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鼠李糖脂改性磁性 Co/Al 层状双氢氧化物对阳离子和阴离子染料的吸附行为。

Adsorption behavior of rhamnolipid modified magnetic Co/Al layered double hydroxide for the removal of cationic and anionic dyes.

机构信息

Department of Civil and Environmental Engineering, Iran University of Science and Technology, Tehran, Iran.

Department of Chemistry, Iran University of Science and Technology, Tehran, Iran.

出版信息

Sci Rep. 2022 Aug 26;12(1):14623. doi: 10.1038/s41598-022-19056-0.

Abstract

In the present research, magnetic rhamnolipid-Co/Al layered double hydroxide (MR-LDH) was synthesized to uptake methylene blue (MB) and reactive orange 16 (RO16) from aqueous solution. The main parameters, including pH, adsorbent dosage, contact time, and initial analyte concentration, were optimized to achieve the best adsorption efficiency. Accordingly, the elimination of MB on MR-LDH is improved in the basic medium due to the electrostatic interactions between the negative charge of MR-LDH and the positive charge of MB dye. In contrast, the acidic medium (pH = 3) was favored for RO16 adsorption because of hydrogen bonding between the protonated form of azo dye and protonated hydroxyl groups at the surface of MR-LDH. The calculated maximum adsorption capacities for MB and RO16 were 54.01 and 53.04 mg/g at 313 K, respectively. The Langmuir model, which assumes monolayer adsorption on the adsorbent surface, provides the best explanation for the adsorption of both dyes (R = 0.9991 for MB and R = 0.9969 for RO16). Moreover, the pseudo-second-order kinetic model best described the adsorption process for MB (R = 0.9970) and RO16 (R = 0.9941). The proposed adsorbent maintains stable adsorption performance for four consecutive cycles. After each adsorption process, MR-LDH is easily separated by an external magnet. The findings show that MR-LDH was found to be an excellent adsorbent for the removal of both cationic and anionic organic dyes from aqueous solutions.

摘要

在本研究中,合成了磁性鼠李糖脂-Co/Al 层状双氢氧化物(MR-LDH)以从水溶液中摄取亚甲基蓝(MB)和活性橙 16(RO16)。优化了主要参数,包括 pH 值、吸附剂用量、接触时间和初始分析物浓度,以达到最佳吸附效率。因此,由于 MR-LDH 的负电荷与 MB 染料的正电荷之间的静电相互作用,MB 在碱性介质中在 MR-LDH 上的消除得到改善。相比之下,由于质子化形式的偶氮染料与 MR-LDH 表面的质子化羟基之间的氢键,酸性介质(pH = 3)有利于 RO16 吸附。在 313 K 时,MB 和 RO16 的最大吸附容量分别为 54.01 和 53.04 mg/g。Langmuir 模型假设在吸附剂表面上单层吸附,最能解释两种染料的吸附(MB 的 R = 0.9991,RO16 的 R = 0.9969)。此外,准二级动力学模型最能描述 MB(R = 0.9970)和 RO16(R = 0.9941)的吸附过程。所提出的吸附剂在四个连续循环中保持稳定的吸附性能。在每次吸附过程后,MR-LDH 很容易通过外部磁铁分离。研究结果表明,MR-LDH 被发现是一种从水溶液中去除阳离子和阴离子有机染料的优异吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d35f/9418191/df173265c1b5/41598_2022_19056_Fig1_HTML.jpg

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