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Phenolic resol resin from phenolated corn bran and its characteristics

机译:酚醛玉米麸酚醛酚醛树脂及其特性

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摘要

To prepare phenolic resol resin, corn bran (CB) was liquefied in the presence of phenol and the liquefied CB was condensed with formaldehyde under alkaline condition. From NMR spectra of phenolated CB and phenolated CB-based resol resin, it was found that phenol was reacted with depolymerized CB components and the phenolated CB was methylolated by condensation with formaldehyde. Molecular weight distribution was divided into a high molecular weight zone, attributed mainly to phenolated CB, and a low molecular weight zone, which was attributed to the condensation reactants of formaldehyde and the unreacted phenol of liquefied CB. When reaction conditions became severe, a high molecular weight zone was increased. Formalclehyde/unreacted phenol of liquefied CB molar ratio most affected the change of a low molecular weight zone. To reduce the viscosity of the phenolated CB-based resol resin, a milder condensation condition was required compared with that for preparing the conventional resol resin. Properties of the resol resin were comparable to those of conventional resol resin for plywood manufacture. (C) 2002 Wiley Periodicals, Inc. [References: 15]
机译:为了制备酚醛可熔酚醛树脂,将玉米麸(CB)在苯酚存在下液化,然后在碱性条件下将液化的CB与甲醛缩合。从苯酚化的CB和苯酚化的CB类甲阶酚醛树脂的NMR光谱中,发现苯酚与解聚的CB组分反应,并且苯酚化的CB通过与甲醛缩合而被羟甲基化。分子量分布分为高分子量区和低分子量区,高分子量区主要归因于苯酚化的CB,低分子量区归因于甲醛与液化CB的未反应酚的缩合反应。当反应条件变得严格时,高分子量区增加。液化CB摩尔比的甲醛/未反应酚对低分子量区域的变化影响最大。为了降低酚醛化CB类甲阶酚醛树脂的粘度,与制备常规甲阶酚醛树脂相比需要更缓和的缩合条件。该可熔酚醛树脂的性能与用于胶合板制造的常规可熔酚醛树脂的性能相当。 (C)2002 Wiley Periodicals,Inc. [参考:15]

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