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Assessing the technical and environmental performance of wood-based fiber laminates with lignin based phenolic resin systems

机译:用基于木质素基酚醛树脂系统评估木材基纤维层压板的技术和环境性能

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Over the past five years, the mobilization of fiber wood assortments for promoting material use, and the integration of supply and conversion chains between biorefineries and the wood panel industry have been intensively investigated. In this regard, the production of fibers and by-products from industrial wood and the substitution of phenolic resin systems with natural polymers such as lignin offer a promising alternative for increasing the bio-based content in composite materials. A direct use of the natural lignin without intermediate downstream processing could support the implementation of energy efficient and short processing routes. But it also could open new challenges such as to identify the extent to which substitution of phenolic resins are technically feasible without compromising the required mechanic performances of the obtained products. For this reason it is needed to identify the material compositions in laminate production, which exhibit good mechanic performance values and in the same time contribute to the reduction of environmental impacts. Considering these constraints in material design, practical results from material testing of different composite materials were used to conduct a comparative Life Cycle Assessment (LCA). The environmentally most preferable compositions of beech fiber laminates are identified for the selected product compositions. Furthermore a LCA scenario analysis is applied to compare the environmental preferability of the use of industrial wood assortments in fiber provisioning against the use of industrial wood residues within coupled production schemes of the wood based bioeconomy. The results show that in nine out of eleven impact categories reduction potentials of up to 39% are achieveable and that the use of residue streams shows a rather limited benefit in realizing further reduction potentials.
机译:在过去的五年中,集中研究了对促进材料使用的纤维木材分类以及供应和转换链的整合,以及木板行业的供应和转换链的整合。在这方面,生产工业木材的纤维和副产品以及具有天然聚合物如木质素的酚醛树脂体系的替代提供了有希望的替代方案,用于增加复合材料中的生物基含量。直接使用无需中间下游处理的天然木质素可以支持节能和简短的加工路线的实现。但它还可以开辟新的挑战,以确定酚醛树脂的替代在技术上可行的程度,而不会影响所得产物所需的机械表演。因此,需要鉴定层压生产中的材料组合物,其表现出良好的机械性能值,同时有助于降低环境影响。考虑到材料设计中的这些约束,使用不同复合材料的材料测试的实际结果进行比较生命周期评估(LCA)。鉴定用于所选产物组合物的环形纤维层压板的环保最优选的组合物。此外,应用LCA情景分析来比较利用工业木材分类在纤维供应中使用工业木质残留物的使用环境的环境优异性,从而在木基生物经济的耦合生产方案中。结果表明,在11个冲击类别中的九个中,可实现高达39%的降低电位,并且使用残留物流的使用表明,在实现进一步的减少电位方面表现出相当有限的益处。

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