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Prospects for Future Applications of Cellulose Acetate

机译:乙酸纤维素未来应用的前景

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The prospects for future applications of cellulose acetate (CA) and cellulose esters (CE) were assessed via an analysis of literature data. An examination of more than 50,000 citations in the published literature with relevance to CA and CE has shown that, while the R&D effort continues without discernible slow-down, the emphasis has shifted in favor of D at the expense of R in recent years; more publications now originate in Southeast Asian countries; and most current journal articles deal with specialty products, such as membranes, controlled release agents, and biopolymers. The prospects for future applications are viewed as being related to the ability to add new performance features to CA, particularly thermal processability, water-dispersibility, and the ability to interact with other polymers on the molecular level. This can be achieved by such secondary modifications as the introduction of plasticizing (mixed) ester substituents, carboxyl groups, and the use of (monofunctional) oligomers in block copolymers, respectively. In addition, the adoption of acetylation technology to lower grade pulps and even wood and wood fibers may result in new business opportunities in thermoplastic and soluble wood esters, or in acetylated solid wood products with superior dimensional, biological and light-stability characteristics.
机译:对于醋酸纤维素(CA),纤维素酯(CE)的未来应用的前景是通过文献数据的分析进行评估。在相关性CA和CE公开发表的文献超过50,000引用的检查表明,当R&d工作继续没有明显的放缓,重点已经倾向于d在R的近年来的费用转移;更多的出版物现在起源于东南亚国家;和目前大多数期刊文章处理的特色产品,如膜,控释剂和生物聚合物。为未来的应用前景被视为被与添加新的性能特征以CA,尤其是热加工性,水分散性,以及与在分子水平上的其它聚合物相互作用的能力的能力。这可以通过这样的二次修改引入增塑(混合)酯取代基,羧基基团,并且在嵌段共聚物中使用的(单官能)的低聚物,分别来实现。此外,通过乙酰化技术来降低等级的浆料乃至木材和木纤维可能会导致新的商业机会在热塑性和可溶性木酯,或乙酰化中实木产品具有优异的尺寸,生物和光稳定性特性。

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