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首页> 外文期刊>Journal of Polymers and the Environment >Synthesis of Soy-Polyol by Two Step Continuous Route and Development of Soy-Based Polyurethane Foam
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Synthesis of Soy-Polyol by Two Step Continuous Route and Development of Soy-Based Polyurethane Foam

机译:两步连续路线合成大豆多元醇和大豆基聚氨酯泡沫的发展

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摘要

Soy-polyol has been synthesized via a low energy two-step continuous route thus avoiding intermediate steps and chemicals. The functional groups of soy-polyol thus produced were identified by Fourier transform infrared (FTIR) spectroscopy which confirmed the cleavage of the double bonds, the formation of new epoxy linkages and the presence of hydroxyl groups. The change in chemical structure and physical properties of the soy polyol was further characterized and the results indicated a successful conversion with reduced unsaturation, increased hydroxyl number and increased viscosity. Polyurethane foam was prepared from soy-polyol using isocyanate and thermogravimetric analysis was used to study its thermal decomposition behaviour. Multiple transitions were identified in relation to depolymerization and bond dissociation. Density and compressive strength of the soy-foam were found to be satisfactory. An investigation of microstructure of soy foam by scanning electron microscope and X-ray computed tomography revealed the internal cell morphology and cell structure.
机译:大豆多元醇是通过低能量的两步连续路线合成的,因此避免了中间步骤和化学药品。由此产生的大豆多元醇的官能团通过傅里叶变换红外(FTIR)光谱法鉴定,该光谱证实了双键的断裂,新的环氧键的形成和羟基的存在。进一步表征了大豆多元醇的化学结构和物理性质的变化,结果表明成功的转化具有减少的不饱和度,增加的羟值和增加的粘度。使用异氰酸酯由大豆多元醇制得聚氨酯泡沫,并使用热重分析法研究其热分解行为。与解聚和键解离有关的多个转变被确定。发现该大豆泡沫的密度和抗压强度是令人满意的。通过扫描电子显微镜和X射线计算机断层扫描对大豆泡沫的微观结构进行研究,发现其内部细胞形态和细胞结构。

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