Fan Jin, Liu Fei, Hu Yandi, Chen Jiawei
State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Beijing 100083, China E-mail:
Beijing Key Laboratory of Water Resources and Environmental Engineering, China University of Geosciences, Beijing 100083, China.
Water Sci Technol. 2015;72(2):303-10. doi: 10.2166/wst.2015.219.
Understanding the interactions between natural organic matter (NOM) and zero-valent iron nanoparticles (nano-Fe0) and magnetite nanoparticles (nano-Fe3O4) is essential for evaluating their performance in pollutant remediation, as well as determining their fate and transport in the environment. Batch experiments were performed to investigate the sorption/desorption behaviors of humic acid (HA) on commercially available nano-Fe0 and nano-Fe3O4. The sorption/desorption of HA on nano-Fe0 and nano-Fe3O4 were well described by both the Langmuir model and the modified Langmuir model. The adsorption capacities of HA were 8.77±0.31 mg C/g and 10.05±0.95 mg C/g for nano-Fe0 and nano-Fe3O4, respectively. The interactions of HA with nano-Fe0 and nano-Fe3O4 were highly pH-dependent. On one hand, nano-Fe0 had its maximum adsorption of 11.0 mg C/g HA at pH=3, which decreased to 0.6 mg C/g when pH increased to 11.9; on the other hand, alkaline condition enhanced HA desorption greatly. At pH=10.1, after 24 h desorption experiments, nearly 80% of initially adsorbed HA desorbed from the nanoparticles. The interactions of HA with nano-Fe0 and nano-Fe3O4 were also influenced by different ion compositions in solution. Divalent cations (e.g. Ca2+, Mg2+) enhanced HA adsorption significantly, while phosphate nearly eliminated HA adsorption and promoted significantly HA desorption.
了解天然有机物(NOM)与零价铁纳米颗粒(nano-Fe0)和磁铁矿纳米颗粒(nano-Fe3O4)之间的相互作用,对于评估它们在污染物修复中的性能以及确定它们在环境中的归宿和迁移至关重要。进行了批量实验以研究腐殖酸(HA)在市售nano-Fe0和nano-Fe3O4上的吸附/解吸行为。Langmuir模型和修正的Langmuir模型都很好地描述了HA在nano-Fe0和nano-Fe3O4上的吸附/解吸情况。对于nano-Fe0和nano-Fe3O4,HA的吸附容量分别为8.77±0.31 mg C/g和10.05±0.95 mg C/g。HA与nano-Fe0和nano-Fe3O4的相互作用高度依赖于pH值。一方面,nano-Fe0在pH = 3时对HA的最大吸附量为11.0 mg C/g,当pH值增加到11.9时降至0.6 mg C/g;另一方面,碱性条件极大地增强了HA的解吸。在pH = 10.1时,经过24小时的解吸实验后,近80%最初吸附的HA从纳米颗粒上解吸。HA与nano-Fe0和nano-Fe3O4的相互作用也受到溶液中不同离子组成的影响。二价阳离子(如Ca2+、Mg2+)显著增强了HA的吸附,而磷酸盐几乎消除了HA的吸附并显著促进了HA的解吸。