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Lignin-Based Chemicals as Green Dispersants for Liquid Formulation: Better Protection Against Crystal Growth

机译:木质素基化学品作为液体制剂的绿色分散剂:更好地防止晶体生长

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The development of liquid formulations such as suspension concentrates is increasing in the crop-protection industry. However, Ostwald ripening, also called crystal growth, can irreversibly occur in the aqueous suspension even at low solubility levels of the active material and can cause severe changes in the formulation during storage. Lgnosulfonar.es are natural water-soluble polymers based on wood biorefinery that can be used as crystal growth inhibitors in suspension concentrates. In addition, lignosulfonates are highly efficient dispersants because they rapidly adsorb onto the newly created surfaces during milling of the active material, preventing its re-agglomeration. The purpose of the present study was to characterize the stability of fungicide-based suspension concentrates using different kinds of dispersants. A special-grade lignin-based product from Borregaard LignoTech, Greensperse S7, was tested and compared with kraft lignin, sulfonated naphthalene formaldehyde condensate, acrylic copolymer, and a standard sodium lignosulfonate. The active material was milled down to 1 μm in order to encourage the destabilization of the formulation during "accelerated" storage (i.e., 2 weeks at 54°C). Based on evaluation of formulation stability after accelerated storage, we demonstrated that lignosulfonates represent very interesting alternatives to synthetic dispersants and kraft lignins in suspension concentrates. Our results show that, after accelerated storage, formulations dispersed by Greensperse S7 are stable in terms of particle size and viscosity, reducing the eventuality of crystal growth. This can be explained by the presence of an electrical double layer at the particle/solution interface, leading to electrostatic repulsive forces, combined with steric repulsion of the adsorbed macromolecule.
机译:在农作物保护行业中,诸如悬浮剂之类的液体制剂的开发正在增加。但是,即使在活性物质的溶解度低的情况下,奥斯特瓦尔德熟化(也称为晶体生长)也可能在水性悬浮液中不可逆转地发生,并可能在储存过程中引起配方的严重变化。 Lgnosulfonar.es是基于木材生物精炼厂的天然水溶性聚合物,可用作悬浮剂浓缩物中的晶体生长抑制剂。另外,木质素磺酸盐是高效的分散剂,因为它们在活性材料的研磨过程中迅速吸附到新产生的表面上,从而防止了其再聚结。本研究的目的是表征使用不同种类的分散剂的基于杀真菌剂的悬浮剂的稳定性。测试了来自Borregaard LignoTech的特殊等级木质素基产品Greensperse S7,并将其与牛皮纸木质素,磺化萘甲醛缩合物,丙烯酸共聚物和标准木质素磺酸钠进行了比较。将活性物质研磨至1μm,以促进制剂在“加速”储存期间(即在54°C下2周)不稳定。根据加速储存后制剂稳定性的评估,我们证明木质素磺酸盐是悬浮剂浓缩物中合成分散剂和牛皮纸木质素的非常有趣的替代品。我们的结果表明,加速存储后,Greensperse S7分散的配方在粒径和粘度方面稳定,从而减少了晶体生长的可能性。这可以通过在颗粒/溶液界面处存在双电层来解释,该双电层导致静电排斥力以及吸附的大分子的空间排斥。

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