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应用 MnFeO 磁性硅壳乙二胺四乙酸功能化纳米材料作为正向渗透中的汲取液。

Application of MnFeO magnetic silica-covered ethylenediaminetetraacetic acid-functionalized nanomaterials to the draw solution in forward osmosis.

机构信息

Department of Global Smart City, Sungkyunkwan University (SKKU), 2066, Seobu-ro, Jangan-gu, Suwon, Gyeonggi-do, 16419, Republic of Korea.

出版信息

Chemosphere. 2023 Jul;330:138735. doi: 10.1016/j.chemosphere.2023.138735. Epub 2023 Apr 21.

Abstract

Forward osmosis (FO) is an emerging and promising water treatment technology. However, selection of an optimal draw solution (DS) is essential for efficient FO process operations. In this study, the potential of ethylenediaminetetraacetic acid (EDTA) functionalized SiO-covered magnetic nanoparticles (MNPs) as DS in FO process were investigated. The MNPs were synthesized and characterized for their morphology, size distribution, magnetic behavior, and dispersibility. Investigations were carried out to determine the effects of DS concentration and MNPs type, utilizing bare, SiO covered, and EDTA coated MNPs at concentrations of 20, 40, and 60 g/L. Furthermore, water flux generation capability and rejection efficiency of octanoic acid (OC) was evaluated with EDTA-MNPs as DS in FO mode (active layer facing feed solution) and PRO mode (active layer facing draw solution). Our results showed that a maximum water flux of 9.59 ± 2 LMH in FO mode, and 11.104 ± 2 LMH in PRO mode was achieved using 60 g/L of EDTA-MNPs. Additionally, we investigated the reusability of the EDTA-coated MNPs and found that their recovery was higher than (>90%) with no aggregation. The stability of EDTA-MNPs was due to strong covalent linkages between their four carboxylate groups and the hydrophilic SiO surface layer, which resulted in steric hindrance and prevented their aggregation. Finally, we assessed the rejection efficiency of OC at different pH values and found that it was low (30-39%) at pH values below pK and high (90-97%) at pH values above pK. Owing to internal concentration polarization, the rejection of OC in FO mode was (10-20%) higher than in PRO mode. The findings demonstrate EDTA-coated MNPs have significant potentials as an effective DS in FO process .

摘要

正向渗透(FO)是一种新兴且有前景的水处理技术。然而,选择最佳汲取液(DS)对于高效的 FO 工艺操作至关重要。在这项研究中,研究了乙二胺四乙酸(EDTA)功能化 SiO 覆盖的磁性纳米颗粒(MNPs)作为 FO 过程中的 DS 的潜力。合成并对 MNPs 的形貌、粒径分布、磁性能和分散性进行了表征。研究了 DS 浓度和 MNPs 类型对水通量的影响,使用裸 MNPs、SiO 覆盖 MNPs 和 EDTA 涂覆 MNPs 分别在 20、40 和 60 g/L 浓度下进行了实验。此外,还评估了 EDTA-MNPs 作为 DS 在 FO 模式(活性层面向进料溶液)和 PRO 模式(活性层面向汲取液)下生成水通量的能力和对辛酸(OC)的截留效率。结果表明,在 FO 模式下,使用 60 g/L 的 EDTA-MNPs 可获得最大水通量 9.59±2 LMH,在 PRO 模式下可获得最大水通量 11.104±2 LMH。此外,我们研究了 EDTA 涂覆 MNPs 的可重复使用性,发现它们的回收率高于(>90%)且没有聚集。EDTA-MNPs 的稳定性归因于它们四个羧酸盐基团与亲水性 SiO 表面层之间的强共价键合,这导致了空间位阻并阻止了它们的聚集。最后,我们评估了 OC 在不同 pH 值下的截留效率,发现其在 pH 值低于 pK 时(30-39%)较低,在 pH 值高于 pK 时(90-97%)较高。由于内部浓差极化,OC 在 FO 模式下的截留率(10-20%)高于 PRO 模式。研究结果表明,EDTA 涂覆的 MNPs 作为 FO 工艺中的有效 DS 具有很大的潜力。

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