Synthesis of Polyurethane from Diphenyl Methane 4,4 Diisocyanate (Mdi) Polymerization with Hydroxilated Avocado Oil Polyol

H. Sihotang
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Abstract

Polymerization between polyol and isocyanate compounds produces polyurethane in different forms. Polyol used in this study utilized spoiled avocado as the oil source for polyol to produce polyurethane. Avocado oil was epoxidized with formic acid (HCOOH) and H2SO4 catalyst at 40 – 45oC followed by hydrolysis reaction to produce polyol reaction. Next polyol was purified and structure confirmation was done using FT-IR spectroscopy analysis. Polyol was then reacted with diphenylmethane 4,4 diisocyanate (MDI) with ratios of (polyol : MDI) 9:1; 8:2; 7:3; 6:4; and 5:5 (v/v) in a total volume of 10 mL with open air stirring at 40 – 45oC to produce polyurethane. Characterization for the form was observed visually followed by the determination of gel content, density and structure using FT-IR spectroscopy. The results of polyol from avocado oil reacted with diphenylmethane 4,4 diisocyanate for each of the mixing ratio to produce polyurethane is gel content of 74.63% to 99.80% where the higher MDI ratio is, the higher gel content becomes. Density determination from the polyurethane produced is between 0.1341 g/cm3 to 0.7220 g/cm3. FT-IR spectrometer analysis to polyurethane produced is marked with the peaks at 3400 – 3300 cm-1, 2270 – 1940 cm-1, 1700-1600 cm-1 and 1590 – 1540 cm-1 wavelengths which are the characteristic of urethane functional groups.
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二苯基甲烷4,4二异氰酸酯(Mdi)与羟基化鳄梨油多元醇聚合合成聚氨酯
多元醇和异氰酸酯化合物之间的聚合产生不同形式的聚氨酯。本研究使用的多元醇是利用变质的鳄梨作为多元醇的油源来生产聚氨酯。在40 ~ 45℃条件下,用甲酸(HCOOH)和H2SO4催化剂对鳄梨油进行环氧化,并进行水解反应生成多元醇反应。然后对多元醇进行纯化,并用红外光谱分析对其结构进行确证。多元醇与二苯基甲烷4,4二异氰酸酯(MDI)以(多元醇:MDI) 9:1的比例反应;的宣告;7:3;4;和5:5 (v/v),总容积为10ml,在40 - 45℃露天搅拌,制得聚氨酯。采用红外光谱法测定凝胶含量、密度和结构。牛油果油多元醇与二苯基甲烷4,4二异氰酸酯在不同配比下反应制得的聚氨酯凝胶含量为74.63% ~ 99.80%,MDI配比越高,凝胶含量越高。所得聚氨酯的密度测定值在0.1341 g/cm3至0.7220 g/cm3之间。用FT-IR光谱仪对生产的聚氨酯进行分析,发现在3400 ~ 3300 cm-1、2270 ~ 1940 cm-1、1700 ~ 1600 cm-1和1590 ~ 1540 cm-1波长处的峰是聚氨酯官能团的特征。
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