Université de Technologie de Compiègne, ESCOM, TIMR (Integrated Transformations of Renewable Matter), Centre de Recherche Royallieu-CS, 60 319-60 203 Compiègne Cedex, France.
Université de Technologie de Compiègne, ESCOM, TIMR (Integrated Transformations of Renewable Matter), Centre de Recherche Royallieu-CS, 60 319-60 203 Compiègne Cedex, France.
Int J Biol Macromol. 2023 Jul 15;243:125106. doi: 10.1016/j.ijbiomac.2023.125106. Epub 2023 May 29.
Lignin nanoparticles (LNPs) have become a hot topic recently because of their improved physicochemical properties and the excellent integration into various industrial sectors compared to lignin. However, the green large-scale production of stable LNPs severely restricts the high-value applications of LNPs. In this work, a simple and potentially scalable continuous-flow mode setup with a tubular flow reactor was designed for the green preparation of stable alkali LNPs assisted by ultrasound. When the flow rates of lignin solution and nitric acid solution were 8.00 mL/min and 2.67 mL/min respectively, and the length of the tube was 5.5 m, the average residence time of mixed solution was 62.2 s in the tubular reactor. Spheroid nanoparticles with an average size of 97.2 nm were obtained under this optimized condition. Furthermore, the results showed a better control of the mixing compared to the batch process, resulting in a homogeneous distribution of smaller particle sizes thus improving stability and UV-blocking properties. This is attributed to the better mixing and excellent mass transfer characteristics in the tube, which provides favorable conditions for the full contact and uniform dispersion of the mixed solution. More importantly, continuous flow mode makes it possible to prepare LNPs with excellent physicochemical properties on a large scale, which will bring great opportunities for the industrial production and application of LNPs.
木质素纳米颗粒(Lignin nanoparticles,LNPs)由于其改善的物理化学性质以及与木质素相比在各个工业领域的出色整合而成为热门话题。然而,稳定 LNPs 的绿色大规模生产严重限制了 LNPs 的高价值应用。在这项工作中,设计了一种简单且具有潜在可扩展性的连续流模式装置,采用管式流反应器,在超声辅助下绿色制备稳定的碱性 LNPs。当木质素溶液和硝酸溶液的流速分别为 8.00 mL/min 和 2.67 mL/min,且管长为 5.5 m 时,混合溶液在管式反应器中的平均停留时间为 62.2 s。在优化条件下,得到了平均粒径为 97.2 nm 的球形纳米颗粒。此外,结果表明与分批过程相比,混合过程得到了更好的控制,从而导致粒径分布更加均匀,提高了稳定性和紫外线阻隔性能。这归因于管内更好的混合和优异的传质特性,为混合溶液的充分接触和均匀分散提供了有利条件。更重要的是,连续流模式使得在大规模上制备具有优异物理化学性能的 LNPs 成为可能,这将为 LNPs 的工业生产和应用带来巨大机遇。