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Carbohydrate elimination of alkaline-extracted lignin liquor by steam explosion and its methylolation for substitution of phenolic adhesive.

机译:通过蒸汽爆炸消除碱性提取的木质素液中的碳水化合物并将其羟甲基化以取代酚醛粘合剂。

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摘要

Steam explosion pretreatment was proposed to eliminate carbohydrates in the alkali lignin liquor isolated from corn stalk and the obtained lignin liquor was concentrated and methylolated without further purification process for substitution of phenolic resin as plywood adhesive. Moreover, FTIR and GPC analysis technology was applied to characterize the lignin variation during the steam explosion treatment and the methylolation modification. The results demonstrated that steam explosion could effectively decrease the carbohydrate content of lignin liquor and the operational parameters of steam pressure 1.8 MPa and pressure maintaining time 5 min were obtained as preferable conditions for less carbohydrate content and higher lignin yield. The lignin methylolated under optimized conditions was found to successfully substitute 50% of phenolic resin as wood adhesive with approved bonding strength and lower free formaldehyde and phenol contents. The FTIR and GPC analysis suggested that lignin showed higher content of carbonyl group and narrower molecular weight distribution due to depolymerization effect during steam explosion and formaldehyde was mainly incorporated into the aromatic C5 position of G unit in the methylolation process. Overall, the study indicates that steam explosion is an effective treatment to improve the purity of lignin liquor and the direct substitution of phenolic adhesive by methylolated lignin liquor significantly reduces the costs for lignin recovery, which offers a promising approach for enhancing the commercial operation of a steam-explosion-derived biorefinery.
机译:提出了蒸汽爆炸预处理以去除玉米秸秆中分离出的碱性木质素液中的碳水化合物,然后将所得木质素液浓缩并羟甲基化,无需进一步纯化工艺即可取代酚醛树脂作为胶合板粘合剂。此外,FTIR和GPC分析技术用于表征蒸汽爆炸处理和羟甲基化改性过程中木质素的变化。结果表明,蒸汽爆炸可有效降低木质素液中的碳水化合物含量,并获得了蒸汽压力为1.8 MPa,保压时间为5 min的操作参数,作为降低碳水化合物含量和提高木质素收率的优选条件。发现在优化条件下羟甲基化的木质素可以成功替代50%的酚醛树脂作为木材粘合剂,并具有公认的粘合强度和较低的游离甲醛和酚含量。 FTIR和GPC分析表明,木质素由于蒸汽爆炸过程中的解聚作用而显示出较高的羰基基团含量和较窄的分子量分布,甲醛在羟甲基化反应中主要被引入G单元的芳族C 5 位置。处理。总体而言,该研究表明,蒸汽爆破是提高木质素液纯度的有效方法,而羟甲基化木质素液直接取代酚醛胶粘剂可显着降低木质素回收成本,这为增强木质素工业化生产提供了有希望的方法。蒸汽爆炸衍生的生物精炼厂。

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