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用于可持续水净化及分析进展的创新溶胶-凝胶功能化聚氨酯泡沫

Innovative Sol-gel functionalized polyurethane foam for sustainable water purification and analytical advances.

作者信息

Alwael H, Alsulami A N, Abduljabbar T N, Oubaha M, El-Shahawi M S

机构信息

Department of Chemistry, Faculty of Science, King Abdulaziz University, Jeddah, Saudi Arabia.

Centre for Research in Engineering Surface Technologies (CREST), FOCAS Institute, Technological University Dublin, Dublin, Ireland.

出版信息

Front Chem. 2024 Feb 8;12:1324426. doi: 10.3389/fchem.2024.1324426. eCollection 2024.

Abstract

Nanomaterial combined polymeric membranes such as polyurethane foams (PUFs) have garnered enormous attention in the field of water purification due to their ease of management and surface modification, cost-effectiveness, and mechanical, chemical, and thermal properties. Thus, this study reports the use of novel Sol-gel impregnated polyurethane foams (Sol-gel/PUFs) as new dispersive solid phase microextractors (d- µ SPME) for the efficient separation and subsequent spectrophotometric detection of Eosin Y (EY) textile dye in an aqueous solution with a pH of 3-3.8. The Sol gel, PUFs, and Sol gel-impregnated PUFs were characterized using scanning electron microscopy (SEM), goniometry measurements, dynamic light scattering (DLS), energy dispersive spectroscopy (EDS), UV-Visible, and FTIR spectra. Batch experiment results displayed a remarkable removal percentage (96% ± 5.4%) of the EY from the aqueous solution, with the total sorption time not exceeding 60 min. These data indicate rate-limited sorption via diffusion and/or surface complex ion associate formations after the rapid initial sorption steps. A pseudo-second order kinetic model thoroughly explained the sorption kinetics, providing a sorption capacity (q) of 37.64 mg g, a half-life time (t) of 0.8 ± 0.01 min, and intrinsic penetration control dye retention. The thermodynamic results revealed a negative value for ΔG (-78.07 kJ mol at 293 K), clearly signifying that the dye uptake was spontaneous, as well as a negative value for ΔH (-69.58 kJ mol) and a positive value for ΔS (147.65 J mol K), making clear the exothermic nature of EY adsorption onto the sorbent, with a growth in randomness at the molecular level. A ternary retention mechanism is proposed, involving the "weak base anion exchanger" of {(-CH-OH -CH-) (Dye anion)}/ and/or {(-NH -COO-) (Dye anion)}/ via solvent extraction and "surface adsorption" of the dye anion on/in the Sol-gel/PUFs membranes in addition to H-bonding, including surface complexation and electrostatic π-π interaction, between the dye and the silicon/zirconium oxide (Si-O-Zr) and siloxane (Si-O-Si) groups on the sorbent. Complete extraction and recovery (93.65 ± 0.2, -102.28 ± 2.01) of EY dye with NaOH (0.5 M) as a proper eluting agent was achieved using a sorbent-packed mini column. In addition, the established extractor displayed excellent reusability and does not require organic solvents for EY enrichment in water samples, making it a talented nominee as a novel sorbent for EY sorption from wastewater. This study is of great consequence for expanding the applicatio1n of Sol-gel/PUFs in developing innovative spectrophotometric sensing strategies for dye determination. In view of this, it would also be remarkable to perform future studies to explore the analytical implications of this extractor regarding safety and environmental and public health issues associated to the pollutant.

摘要

纳米材料复合聚合物膜,如聚氨酯泡沫(PUFs),因其易于管理和表面改性、成本效益以及机械、化学和热性能,在水净化领域备受关注。因此,本研究报道了使用新型溶胶 - 凝胶浸渍聚氨酯泡沫(Sol - gel/PUFs)作为新型分散固相微萃取器(d - µSPME),用于在pH为3 - 3.8的水溶液中高效分离并随后通过分光光度法检测曙红Y(EY)纺织染料。使用扫描电子显微镜(SEM)、测角法测量、动态光散射(DLS)、能量色散光谱(EDS)、紫外可见光谱和傅里叶变换红外光谱(FTIR)对溶胶 - 凝胶、PUFs和溶胶 - 凝胶浸渍PUFs进行了表征。批次实验结果显示,从水溶液中去除EY的百分比显著(96% ± 5.4%),总吸附时间不超过60分钟。这些数据表明,在快速的初始吸附步骤之后,通过扩散和/或表面络合离子缔合形成进行速率受限吸附。伪二级动力学模型全面解释了吸附动力学,提供了37.64 mg/g的吸附容量(q)、0.8 ± 0.01分钟的半衰期(t)以及本征渗透控制染料保留。热力学结果显示ΔG为负值(293 K时为 - 78.07 kJ/mol),清楚地表明染料吸收是自发的,ΔH为负值( - 69.58 kJ/mol),ΔS为正值(147.65 J/mol K),这表明EY吸附到吸附剂上具有放热性质,且在分子水平上随机性增加。提出了一种三元保留机制,包括通过溶剂萃取的{(-CH - OH - CH - )(染料阴离子)}/和/或{(-NH - COO - )(染料阴离子)}/的“弱碱阴离子交换剂”,以及染料阴离子在Sol - gel/PUFs膜上/内的“表面吸附”,此外还有染料与吸附剂上的硅/锆氧化物(Si - O - Zr)和硅氧烷(Si - O - Si)基团之间的氢键作用,包括表面络合和静电π - π相互作用。使用填充有吸附剂的微型柱,以0.5 M NaOH作为合适的洗脱剂,实现了EY染料的完全萃取和回收(93.65 ± 0.2, - 102.28 ± 2.01)。此外,所建立的萃取器显示出优异的可重复使用性,并且在水样中富集EY不需要有机溶剂,使其成为从废水中吸附EY的新型吸附剂的有力候选者。本研究对于扩大Sol - gel/PUFs在开发用于染料测定的创新分光光度传感策略中的应用具有重要意义。有鉴于此,开展未来研究以探索该萃取器在与污染物相关的安全、环境和公共卫生问题方面的分析意义也将是显著的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f059/10881768/9467d922af06/fchem-12-1324426-g001.jpg

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