4.7 Article

High-Strength and Low-Cost Biobased Polyurethane Foam Composites Enhanced by Poplar Wood Powder Liquefaction

Journal

POLYMERS
Volume 13, Issue 17, Pages -

Publisher

MDPI
DOI: 10.3390/polym13172999

Keywords

polyurethane foam composites; poplar wood powder liquefaction; liquefaction; environmentally friendly

Funding

  1. National Natural Science Foundation of China [31890773]
  2. Beijing Forestry University Outstanding Young Talent Cultivation Project [2019JQ03004]

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An environmentally friendly liquefaction of wood powder was prepared by atmospheric pressure liquefaction technology to replace non-renewable petroleum polyols in the preparation of polyurethane foam composites. The optimal process time for wood powder liquefaction to replace traditional petroleum polyols was found to be 110 minutes. The polyurethane foam based on poplar wood with wood powder modification showed higher compression strength and density compared to traditional polyurethane foam without wood powder modification.
An environmentally friendly liquefaction of wood powder was prepared by atmospheric pressure liquefaction technology to replace the non-renewable petroleum polyols in the preparation of polyurethane foam composites. The liquefaction time varied from 0 min to 140 min. The composition of liquefied products and the effects of liquefaction time on the morphology, apparent density and mechanical properties of polyurethane foam composites were investigated. The results showed that the optimal process time for the preparation of wood powder liquefaction products, which could replace traditional petroleum polyols, was 110 min. At this time, polyether polyols are the main liquefaction products, with an average molecular weight in Mn reaching 237 and average molecular weight in Mw reaching 246. The functional group of the liquefied product consisted mainly of hydroxyl, with the highest content of 1042 mg KOH/g and the lowest acid number of 1.6 mg KOH/g. In addition, the surface of the polyurethane foam based on poplar wood is dominated by closed cell foam; thus its foam has good heat insulation and heat preservation properties. At 110 min liquefaction time, the apparent density of polyurethane foam is 0.164 g/cm(3) and the compression strength is 850 kPa, which is higher than that of traditional polyurethane foam (768 kPa), which is without wood powder modification. Replacing petroleum polyol with renewable wood powder liquefaction products to prepare biomass-based polyurethane foam composite materials, researching complex chemical changes in different liquefaction stages, and finding the best liquefaction conditions are of great significance to optimize the performance of polyurethane, address the shortage of resources and reduce environmental pollution.

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