Bhattarai Mamata, Al-Terke Hedar, Liu Kai, Wan Zhangmin, Kilpeläinen Petri, King Alistair W T, Khakalo Alexey, Xu Jiayun, Xu Chunlin, Ras Robin H A, Mattos Bruno D, Rojas Orlando J
Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, Espoo, FI-00076, Finland.
Department of Applied Physics, Aalto University, Espoo, FI-00076, Finland.
Adv Sci (Weinh). 2025 May;12(17):e2416686. doi: 10.1002/advs.202416686. Epub 2025 Mar 10.
The agrochemical run-off associated with crop control is an unintended consequence of droplet rebound from plant foliage, which negatively affects crop performance and the environment. This is most critical in water-based formulations delivered on plant surfaces that are typically waxy and nonwetting. This study introduces an alternative to synthetic surfactants and high molecular weight polymers that are used as spreading agents for agrochemicals. Specifically, biopolymeric adjuvants (hemicelluloses and oligomeric lignin) extracted from wood by pressurized hot water are shown for their synergistic pinning capacity and surface activity that can effectively suppress droplet rebound from hydrophobic surfaces. Hemicellulose and lignin mixtures, alongside several model compounds, are investigated for understanding the dynamics of droplet impact and its correlation with biomacromolecule formations. The benefit of utilizing lean solutions (0.1 wt.% concentration) is highlighted for reducing droplet rebounding from leaves, outperforming synthetic systems in current use. For instance, a tenfold deposition improvement is demonstrated on citrus leaves, because of a significantly suppressed droplet roll-off. These results establish the excellent prospects of wood extracts to improve crop performance.
与作物控制相关的农用化学品径流是植物叶片上液滴反弹产生的意外后果,这会对作物生长和环境产生负面影响。在通常呈蜡质且不湿润的植物表面施用的水基配方中,这种情况最为严重。本研究介绍了一种替代合成表面活性剂和高分子量聚合物的物质,这些物质用作农用化学品的铺展剂。具体而言,通过加压热水从木材中提取的生物聚合物助剂(半纤维素和低聚木质素),因其协同钉扎能力和表面活性而被证明可以有效抑制液滴从疏水表面反弹。研究了半纤维素和木质素混合物以及几种模型化合物,以了解液滴撞击的动力学及其与生物大分子形成的相关性。强调了使用稀溶液(0.1 wt.%浓度)在减少叶片上液滴反弹方面的优势,其性能优于目前使用的合成体系。例如因显著抑制了液滴滚落,在柑橘叶片上的沉积量提高了十倍。这些结果表明木材提取物在改善作物生长方面具有良好前景。