Department of Chemistry, Catalysis Division, University of Isfahan, Isfahan 81746-73441, Iran.
Department of Chemistry, Catalysis Division, University of Isfahan, Isfahan 81746-73441, Iran.
J Colloid Interface Sci. 2023 Oct 15;648:78-89. doi: 10.1016/j.jcis.2023.05.170. Epub 2023 May 29.
Two novel MOF- ethyl cellulose (EC)- based nanocomposites have been designed and synthesized in water by electrospinning and applied for adsorption of congo red (CR) in water. Nano- Zeolitic Imidazolate Framework-67 (ZIF-67), and Materials of Institute Lavoisier (MIL-88A) were synthesized in aqueous solutions by a green method. To enhance the dye adsorption capacity and stability of MOFs, they have been incorporated into EC nanofiber to prepare composite adsorbents. The performance of both composites in the absorption of CR, a common pollutant in some industrial wastewaters, has then been investigated. Various parameters including initial dye concentration, the dosage of the adsorbent, pH, temperature and contact time were optimized. The results indicated 99.8 and 90.9% adsorption of CR by EC/ZIF-67 and EC/MIL-88A, respectively at pH = 7 and temperature at 25 °C after 50 min. Furthermore, the synthesized composites were separated conveniently and successfully reused five times without significant loss of their adsorption activity. For both composites, the adsorption behavior can be explained by pseudo-second-order kinetics, Intraparticular diffiusion and Elovich models demonstrated that the experimental data well matched to the pseudo-second-order kinetics. Intraparticular diffiusion model showed that the adsorption of CR on EC/ZIF-67 and EC/MIL-88a took place in one and two steps, respectively. Freundlich isotherm models and thermodynamic analysis indicated exothermic and spontaneous adsorption.
两种新型的基于 MOF-乙基纤维素(EC)的纳米复合材料已通过静电纺丝在水中设计和合成,并应用于水中刚果红(CR)的吸附。纳米沸石咪唑酯骨架-67(ZIF-67)和材料研究所(MIL-88A)通过绿色方法在水溶液中合成。为了提高 MOF 的染料吸附能力和稳定性,将其掺入 EC 纳米纤维中以制备复合吸附剂。然后研究了这两种复合材料对刚果红(一些工业废水中常见的污染物)的吸附性能。优化了各种参数,包括初始染料浓度、吸附剂用量、pH 值、温度和接触时间。结果表明,在 pH=7 和 25°C 下,50 分钟后,EC/ZIF-67 和 EC/MIL-88A 对 CR 的吸附率分别为 99.8%和 90.9%。此外,合成的复合材料易于分离,并成功重复使用五次,而没有明显损失其吸附活性。对于这两种复合材料,吸附行为可以用伪二级动力学、内扩散和 Elovich 模型来解释,实验数据与伪二级动力学很好地吻合。内扩散模型表明,CR 在 EC/ZIF-67 和 EC/MIL-88a 上的吸附分别发生在一个和两个步骤中。Freundlich 等温模型和热力学分析表明,吸附是放热和自发的。