A review on lignocellulose chemistry, nanostructure, and their impact on interfacial interactions for sustainable products development

A review on lignocellulose chemistry, nanostructure, and their impact on interfacial interactions for sustainable products development
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DOI:
10.1007/s10853-022-07992-1
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发表时间:
2022-12
影响因子:
4.5
通讯作者:
María C. Iglesias;Diego Gomez-Maldonado;V. Davis;M. Peresin
María C. Iglesias;Diego Gomez-Maldonado;V. Davis;M. Peresin
中科院分区:
材料科学3区
文献类型:
--
作者:
María C. Iglesias;Diego Gomez-Maldonado;V. Davis;M. Peresin

文献摘要

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在过去的十年里,纳米纤维素在新应用中的应用使这种可再生资源成为石油材料的一种有前途的替代品。当试图利用不同原料和不同化学成分的木质纤维材料并将其融入复合材料时,了解此类复合材料不同化学成分之间的界面相互作用是至关重要的。同样,这些相互作用将决定木质纤维悬浮液的行为,从而直接影响所得材料的固有性质。正如这篇综述所解释的,了解水介质中发生的原子和分子相互作用以及其他现象,可以打开一系列可能的复合材料和应用,这些材料可以针对不同的可再生和可持续材料。因此,可以加强森林和农业副产品的使用,增加其潜在价值,并提供一种更环保的替代方案来取代以化石为基础的聚合物。
Over the last decade, the utilization of nanocellulose for novel applications has positioned this renewable source as a promising alternative substitution for petroleum-based materials. When attempting to utilize and incorporate lignocellulosic materials from different raw materials and varying chemical compositions into composite materials, it is crucial to understand the interfacial interactions between the different chemical components of such composites. Likewise, these interactions will dictate the behavior of the lignocellulosic suspensions, thus directly impacting the intrinsic properties of the resulting materials. As explained in this review, understanding the atomic and molecular interactions, and other phenomena occurring in the water media, opens a wide range of possible composite materials and applications that can be targeted with different renewable and sustainable materials. Consequently, the use of forest and agricultural by-products can be enhanced, increasing its potential value and providing a more environmentally friendly alternative to displace fossil-based polymers.