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The suitability of steam exploded vitis vinifera and alkaline lignin for the manufacture of fiberboard

机译:蒸汽爆破葡萄和碱性木质素在纤维板生产中的适用性

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摘要

The main objective of this study was to explore the suitability of Vitis vinifera as a raw material and alkaline lignin as a natural binder for fiberboard manufacturing. In the first step, Vitis vinifera was steam- exploded through a thermo-mechanical vapor process in a batch reactor, and the obtained pulp was dried, ground, and pressed to produce the boards. The effects of pretreatment factors and pressing conditions on the chemical composition of the fibers and the physico-mechanical properties of binderless fiberboards were evaluated, and the conditions that optimize these properties were found. A response surface method based on a central composite design and multiple-response optimization was used. The variables studied and their respective variation ranges were: pretreatment temperature (Tr: 190-210ºC), pretreatment time (tr: 5-10 min), pressing temperature (Tp: 190-210ºC), pressing pressure (Pp: 8-16MPa), and pressing time (tp: 3-7min). The results of the optimization step show that binderless fiberboards have good water resistance and weaker mechanical properties. In the second step, fiberboards based on alkaline lignin and Vitis vinifera pulp produced at the optimal conditions determined for binderless fiberboards were prepared and their physico-mechanical properties were tested. Our results show that the addition of about 15% alkaline lignin leads to the production of fiberboards that fully meet the requirements of the relevant standard specifications
机译:这项研究的主要目的是探索将葡萄作为原料,将碱性木质素作为纤维板制造的天然粘合剂的适用性。第一步,在间歇式反应器中通过热机械蒸气法将葡萄(Vitis vinifera)蒸汽分解,然后将所得纸浆干燥,研磨并压制成板。评估了预处理因素和压榨条件对纤维化学成分和无粘结剂纤维板的物理力学性能的影响,并找到了优化这些性能的条件。使用了基于中心复合设计和多响应优化的响应面方法。研究的变量及其各自的变化范围是:预处理温度(Tr:190-210ºC),预处理时间(tr:5-10分钟),压制温度(Tp:190-210ºC),压制压力(Pp:8-16MPa) ,然后按时间(tp:3-7分钟)。优化步骤的结果表明,无粘结剂纤维板具有良好的耐水性和较弱的机械性能。在第二步中,准备了基于碱性木质素和葡萄纸浆的纤维板,该纤维板是在无粘结剂纤维板的最佳条件下生产的,并测试了其物理机械性能。我们的结果表明,添加约15%的碱性木质素可以生产出完全满足相关标准规格要求的纤维板

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