Department of Chemical Engineering and Materials, Universidad Complutense de Madrid (UCM), Av. Complutense s/n, 28040 Madrid, Spain.
Department of Mechanical, Chemical and Industrial Design Engineering, ETSIDI, Universidad Politécnica de Madrid (UPM), Ronda de Valencia 3, 28012 Madrid, Spain.
Molecules. 2020 Jan 25;25(3):526. doi: 10.3390/molecules25030526.
Nanocelluloses (NC) increase mechanical and barrier paper properties allowing the use of paper in applications actually covered by other materials. Despite the exponential increase of information, NC have not been fully implemented in papermaking yet, due to the challenges of using NC. This paper provides a review of the main new findings and emerging possibilities in this field by focusing mainly on: (i) Decoupling the effects of NC on wet-end and paper properties by using synergies with retention aids, chemical modification, or filler preflocculation; (ii) challenges and solutions related to the incorporation of NC in the pulp suspension and its effects on barrier properties; and (iii) characterization needs of NC at an industrial scale. The paper also includes the market perspectives. It is concluded that to solve these challenges specific solutions are required for each paper product and process, being the wet-end optimization the key to decouple NC effects on drainage and paper properties. Furthermore, the effect of NC on recyclability must also be taken into account to reach a compromise solution. This review helps readers find upscale options for using NC in papermaking and identify further research needs within this field.
纳米纤维素(NC)可提高纸张的机械性能和阻隔性能,使纸张能够应用于原本由其他材料覆盖的领域。尽管相关信息呈指数级增长,但 NC 尚未在造纸领域得到充分应用,这是因为其在应用过程中存在诸多挑战。本文通过主要关注以下三个方面,对该领域的主要新发现和新兴可能性进行了综述:(i)通过与留着助剂、化学改性或填料预絮聚协同作用,分离 NC 对湿部和纸张性能的影响;(ii)将 NC 掺入纸浆悬浮液中及其对阻隔性能的影响相关的挑战和解决方案;(iii)工业规模下 NC 的表征需求。本文还包括市场展望。结论认为,要解决这些挑战,需要针对每种纸产品和工艺制定具体的解决方案,而湿部优化是分离 NC 对排水和纸张性能影响的关键。此外,还必须考虑 NC 对可回收性的影响,以找到一个折衷的解决方案。本文综述有助于读者找到在造纸中使用 NC 的规模化选择,并确定该领域进一步的研究需求。