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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Synthesis of Soy-Polyols Using a Continuous Microflow System and Preparation of Soy-based Polyurethane Rigid Foams
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Synthesis of Soy-Polyols Using a Continuous Microflow System and Preparation of Soy-based Polyurethane Rigid Foams

机译:连续微流系统合成大豆多元醇和制备大豆基聚氨酯硬质泡沫

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摘要

A soy-polyol labeled Polyol-m was synthesized directly from soybean oil in a continuous microflow system equipped with self-designed oil-water separators and using a reported scheme for epoxidation under following the optimized conditions for hydroxylation: sulfuric acid concentration of 10 wt %, residence time of 13 min, and temperature of 75 °C. Another soy-polyol labeled Polyol-f was also synthesized in a conventional flask from commercially available epoxidized soybean oil as a raw material for the purpose of comparison. Polyol-f had a wider molecular weight distribution, higher viscosity, and lower hydroxyl number than Polyol-m because of the more substantial oligomers introduced by oligomerization, which was confirmed by Fourier transform infrared (FTIR) and gel permeation chromatography (GPC). In addition, the corresponding soy-based polyurethane rigid foams labeled PU-m and PU-f were prepared. PU-m had fine, uniform, and closed-cell morphology, and it contained higher cross-linking due to such characteristics as lower viscosity and higher hydroxyl number; these characteristics were beneficial for the foam properties, including compression strength, thermal insulation, dimensional stability, and thermostability.
机译:大豆多元醇标记的多元醇-m是在配备有自行设计的油水分离器的连续微流系统中,从大豆油中直接合成的,并使用已报道的方案在以下最佳羟基化条件下进行环氧化:硫酸浓度为10 wt% ,停留时间为13分钟,温度为75°C。出于比较的目的,另一种大豆多元醇标记的多元醇-f也在常规烧瓶中由市售的环氧化大豆油作为原料合成。多元醇-f比多元醇-m具有更宽的分子量分布,更高的粘度和更低的羟值,这是因为通过低聚反应引入了更多的低聚物,这已通过傅里叶变换红外光谱(FTIR)和凝胶渗透色谱法(GPC)得以证实。另外,制备了标记为PU-m和PU-f的相应的基于大豆的聚氨酯硬质泡沫。 PU-m具有细密,均匀和闭孔的形态,由于具有较低的粘度和较高的羟值等特性,因此具有较高的交联度。这些特性有利于泡沫特性,包括抗压强度,隔热性,尺寸稳定性和热稳定性。

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