmethane diisocyanate (p-MDI) at 1:1 NCO:OH ratio in the presence of distilled water as blowing agent and silicone surfactant as foam stabilizer to produce palm oil based PU foam. Hardness test was conducted to study type of PU foam produced. Both foams exhibited nearly similar values at shore D 33.6 and 35.4 respectively, which these values fall within the range of rigid PU foam (shore D 30-59). The foams have potential to be used in many non-load bearing application such as insulator in building and refrigerator.
机译:由于对环境问题的认识和对石油化学资源的枯竭,可再生资源(例如植物油)已用于制备许多聚合物树脂。在聚氨酯(PU)生产中,石油基多元醇(例如聚丙二醇(PPG))已被菜籽油,大豆油和棕榈油中的植物基多元醇取代。但是,这些植物油需要进行化学或物理改性,以提高其功能性,尤其是羟基。在这项研究中,棕榈油(PO)已通过两种不同的反应途径进行了修饰,即甘油酸和氨基转移。两种路线的FTIR光谱均证实羟基(-OH)已成功引入棕榈油分子结构中。然后在蒸馏水作为发泡剂和有机硅表面活性剂作为泡沫稳定剂的情况下,使改性的PO与1:1的NCO:OH比的对二苯基甲烷二异氰酸酯(p-MDI)反应,以生产棕榈油基PU泡沫。进行硬度测试以研究生产的PU泡沫的类型。两种泡沫分别在肖氏D 33.6和35.4处显示出几乎相似的值,这些值都在硬质PU泡沫(肖氏D 30-59)的范围内。泡沫有潜力用于许多非承重应用中,例如建筑物和冰箱中的绝缘子。

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