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A Pathway toward a New Era of Open-Cell Polyurethane Foams—Influence of Bio-Polyols Derived from Used Cooking Oil on Foams Properties

机译:趋向于在泡沫特性上衍生自用于泡沫性质的生物多元醇的新时代的新时代的途径 - 生物多元醇的影响

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摘要

In order to create greener polyurethane (PUR) foams, modified used cooking oils (UCO) were applied as starting resources for the synthesis of bio-polyols. The bio-polyols were produced using transesterification of UCO with diethylene glycol (UCO_DEG) and triethanolamine (UCO_TEA). Next, open-cell PUR foams were synthesized by replacing 20, 40, 60, 80 and 100% of the petrochemical polyol with the bio-polyol UCO_DEG or UCO_TEA. It was observed that an increasing bio-polyol content (up to 60%) led to an increase of the closed cell content. However, a further increase in the bio-polyol content up to 100% resulted in foam cell opening. The bio-foams obtained in the experiment had an apparent density of 13–18 kg/m3. The coefficient of thermal conductivity was determined at three different average temperatures: 10, 0 and −10 °C. The PUR bio-foams modified with bio-polyol UCO_TEA had lower values of thermal conductivity, regardless of the average temperature (35.99–39.57 mW/m·K) than the foams modified with bio-polyol UCO_DEG (36.95–43.78 mW/m·K). The compressive strength of most of the bio-foams was characterized by a higher value than the compressive strength of the reference material (without bio-polyol). Finally, it was observed that the bio-materials exhibited dimensional stability at 70 °C.
机译:为了产生更环保的聚氨酯(PUR)泡沫,将改性使用的烹饪油(UCO)应用于生物多元醇的合成的起始资源。使用用二乙二醇(UCO_DEG)和三乙醇胺(UCO_TEA)的UCO的酯交换来制备生物多元醇。接下来,通过用生物多元醇UCO_DEG或UCO_TEA替换20,40,60,80和100%的石化多元醇来合成开孔PUR泡沫。观察到增加生物多元醇含量(高达60%)导致闭合细胞含量的增加。然而,生物多元醇含量的进一步增加至100%导致泡沫细胞开口。实验中获得的生物泡沫表观密度为13-18 kg / m 3。在三个不同的平均温度下测定导热系数:10,0和-10℃。用生物多元醇UCO_TEA改性的PUR生物泡沫具有较低的导热率值,无论平均温度(35.99-39.57 mW / m·k))多于用生物多元醇UCO_DEG改性的泡沫(36.95-43.78 mw / m· k)。大多数生物泡沫的抗压强度的特征在于比参考材料的压缩强度更高的值(没有生物多元醇)。最后,观察到生物材料在70℃下表现出尺寸稳定性。

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