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溶解有机物诱导的水铁矿纳米颗粒聚集

Ferrihydrite Nanoparticle Aggregation Induced by Dissolved Organic Matter.

作者信息

Gentile Luigi, Wang Tao, Tunlid Anders, Olsson Ulf, Persson Per

机构信息

Department of Biology, MEMEG Unit , Lund University , Sölvegatan 35 , Lund 223 62 , Sweden.

Department of Chemistry, Physical Chemistry Division , Lund University , Naturvetarvägen 14 , Lund 223 62 , Sweden.

出版信息

J Phys Chem A. 2018 Sep 27;122(38):7730-7738. doi: 10.1021/acs.jpca.8b05622. Epub 2018 Sep 12.

DOI:10.1021/acs.jpca.8b05622
PMID:30165023
Abstract

Ferrihydrite (Fh) nanoparticles are omnipresent in nature and often highly mobile because of their colloidal stability. Thus, Fh serves as a vector for iron as well as associated nutrients and contaminants. Here, we demonstrate, using small-angle X-ray scattering combined with cryo-transmission electron microscopy (cryo-TEM), that dissolved organic matter (DOM), extracted from a boreal forest soil, induce aggregation of Fh nanoparticles, of radius 3 nm, into fractal aggregates, having a fractal dimension D = 1.7. The DOM consists of both fractal-like colloids (>100 nm) and small molecular DOM, but the attractive Fh interparticle interaction was mediated by molecular DOM alone as shown by cryo-TEM. This highlights the importance of using soil extracts, including all size fractions, in studies of the colloidal behavior of DOM-mineral aggregates. The Fh nanoparticles also self-assemble during synthesis into aggregates with the same fractal dimension as the DOM-Fh aggregates. We propose that, in both the absence and presence of DOM, the aggregation is controlled by the Fh particle charge, and the process can be viewed as a linear polymerization into a self-avoiding random walk structure. The theoretical D value for this is /, which is in close agreement with our Fh and DOM-Fh results.

摘要

水铁矿(Fh)纳米颗粒在自然界中普遍存在,由于其胶体稳定性,通常具有很高的流动性。因此,Fh充当了铁以及相关养分和污染物的载体。在这里,我们结合小角X射线散射和低温透射电子显微镜(cryo-TEM)证明,从北方森林土壤中提取的溶解有机物(DOM)会诱导半径为3 nm的Fh纳米颗粒聚集成具有分形维数D = 1.7的分形聚集体。DOM由类分形胶体(> 100 nm)和小分子DOM组成,但如cryo-TEM所示,有吸引力的Fh颗粒间相互作用仅由分子DOM介导。这突出了在DOM-矿物聚集体的胶体行为研究中使用包括所有粒径级分的土壤提取物的重要性。Fh纳米颗粒在合成过程中也会自组装成与DOM-Fh聚集体具有相同分形维数的聚集体。我们提出,在不存在和存在DOM的情况下,聚集均受Fh颗粒电荷控制,并且该过程可视为线性聚合成自回避随机游走结构。其理论D值为/,这与我们的Fh和DOM-Fh结果非常吻合。

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