Key Laboratory of Urban Stormwater System and Water Environment, Ministry of Education, Beijing University of Civil Engineering and Architecture, Beijing, 102616, China.
Beijing Engineering Research Center of Sustainable Urban Sewage System Construction and Risk Control, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China.
Environ Sci Pollut Res Int. 2024 May;31(21):30620-30632. doi: 10.1007/s11356-024-32986-8. Epub 2024 Apr 13.
PPG-CNTs-nZVI bead was synthesized by polyvinyl alcohol, pumice, carbon nanotube, and guar gum-nanoscale zero-valent iron to be applied on simultaneously removal of polycyclic aromatic hydrocarbons (PAHs; phenanthrene) and heavy metals (Pb) via adsorption. The individual and simultaneous removal efficiency of phenanthrene and Pb using the PPG-CNTs-nZVI beads was evaluated with a range of initial concentrations of these two pollutants. The kinetics and isotherms of phenanthrene and Pb adsorption by the PPG-CNTs-nZVI beads were also determined. The PPG-CNTs-nZVI beads show reasonably high phenanthrene adsorption capacities (up to 0.16 mg/g), and they absorbed 85% of the phenanthrene (initial concentration 0.5 mg/L) in 30 min. High Pb adsorption capabilities were also demonstrated by the PPG-CNTs-nZVI beads (up to 11.6 mg/g). The adsorption fits the Langmuir model better than the Freundlich model. The adsorption still remained stable with various ionic strength circumstances and a wide pH range (2-5). Additionally, the co-adsorption of phenanthrene and Pb by the PPG-CNTs-nZVI beads resulted in synergistic effects. Particularly, phenanthrene-Pb complex formation via π-cation interactions demonstrated a greater affinity than phenanthrene or Pb alone. The present findings suggest that PPG-CNTs-nZVI beads may be effective sorbents for the simultaneous removal of PAHs and heavy metals from contaminated waters.
PPG-CNTs-nZVI 珠粒是通过聚乙烯醇、浮石、碳纳米管和瓜尔胶-纳米零价铁合成的,可用于通过吸附同时去除多环芳烃(PAHs;菲)和重金属(Pb)。使用 PPG-CNTs-nZVI 珠粒评估了两种污染物初始浓度范围内同时去除菲和 Pb 的效率。还确定了 PPG-CNTs-nZVI 珠粒对菲和 Pb 的吸附动力学和等温线。PPG-CNTs-nZVI 珠粒显示出相当高的菲吸附容量(高达 0.16 mg/g),并在 30 分钟内吸附了 85%的菲(初始浓度 0.5 mg/L)。PPG-CNTs-nZVI 珠粒还表现出高的 Pb 吸附能力(高达 11.6 mg/g)。吸附更符合 Langmuir 模型而不是 Freundlich 模型。吸附在各种离子强度条件和宽 pH 范围(2-5)下仍然稳定。此外,PPG-CNTs-nZVI 珠粒对菲和 Pb 的共吸附产生了协同作用。特别是,通过π-阳离子相互作用形成的菲-Pb 络合物比单独的菲或 Pb 具有更大的亲和力。这些发现表明,PPG-CNTs-nZVI 珠粒可能是从受污染的水中同时去除 PAHs 和重金属的有效吸附剂。