Department of Chemistry, McGill University, 801 Sherbrooke Street West, Montréal, QC H3A 0B8, Canada.
Quebec Centre for Advanced Materials (QCAM) and Pulp and Paper Research Center, McGill University, 3420 University Street, Montréal, QC H3A 2A7, Canada.
J Mater Chem B. 2020 Dec 8;8(46):10502-10526. doi: 10.1039/d0tb02021d.
Natural dispersants and flocculants, often referred to as dispersion stabilizers and liquid-solid separators, respectively, have secured a promising role in the bioprocessing community. They have various applications, including in biomedicine and in environmental remediation. A large fraction of existing dispersants and flocculants are synthesized from non-safe chemical compounds such as polyacrylamide and surfactants. Despite numerous advantages of synthetic dispersants and flocculants, issues such as renewability, sustainability, biocompatibility, and cost efficiency have shifted attention towards natural homologues, in particular, cellulose-based ones. Within the past decade, cellulose derivatives, obtained via chemical and mechanical treatments of cellulose fibrils, have successfully been used for these purposes. In this review article, by dividing the functional cellulosic compounds into "polymeric" and "nanoscale" categories, we provide insight into the engineering pathways, the structural frameworks, and surface chemistry of these "green" types of dispersants and flocculants. A summary of their efficiency and the controlling parameters is also accompanied by recent advances in their applications in each section. We are confident that the emergence of cellulose-based dispersing and flocculating agents will extend the boundaries of sustainable green technology.
天然分散剂和絮凝剂,分别通常被称为分散稳定剂和液-固分离器,在生物处理领域已经占据了重要地位。它们有多种应用,包括在生物医药和环境修复领域。目前大部分现有的分散剂和絮凝剂都是由非安全化学化合物如聚丙烯酰胺和表面活性剂合成的。尽管合成分散剂和絮凝剂有许多优点,但可更新性、可持续性、生物相容性和成本效益等问题促使人们将注意力转向天然类似物,特别是基于纤维素的类似物。在过去十年中,通过对纤维素纤维进行化学和机械处理获得的纤维素衍生物已成功用于这些目的。在这篇综述文章中,我们通过将功能性纤维素化合物分为“聚合物”和“纳米级”两类,深入了解了这些“绿色”类型的分散剂和絮凝剂的工程途径、结构框架和表面化学。我们还总结了它们的效率和控制参数,并在每个部分介绍了它们在应用方面的最新进展。我们相信,基于纤维素的分散和絮凝剂的出现将扩展可持续绿色技术的边界。