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November 28, 2012ACS Sustainable Chemistry & Engineering158 citations

Rigid Polyurethane Foams from Cardanol: Synthesis, Structural Characterization, and Evaluation of Polyol and Foam Properties

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KSKattimuttathu I. Suresh

Key Points

  • This research aims to develop biobased polyols from cardanol for use in rigid polyurethane foams and assess their properties.
  • Synthesis of polyols via oxidation of cardanol using hydrogen peroxide
  • Characterization of polyols through IR, 1H-NMR, 13C NMR, and mass spectroscopic techniques
  • Evaluation of foam properties such as density, compressive strength, and viscoelastic characteristics
  • Polyols exhibited hydroxyl values of 350–400 mg KOH/g
  • Rigid polyurethane foams demonstrated good physical and mechanical properties
  • Foams made from biobased polyols compared favorably to petroleum-based counterparts in performance.

Abstract

Global efforts to find renewable feedstocks for the chemical industry are aimed at replacing fossil reserves and a reduction in global warming by employing environmently friendly technologies (green chemistry approaches) for specialty chemical manufacturing. Cardanol, obtained as a byproduct of the cashew processing industry, is an important renewable resource and a unique phenolic compound carrying a 15-carbon side chain in meta position with varying degrees of unsaturation. In this work, the synthesis of new biobased polyols for rigid polyurethane (PU) foams through oxidation of side chain unsaturation is reported using the environmentally benign reagent hydrogen peroxide. Polyols with hydroxyl values in the range of 350–400 mg KOH/g were prepared through epoxidation followed by hydrolysis and characterized for structure using IR,1H-NMR, 13C NMR, and mass spectroscopic techniques. The foaming characteristics were studied, and the polyols were successfully used in making rigid polyurethane foams with good physical and mechanical properties. The foams were characterized for density, compressive strength, morphology, and viscoelastic properties. The properties are compared with that of foams prepared using standard petroleum-based polyols.

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Kattimuttathu I. Suresh (2012) studied this question.

synapsesocial.com/papers/6a27aa3426d9acd37c810fechttps://doi.org/10.1021/sc300079z
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