Institute of Forensic Science & Criminology, Panjab University, Chandigarh160014, India.
Department of Chemistry, DAV College, Sector-10, Chandigarh160011, India.
ACS Appl Mater Interfaces. 2023 Feb 1;15(4):5942-5953. doi: 10.1021/acsami.2c20710. Epub 2023 Jan 23.
In this work, the suitability and efficacy of the previously reported biodegradable gellan gum (GG)-based hydrogel have been thoroughly investigated with respect to the adsorption mechanisms of malachite green (MG) and methylene blue (MB) dyes. The dyes' removal from aqueous solutions using GG-cl-poly(AA) as an adsorbent material has been studied in a discontinuous system with respect to contact time, dose, pH, and temperature. The synthesized hydrogel was characterized by FT-IR, TGA, XRD, H NMR, and FE-SEM. The adsorption capacity of GG-cl-poly(AA) hydrogel was investigated at different pH solutions (3, 7, and 10), and it was found that neutralized charge plays a crucial role in the enhancement of dye removal. To better understand the behavior of the GG-cl-poly(AA) hydrogel in adsorbing model dyes, adsorption kinetics, isotherms, and thermodynamics were also investigated. The values of qmax for MG and MB were obtained to be 552.48 and 531.9 mg g. In addition, the influence of NaCl concentration on adsorption efficiency was investigated, and it was found that as the ion concentration increased, the effectiveness of the adsorption process dropped. Moreover, the synthesized hydrogel's potential application in the adsorption and separation of dyes from wastewater is enhanced by the reusability investigations conducted in convenient conditions. As a result, it is possible to conclude that reusing GG-cl-poly(AA) hydrogel as a low-cost, easy-to-handle, nontoxic material in an industrial wastewater treatment plant's adsorption process can provide a number of advantages, including high efficiency for MG and MB removal and cost savings on overall treatment plant operations.
在这项工作中,我们深入研究了先前报道的可生物降解的结冷胶(GG)基水凝胶对于孔雀石绿(MG)和亚甲蓝(MB)染料的吸附机制的适用性和功效。我们使用 GG-cl-poly(AA)作为吸附材料,在不连续体系中研究了染料在水溶液中的去除情况,考察了接触时间、剂量、pH 值和温度等因素的影响。我们通过 FT-IR、TGA、XRD、H NMR 和 FE-SEM 对合成的水凝胶进行了表征。我们在不同的 pH 值溶液(3、7 和 10)下研究了 GG-cl-poly(AA)水凝胶的吸附容量,发现中和电荷在提高染料去除率方面起着至关重要的作用。为了更好地理解 GG-cl-poly(AA)水凝胶在吸附模型染料方面的行为,我们还研究了吸附动力学、吸附等温线和热力学。我们获得了 MG 和 MB 的最大吸附量 qmax 分别为 552.48 和 531.9 mg g。此外,我们还考察了 NaCl 浓度对吸附效率的影响,发现随着离子浓度的增加,吸附过程的效果会下降。此外,我们通过在方便的条件下进行可重复使用性研究,增强了合成水凝胶在从废水中吸附和分离染料方面的潜在应用。因此,我们可以得出结论,在工业废水处理厂的吸附过程中,将 GG-cl-poly(AA)水凝胶作为一种低成本、易于处理、无毒的材料进行再利用,可以带来许多优势,包括对 MG 和 MB 去除的高效率和对整体处理厂运营成本的节省。