A novel structured graphene oxide@microalgae nanohybrids as adsorbents for removal of Cr(VI) ions in aqueous solutions

IF 3.1 4区 工程技术 Q3 CHEMISTRY, PHYSICAL
Rolivhuwa Mulovhedzi, Kholiswa Yokwana, Timothy O. Ajiboye, Adeniyi S. Ogunlaja, Sabelo D. Mhlanga
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引用次数: 0

Abstract

Novel structured graphene oxide@microalgae-based nanohybrids have been prepared by incorporating green microalgae biomass (Algae) with graphene oxide (GO) or N-doped graphene oxide (NGO) in different ratios (e.g., 3:1, 1:1 and 1:3). Biogenic GO-Algae and NGO-Algae nanohybrids were synthesized via a self-assembly method. Morphological and structural characterizations and adsorption performance of the nanostructured material towards Cr(VI) species were studied extensively. The removal of Cr(VI) species by GO-Algae and NGO-Algae nanohybrids was highly pH dependent, with the maximum adsorption removal occurring at pH 2. The results indicate that the adsorption of Cr(VI) by GO-Algae and NGO-Algae nanohybrids was as follows: GO@Algae-3:1 (90.5%) < GO@Algae-1:1 (98.7%) < GO@Algae-1:3 (99.6%) and NGO@Algae-3:1 (79.2%) < NGO@Algae-1:1 (82.3%) < NGO@Algae-1:3 (92.6%), respectively. The GO: Algae-1:3 and NGO: Algae-1:3 nanohybrids with a high microalgae content ratio exhibited high maximum removal, owing to the presence of more active sites within their lattice compared to their counterparts. On the other hand, pseudo-first-order, pseudo-second-order, intraparticle diffusion, Langmuir, and Freundlich models adequately simulated adsorption mechanisms, suggesting that the adsorption process involved a combination of external mass transfer and chemisorption, with electrostatic and complexation interactions being the dominant mechanisms for Cr(VI) removal. Additionally, GO@Algae-1:3 and NGO@Algae-1:3 displayed outstanding reusability. Therefore, these structured graphene@microalgae-based nanohybrids can simultaneously serve as adsorbents for Cr(VI) removal from wastewater and contaminated water sources.

一种新型结构石墨烯oxide@microalgae纳米杂化物作为吸附剂去除水溶液中的Cr(VI)离子
通过将绿色微藻生物质(藻类)与氧化石墨烯(GO)或n掺杂氧化石墨烯(NGO)以不同的比例(例如3:1,1:1和1:3)结合,制备了新型结构的石墨烯oxide@microalgae-based纳米杂化物。采用自组装方法合成了生物源型GO-Algae和NGO-Algae纳米杂种。研究了纳米结构材料的形态、结构表征及其对Cr(VI)的吸附性能。GO-Algae和NGO-Algae纳米杂种对Cr(VI)的去除高度依赖于pH值,在pH值为2时吸附去除效果最大。结果表明:GO-Algae和NGO-Algae纳米杂种对Cr(VI)的吸附分别为GO@Algae-3:1 (90.5%) < GO@Algae-1:1 (98.7%) < GO@Algae-1:3(99.6%)和NGO@Algae-3:1 (79.2%) < NGO@Algae-1:1 (82.3%) < NGO@Algae-1:3(92.6%)。微藻含量高的GO:藻类-1:3和NGO:藻类-1:3纳米杂交体表现出较高的最大去除率,这是因为它们的晶格内存在更多的活性位点。另一方面,伪一阶、伪二阶、颗粒内扩散、Langmuir和Freundlich模型充分模拟了吸附机理,表明吸附过程涉及外部传质和化学吸附的结合,静电和络合相互作用是Cr(VI)去除的主要机制。此外,GO@Algae-1:3和NGO@Algae-1:3显示了出色的可重用性。因此,这些结构graphene@microalgae-based纳米杂化物可以同时作为吸附剂从废水和污染水源中去除Cr(VI)。
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来源期刊
Adsorption
Adsorption 工程技术-工程:化工
CiteScore
8.10
自引率
3.00%
发文量
18
审稿时长
2.4 months
期刊介绍: The journal Adsorption provides authoritative information on adsorption and allied fields to scientists, engineers, and technologists throughout the world. The information takes the form of peer-reviewed articles, R&D notes, topical review papers, tutorial papers, book reviews, meeting announcements, and news. Coverage includes fundamental and practical aspects of adsorption: mathematics, thermodynamics, chemistry, and physics, as well as processes, applications, models engineering, and equipment design. Among the topics are Adsorbents: new materials, new synthesis techniques, characterization of structure and properties, and applications; Equilibria: novel theories or semi-empirical models, experimental data, and new measurement methods; Kinetics: new models, experimental data, and measurement methods. Processes: chemical, biochemical, environmental, and other applications, purification or bulk separation, fixed bed or moving bed systems, simulations, experiments, and design procedures.
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