Gojkovic Zivan, Skrobonja Aleksandra, Radojicic Vuk, Mattei Benedetta
Department of Life, Health and Environmental Sciences, University of L'Aquila, L'Aquila, Italy.
Department of Physical Chemistry, Vinča Institute of Nuclear Sciences, University of Belgrade, Belgrade, Serbia.
Physiol Plant. 2025 Jul-Aug;177(4):e70366. doi: 10.1111/ppl.70366.
Flocculation is a widely utilized separation technique in colloid chemistry, the chemical industry, and wastewater treatment. However, its application in microalgal biomass production and downstream processing remains limited. Biomass harvesting represents a significant cost factor in large-scale microalgae production, with the separation of biomass from the liquid medium accounting for up to one-third of total production expenses. The use of flocculants as a pre-treatment step has emerged as a promising approach to reducing these costs. Laboratory-scale flocculation is commonly employed to optimize flocculant dosage and assess strain-specific flocculation efficiencies. Meanwhile, pilot-scale flocculation, when applied before centrifugation, provides critical insights into the applicability of specific flocculant-strain combinations and their impact on yield and biomass quality. Numerous studies have investigated the flocculation behavior of various microalgal strains using a wide range of chemically distinct flocculants at the laboratory scale. This review highlights recent advancements in microalgal flocculation as a pre-centrifugation strategy and outlines future perspectives for achieving cost-effective, large-scale microalgal biomass production as a globally viable resource.
絮凝是胶体化学、化学工业和废水处理中广泛使用的分离技术。然而,它在微藻生物质生产和下游加工中的应用仍然有限。生物质收获是大规模微藻生产中的一个重要成本因素,从液体介质中分离生物质占总生产成本的三分之一。使用絮凝剂作为预处理步骤已成为降低这些成本的一种有前景的方法。实验室规模的絮凝通常用于优化絮凝剂用量并评估特定菌株的絮凝效率。同时,中试规模的絮凝在离心前应用时,能提供关于特定絮凝剂-菌株组合的适用性及其对产量和生物质质量影响的关键见解。许多研究在实验室规模上使用了各种化学性质不同的絮凝剂,研究了各种微藻菌株的絮凝行为。本综述重点介绍了作为离心前策略的微藻絮凝的最新进展,并概述了实现具有成本效益的大规模微藻生物质生产作为全球可行资源的未来前景。