Environment Division, National Institute of Oceanography and Fisheries (NIOF), Kayet Bey, Elanfoushy, Alexandria, Egypt.
Department of Chemical Engineering, Faculty of Engineering, Osmaniye Korkut Ata University, 80000, Osmaniye, Türkiye.
Sci Rep. 2023 Apr 11;13(1):5910. doi: 10.1038/s41598-023-33078-2.
In this study, cellulose hydrogels were simply fabricated by the chemical dissolution method using LiCl/dimethylacetamide as a new method, and the hydrogel produced was investigated for removing Direct Blue 86 (DB86) dye from the aquatic environment. The produced cellulose hydrogel (CAH) was characterized by FTIR, XRD, SEM, and TGA analyses. The removal efficiency of DB86 dye using CAH was achieved via a batch equilibrium process. The impact of pH, time of contact, CAH dosage, starting concentration of DB86 dye, and absorption temperature were scanned. The optimum pH for absorption of DB86 dye was determined to be 2. The absorption results obtained were scanned by Langmuir (LIM), Temkin (TIM), Freundlich (FIM), and Dubinin-Radushkevich (DRIM) isotherm models (IMs) and chi-square error (X) function used to identify the best-fit IMs. The CAH had 53.76 mg/g as a maximum absorption capacity (Q) calculated from the LIM plot. The TIM was the best fitted to the CAH absorption results. Kinetic absorption results were investigated by pseudo-first-order (PFOM), Elovich (EM), pseudo-second-order (PSOM), film diffusion (FDM), and intraparticle diffusion (IPDM) models. A PSOM with a high R (> 0.99) accounted for the majority of the control over the absorption rate. The findings indicate that CAH can potentially remove the DB86 dye from wastewater.
在这项研究中,通过化学溶解法使用 LiCl/二甲基乙酰胺作为一种新方法简单地制备了纤维素水凝胶,并对用于从水环境中去除直接蓝 86(DB86)染料的水凝胶进行了研究。所制备的纤维素水凝胶(CAH)通过 FTIR、XRD、SEM 和 TGA 分析进行了表征。通过批平衡过程实现了使用 CAH 去除 DB86 染料的效率。扫描了 pH、接触时间、CAH 用量、DB86 染料起始浓度和吸收温度的影响。确定吸收 DB86 染料的最佳 pH 为 2。通过 Langmuir(LIM)、Temkin(TIM)、Freundlich(FIM)和 Dubinin-Radushkevich(DRIM)等吸附等温线模型(IM)和卡方误差(X)函数扫描获得的吸附结果,以确定最佳拟合 IM。CAH 的最大吸附容量(Q)从 LIM 图计算为 53.76 mg/g。TIM 最适合 CAH 的吸附结果。通过准一级(PFOM)、Elovich(EM)、准二级(PSOM)、薄膜扩散(FDM)和颗粒内扩散(IPDM)模型研究了动力学吸附结果。具有高 R(>0.99)的 PSOM 控制了大部分吸附速率。研究结果表明,CAH 可能从废水中去除 DB86 染料。