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The influence of extracellular polymeric substances on the coagulation process of cyanobacteria

机译:细胞外聚合物对蓝细菌凝血过程的影响

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The hydrophobicity and flocculation properties of cyanobacterial cells are closely related to their extracellular polymeric substances (EPS). During the treatment of drinking water, the coagulation and removal of EPS-wrapped cyanobacterial particles from natural water sources is very difficult. In this work, a series of surface characteristics of cyanobacterial cells with different EPS fractions were analyzed to evaluate their influences on the coagulation process. With the removal of EPS, the coagulation efficiency of cyanobacteria was gradually improved. The intracellular microcystin release showed that the cyanobacterial cells in each EPS removal phase were almost intact with few broken cells. The surface of cyanobacterial cells had higher hydrophobicity and lower zeta potentials with each step of the EPS extraction, which improved the ratio of particles that were in an unstable state. Furthermore, the deeper the EPS extraction phase, the larger the decreased in size of cyanobacterial particles, thus increasing their specific surface area for adsorption with coagulant. It was concluded that the coagulation mechanism of EPS-wrapped cyanobacterial particles was: the cyanobacterial cells were first peeled off through attraction by opposite charges from the coagulant, and then they were adsorbed before settling down. This study provides a scientific basis for the removal of cyanobacteria by enhancing coagulation.
机译:蓝细菌细胞的疏水性和絮凝特性与其细胞外聚合物(EPS)密切相关。在饮用水的处理过程中,很难从天然水源中凝结和去除EPS包裹的蓝细菌颗粒。在这项工作中,分析了具有不同EPS分数的蓝细菌细胞的一系列表面特征,以评估它们对凝血过程的影响。随着EPS的去除,蓝细菌的凝结效率逐渐提高。细胞内微囊藻毒素的释放表明,每个EPS去除阶段的蓝细菌细胞几乎完整,破损细胞很少。在EPS提取的每个步骤中,蓝细菌细胞的表面均具有较高的疏水性和较低的zeta电位,从而提高了处于不稳定状态的颗粒的比例。此外,EPS萃取阶段越深,蓝细菌颗粒的尺寸减小幅度越大,因此增加了其比表面积以被凝结剂吸附。结论是,EPS包裹的蓝细菌颗粒的凝结机理是:首先通过吸引来自凝结剂的相反电荷将蓝细菌细胞通过吸引作用剥离,然后被吸附,然后沉淀下来。该研究为通过增强凝血去除蓝细菌提供了科学依据。

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