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Update on Bio-Refining and Nanocellulose Composite Materials Manufacturing

机译:生物精炼和纳米纤维素复合材料制造的最新进展

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摘要

Nanocellulose is a high value material that has gained increasing attention because of its high strength, stiffness, unique photonic and piezoelectric properties, high stability and uniform structure. One of the factors limiting the potential of nanocellulose and the vast array of potential new products is the ability to produce high-volume quantities of this nano-material. However, recent research has demonstrated that nanocellulose can be efficently produced in large volumes from wood at relatively low cost by the incorporation of ionizing radiation in the process stream. Ionizing radiation causes significant break down of the polysaccharides and leads to the production of potentially useful gaseous products such as H2 and CO. Ionizing radiation processing remains an open field, ripe for innovation and application. This presentation will review the strong collaboration between the National Institute of Standards and Technology (NIST) and its academic partners pursuing the demonstration of applied ionizing radiation processing to plant materials for the manufacturing and characterization of novel nanomaterials.
机译:纳米纤维素是一种高价值材料,由于其高强度,刚度,独特的光子和压电特性,高稳定性和均匀的结构而受到越来越多的关注。限制纳米纤维素潜力和众多潜在新产品的因素之一是能够生产大量这种纳米材料的能力。但是,最近的研究表明,通过在工艺流中引入电离辐射,可以以相对较低的成本从木材有效地大量生产纳米纤维素。电离辐射会导致多糖大量分解,并导致产生潜在有用的气态产物(例如H2和CO)。电离辐射处理仍是一个开放领域,为创新和应用提供了成熟的时机。本演讲将回顾美国国家标准技术研究院(NIST)及其学术合作伙伴之间的强有力合作,这些合作伙伴正在示范将电离辐射处理应用于植物材料以制造和表征新型纳米材料的过程。

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