从木质纤维素废料中获得环保高附加值产品

Elizabeth Quintana Rodríguez, Domancar Orona Tamayo, J. Cervantes, Flora Itzel Beltrán Ramirez, María Alejandra Rivera Trasgallo, Adriana Berenice Espinoza Martínez
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摘要

近年来,人们一直在寻找农业和其他工业产生的木质纤维素废物的替代品,因为它是可生物降解和可再生的。根据其组成和物理性质,木质纤维素废物可用于各种各样的应用。在本章中,我们将重点介绍用于提取天然纤维素纤维的不同处理方法(化学,物理,生物方法),以用于更复杂的应用,如增强生物复合材料。由于纤维素可以呈现不同的形态,取决于来源,有可能获得纤维素纳米晶体(cnc),微纳米纤化纤维素(MFC/NFC)和细菌纳米纤维素(BNC),在工业上有不同的应用。在不同的纤维素纳米材料突出的特点中,我们可以发现改善的隔音和防潮性能,事实上,它们是环保的,增加了抗拉强度,减轻了重量。这些材料有能力取代金属部件、石油产品和不可再生材料。纤维素纳米材料的潜在应用是在汽车、建筑、航空航天等行业。此外,本章还展示了这些新材料或产品的全球市场预测。综上所述,木质纤维素残留物是纤维素的丰富来源,可以提取出具有高附加值和环保特性的产品。
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Getting Environmentally Friendly and High Added-Value Products from Lignocellulosic Waste
In recent years, alternatives have been sought for the reuse of lignocellulosic waste generated by agricultural and other industries because it is biodegradable and renewable. Lignocellulosic waste can be used for a wide variety of applications, depending on their composition and physical properties. In this chapter, we focus on the different treatments that are used for the extraction of natural cellulose fibers (chemical, physical, biological methods) for more sophisticated applications such as reinforcement in biocomposites. Due to the different morphologies that the cellulose can present, depending from sources, it is possible to obtain cellulose nanocrystals (CNCs), micro- nanofibrillated cellulose (MFC/NFC), and bacterial nanocellulose (BNC) with different applications in the industry. Among the different cellulose nanomaterials highlighted characteristics, we can find improved barrier properties for sound and moisture, the fact that they are environmentally friendly, increased tensile strength and decreased weight. These materials have the ability to replace metallic components, petroleum products, and nonrenewable materials. Potential applications of cellulose nanomaterials are present in the automotive, construction, aerospace industries, etc. Also, this chapter exhibits global market predictions of these new materials or products. In summary, lignocellulosic residues are a rich source of cellulose that can be extracted to obtain products with high value-added and eco-friendly characteristics.
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