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使用全改性大豆基多元醇制备高性能可生物降解硬质聚氨酯泡沫

Development of High-Performance Biodegradable Rigid Polyurethane Foams Using Full Modified Soy-Based Polyols.

机构信息

Yangzi Petrochemical Company Ltd. , SINOPEC , Nanjing 210048 , P.R. China.

College of Engineering , China Pharmaceutical University , Nanjing 210009 , P.R. China.

出版信息

J Agric Food Chem. 2019 Feb 27;67(8):2220-2226. doi: 10.1021/acs.jafc.8b05342. Epub 2019 Feb 18.

Abstract

Fossil fuel resources depletion and growing concern about environmental issues have raised the demand for newly sustainable biomaterials. To address this challenge, a new type of biodegradable and environmental rigid polyurethane foam called rigid polyurethane foams (RPUF)-M from full modified soy-based polyols have been synthesized without the addition of petroleum-based polyols. On the basis of the analysis of structure-activity relationship, a new kind of biobased polyurethane polyols called Bio-polyol-M was designed and synthesized directly from epoxidized soybean oil and a novel polyhydroxy compound in a three-step continuous microflow system. In the continuous microflow system, the epoxidation of soybean oil, the synthesis of GLPO (glycerine with styrene oxide), and the ring-opening reaction of epoxidized soybean oil were coupled. Another soy-polyol called Bio-polyol-B was synthesized in batch mode. In comparison to those of Bio-polyol-B, Bio-polyol-M had a higher hydroxyl number and a much lower viscosity. The RPUF-M also possessed a series of advantages over the rigid polyurethane foam called RPUF-B from Bio-polyol-B.

摘要

化石燃料资源枯竭和对环境问题日益关注,提高了对新型可持续生物材料的需求。为了应对这一挑战,一种新型可生物降解和环境友好的硬质聚氨酯泡沫,称为硬质聚氨酯泡沫(RPUF)-M,已从完全改性的大豆基多元醇中合成,而无需添加石油基多元醇。基于结构-活性关系的分析,一种新型的生物基聚氨酯多元醇,称为 Bio-polyol-M,直接从环氧大豆油和一种新型多羟基化合物在三步连续微流系统中设计和合成。在连续微流系统中,大豆油的环氧化、GLPO(氧化苯乙烯甘油)的合成和环氧大豆油的开环反应偶联在一起。另一种称为 Bio-polyol-B 的大豆多元醇则以分批模式合成。与 Bio-polyol-B 相比,Bio-polyol-M 的羟值更高,粘度更低。RPUF-M 还具有一系列优于由 Bio-polyol-B 制成的硬质聚氨酯泡沫(RPUF-B)的优点。

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