Key Lab of Groundwater Resources and Environment, Ministry of Education, Jilin University, Changchun, 130021, PR China.
Key Lab of Groundwater Resources and Environment, Ministry of Education, Jilin University, Changchun, 130021, PR China.
Chemosphere. 2019 Jul;226:298-306. doi: 10.1016/j.chemosphere.2019.03.098. Epub 2019 Mar 17.
As a natural organic carbon skeleton, humic acid (HA) was loaded with nanoscale zero-valent iron (nZVI) Particles to remove chloramphenicol (CAP) from aqueous solution. The pore morphology and structure, the type, the distribution and valence state of element, and the class of functional groups on the surface of the material were shown by SEM/EDS, XPS, BET and FTIR. When the load ratio of nZVI on HA was 1:30, the iron content in the material was minimized, the specific gravity of the economic material-HA was increased, and the removal efficiency of CAP was 80.0% or higher. In addition, the mass ratio of nZVI on HA, the dosage of nZVI/HA-30, the initial pH and CAP concentration of the solution, these four general factors, played an important role in the efficiency and equilibrium time of the CAP removal. The removal efficiency of CAP by nZVI/HA-30 was 84.2% when the dosage was 1.0 g (100 mL), the initial concentration of CAP was 30 mg L and the pH was 3. The reaction pathway and removal mechanism of ZVI/HA-30 were studied by the concentration of total and ferrous iron ions in the solution, UV-Vis and MS. The CAP was continuously denitrified and dechlorinated, decomposed into easily degradable substances by nZVI particles supported on HA, which was consistent with the first-order kinetic model within 5 min. This newly synthesized material was economical and efficient, easy to store, effectively prevented agglomeration and passivation of nZVI, and had a good application prospect for removing contaminants from water.
作为一种天然有机碳骨架,腐殖酸(HA)负载纳米零价铁(nZVI)颗粒,从水溶液中去除氯霉素(CAP)。SEM/EDS、XPS、BET 和 FTIR 显示了材料的孔形态和结构、类型、元素的分布和价态以及表面官能团的类别。当 nZVI 在 HA 上的负载比为 1:30 时,材料中铁的含量最小,经济材料-HA 的比重增加,CAP 的去除效率达到 80.0%或更高。此外,nZVI/HA-30 上 nZVI 的质量比、nZVI/HA-30 的用量、溶液的初始 pH 和 CAP 浓度这四个一般因素,对 CAP 的去除效率和平衡时间起着重要作用。当用量为 1.0 g(100 mL)、CAP 的初始浓度为 30 mg L 和 pH 值为 3 时,nZVI/HA-30 对 CAP 的去除效率为 84.2%。通过溶液中总铁离子和亚铁离子的浓度、UV-Vis 和 MS 研究了 ZVI/HA-30 的反应途径和去除机制。CAP 被不断地反硝化和脱氯,被负载在 HA 上的 nZVI 颗粒分解成易降解的物质,这与 5 min 内的一级动力学模型一致。这种新合成的材料经济高效,易于储存,能有效防止 nZVI 的团聚和钝化,在去除水中污染物方面具有良好的应用前景。