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Bio-based polyurethane foam preparation employing lignin from corn stalk enzymatic hydrolysis residues

机译:利用玉米秸秆酶解残渣中的木质素制备生物基聚氨酯泡沫

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Enzymatic hydrolysis residues (EHR) from corn stalk are industrial waste from the cellulosic ethanol industry. Lignin was separated as a bio-based polyol from EHR replacing partial petroleum-based polyether polyol to prepare bio-based polyurethane (BPU) foams without any other biomass pretreatment. Single factor experiment and response surface methodology (RSM) were employed to optimize separation conditions and reveal the significant influence of the interaction of conditions on the yield of separated lignin (SL). The effect of SL content (2.5, 5.0, 7.5, 10 and 15%) on the foams morphology and mechanical properties was assessed. Scanning electron microscopy (SEM) results implied that the cell shape was considerably affected by the large SL content, which contributed to an irregular, inhomogeneous, and thick cell wall. An astonishing 9.56 times increase in the compressive modulus and exponential 97.93 times boost in the compressive strength of BPU foams were attributed to the content of 15% SL without any further surface chemical modification. This present paper reports a green, potential and promising method for complete utilization of lignin from EHR in consideration of their abundant supply to greatly enhance the mechanical properties of BPU foams.
机译:玉米秸秆的酶促水解残留物(EHR)是纤维素乙醇行业的工业废料。木质素作为生物基多元醇从EHR中分离出来,代替了部分石油基聚醚多元醇,无需任何其他生物质预处理即可制备生物基聚氨酯(BPU)泡沫。采用单因素实验和响应面方法(RSM)来优化分离条件,并揭示条件相互作用对分离的木质素(SL)产量的重大影响。评估了SL含量(2.5%,5.0%,7.5%,10%和15%)对泡沫形态和力学性能的影响。扫描电子显微镜(SEM)结果表明,大的SL含​​量极大地影响了细胞的形状,这导致不规则,不均匀和厚的细胞壁。压缩模量惊人地增加了9.56倍,而BPU泡沫的压缩强度却以指数方式增加了97.93倍,这归因于15%SL的含量,而没有任何进一步的表面化学改性。鉴于其丰富的供应量,可以大大提高BPU泡沫的机械性能,因此,本文报道了一种绿色,潜在且有前途的方法,可以完全利用EHR中的木质素。

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