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基于偏硅酸的多元醇混合物与回收聚乳酸用于合成易生物降解的硬质聚氨酯泡沫的应用。

Use of a Mixture of Polyols Based on Metasilicic Acid and Recycled PLA for Synthesis of Rigid Polyurethane Foams Susceptible to Biodegradation.

作者信息

Paciorek-Sadowska Joanna, Borowicz Marcin, Chmiel Ewelina, Lubczak Jacek

机构信息

Department of Polyurethane Chemistry and Technology, Institute of Materials Engineering, Kazimierz Wielki University, Chodkiewicza 30 St, 85-064 Bydgoszcz, Poland.

Department of Organic Chemistry, Rzeszów University of Technology, Al. Powstańców Warszawy 6, 35-959 Rzeszów, Poland.

出版信息

Int J Mol Sci. 2020 Dec 23;22(1):69. doi: 10.3390/ijms22010069.

Abstract

Two polyol raw materials were obtained in the conducted research, one based on metasilicic acid (MSA), the other based on poly(lactic acid) (PLA) waste. The obtained polyols were characterized in terms of their applicability for the production of rigid polyurethane foams (RPUFs). Their basic analytical properties (hydroxyl number, acid number, elemental analysis) and physicochemical properties (density, viscosity) were determined. The assumed chemical structure of the obtained new compounds was confirmed by performing FTIR and H NMR spectroscopic tests. Formulations for the synthesis of RPUFs were developed on the basis of the obtained research results. A mixture of polyols based on MSA and PLA in a weight ratio of 1:1 was used as the polyol component in the polyurethane formulation. The reference foam in these tests was a foam that was synthesized only on the basis of MSA-polyol. The obtained RPUFs were tested for basic functional properties (apparent density, compressive strength, water absorption, thermal conductivity coefficient etc.). Susceptibility to biodegradation in soil environment was also tested. It was found that the use of mixture of polyols based on MSA and PLA positively affected the properties of the obtained foam. The polyurethane foam based on this polyol mixture showed good thermal resistance and significantly reduced flammability in comparison with the foam based MSA-polyol. Moreover, it showed higher compressive strength, lower thermal conductivity and biodegradability in soil. The results of the conducted tests confirmed that the new foam was characterized by very good performance properties. In addition, this research provides information on new waste management opportunities and fits into the doctrine of sustainable resource management offered by the circular economy.

摘要

在本研究中获得了两种多元醇原料,一种基于偏硅酸(MSA),另一种基于聚乳酸(PLA)废料。对所获得的多元醇在用于生产硬质聚氨酯泡沫(RPUF)方面的适用性进行了表征。测定了它们的基本分析性质(羟值、酸值、元素分析)和物理化学性质(密度、粘度)。通过进行傅里叶变换红外光谱(FTIR)和核磁共振氢谱(H NMR)测试,证实了所获得新化合物的假定化学结构。基于所获得的研究结果,制定了RPUF的合成配方。在聚氨酯配方中,将基于MSA和PLA的多元醇以1:1的重量比混合用作多元醇组分。这些测试中的参比泡沫是仅基于MSA - 多元醇合成的泡沫。对所获得的RPUF进行了基本功能性质测试(表观密度、抗压强度、吸水率、导热系数等)。还测试了其在土壤环境中的生物降解敏感性。结果发现,使用基于MSA和PLA的多元醇混合物对所获得泡沫的性能有积极影响。与基于MSA - 多元醇的泡沫相比,基于这种多元醇混合物的聚氨酯泡沫具有良好的耐热性,并且可燃性显著降低。此外,它在土壤中表现出更高的抗压强度、更低的导热系数和生物降解性。所进行测试的结果证实,这种新型泡沫具有非常良好的性能。此外,本研究提供了关于新的废物管理机会的信息,并符合循环经济所提供的可持续资源管理原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7baa/7795053/15459579aea9/ijms-22-00069-g001.jpg

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