School of Civil and Environmental Engineering, The University of New South Wales , Sydney, New South Wales 2052, Australia.
Environ Sci Technol. 2017 May 16;51(10):5500-5510. doi: 10.1021/acs.est.7b00660. Epub 2017 Apr 27.
Impact of the organic exudate secreted by a toxic strain of Microcystis aeruginosa on the formation, aggregation, and reactivity of iron oxides that are formed on addition of Fe(II) and Fe(III) salts to a solution of the exudate is investigated in this study. The exudate has a stabilizing effect on the particles formed with decreased aggregation rate and increased critical coagulant concentration required for diffusion-limited aggregation to occur. These results suggest that the presence of algal exudates from Microcystis aeruginosa may significantly influence particle aggregation both in natural water bodies where Fe(II) oxidation results in oxide formation and in water treatment where Fe(III) salts are commonly added to aid particle growth and contaminant capture. The exudate also affects the reactivity of iron oxide particles formed with exudate coated particles undergoing faster dissolution than bare iron oxide particles. This has implications to iron availability, especially where algae procure iron via dissolution of iron oxide particles as a result of either reaction with reducing moieties, light-mediated ligand to metal charge transfer and/or reaction with siderophores. The increased reactivity of exudate coated particles is attributed, for the most part, to the smaller size of these particles, higher surface area and increased accessibility of surface sites.
本研究考察了铜绿微囊藻分泌的有机分泌物对添加 Fe(II)和 Fe(III)盐后形成于该分泌物溶液中的氧化铁的形成、聚集和反应性的影响。该分泌物对所形成的颗粒具有稳定作用,降低了聚集速率,并增加了发生扩散限制聚集所需的临界聚沉剂浓度。这些结果表明,微囊藻分泌的藻类分泌物可能会显著影响颗粒聚集,无论是在铁(II)氧化导致氧化物形成的天然水体中,还是在水处理中,通常添加 Fe(III)盐以促进颗粒生长和污染物捕获。该分泌物还影响了氧化铁颗粒的反应性,带有分泌物涂层的颗粒比裸露的氧化铁颗粒更容易溶解。这对铁的可用性有影响,特别是当藻类通过溶解氧化铁颗粒来获取铁时,这是由于与还原部分反应、光介导配体到金属电荷转移和/或与铁载体反应的结果。分泌物涂层颗粒的反应性增加主要归因于这些颗粒的粒径较小、表面积较大以及表面点位的可及性增加。