Azizi Nahid, Eslami Reza, Goudarzi Shaghayegh, Zarrin Hadis
Department of Chemical Engineering, Toronto Metropolitan University, 350 Victoria Street, Toronto, ON, M5B 2K3, Canada; Research and Innovation Department, Sensofine Inc., Innovation Boost Zone (IBZ), Toronto Metropolitan University, Toronto, ON, M5G 2C2, Canada.
Department of Chemical Engineering, Toronto Metropolitan University, 350 Victoria Street, Toronto, ON, M5B 2K3, Canada.
Chemosphere. 2024 Sep;363:142842. doi: 10.1016/j.chemosphere.2024.142842. Epub 2024 Jul 14.
In today's world, major pollutants, such as cationic dyes and heavy metals, pose a serious threat to human health and the environment. In this study, a novel adsorbent was created through the electrospinning of polyvinyl alcohol/polyacrylic acid (PVA/PAA), incorporated with hexagonal boron nitride (hBN) coated with polydopamine (PDA). The integration of hBN and PDA substantially enhanced the adsorption capacity of the PVA/PAA fibers, making them highly effective in adsorbing cationic dyes such as methylene blue and crystal violet, as well as cobalt (II) ions, from contaminated water. The adsorbents were assessed to understand how their adsorption behavior varies with pH, as well as to examine their adsorption kinetics and isotherms. The results indicate that the PVA/PAA-hBN@PDA adsorbent has maximum adsorption capacities of 1029.57 mg/g, 793.65 mg/g, and 62.46 mg/g for methylene blue, crystal violet, and cobalt (II) ions, respectively. This underscores the superior performance of the PVA/PAA-hBN@PDA adsorbent when compared to both the PVA/PAA and PVA/PAA-hBN adsorbents. The adsorption kinetics adhered to a pseudo-second-order model, indicating chemisorption, whereas the Langmuir model implied a monolayer adsorption. Overall, the findings of this study highlight the efficacy of harnessing the synergistic capabilities of hBN and PDA within the PVA/PAA-hBN@PDA adsorbents, providing an efficient and eco-friendly approach to removing cationic dyes and heavy metals from contaminated water, and thereby contributing to a cleaner and safer environment for all.
在当今世界,阳离子染料和重金属等主要污染物对人类健康和环境构成了严重威胁。在本研究中,通过静电纺丝制备了一种新型吸附剂,该吸附剂由聚乙烯醇/聚丙烯酸(PVA/PAA)与涂覆有聚多巴胺(PDA)的六方氮化硼(hBN)复合而成。hBN与PDA的结合显著提高了PVA/PAA纤维的吸附能力,使其在从受污染水中吸附亚甲基蓝和结晶紫等阳离子染料以及钴(II)离子方面具有很高的效率。对这些吸附剂进行了评估,以了解它们的吸附行为如何随pH值变化,并研究它们的吸附动力学和等温线。结果表明,PVA/PAA-hBN@PDA吸附剂对亚甲基蓝、结晶紫和钴(II)离子的最大吸附容量分别为1029.57 mg/g、793.65 mg/g和62.46 mg/g。这突出了PVA/PAA-hBN@PDA吸附剂相对于PVA/PAA和PVA/PAA-hBN吸附剂的优越性能。吸附动力学符合准二级模型,表明发生了化学吸附,而朗缪尔模型意味着单层吸附。总体而言,本研究结果突出了利用PVA/PAA-hBN@PDA吸附剂中hBN和PDA的协同能力的有效性,为从受污染水中去除阳离子染料和重金属提供了一种高效且环保的方法,从而为所有人营造一个更清洁、更安全的环境做出贡献。