Department of Chemical Engineering, Bogazici University, Bebek, 34342 Istanbul, Turkey.
Department of Chemical and Biological Engineering, Koç University, Rumelifeneri Yolu, Sariyer 34450 Istanbul, Turkey; Koç University TÜPRAŞ Energy Center (KUTEM), Koç University, Rumelifeneri Yolu, Sariyer, 34450 Istanbul, Turkey; Koç University Surface Science and Technology Center (KUYTAM), Koç University, Rumelifeneri Yolu, Sariyer, 34450 Istanbul, Turkey.
J Hazard Mater. 2022 Feb 15;424(Pt A):127256. doi: 10.1016/j.jhazmat.2021.127256. Epub 2021 Sep 20.
A novel, cheap, and easy-to-synthesize sepiolite-based alkali-activated material (Sep-AAM), synthesized by the reaction of a magnesium silicate source, sepiolite, with sodium silicate solution, demonstrating high mechanical strength and methylene blue (MB) removal performance is introduced. Kinetics data indicated that MB adsorption occurs through pseudo-second-order adsorption kinetics model, while the Langmuir isotherm model provided a better fit to adsorption isotherms. The Sep-AAM provided a removal capacity of 99.92 mg g at 50 °C, setting a new benchmark value among the materials used for this purpose. Thermodynamical parameters indicated that the adsorption of MB onto Sep-AAM was endothermic and the interaction between Sep-AAM and MB included weak chemical bonding. Regenerability of the Sep-AAM in powder and monolith forms was confirmed up to four-cycles. Structural parameters determined by several characterization tools demonstrated that the surface hydroxyl groups are responsible for the superior MB adsorption performance. The mechanical strength measurements showed that Sep-AAM in monolith form displayed a remarkable compressive strength value of 40 MPa. To establish a new approach forward on the development of AAMs for wastewater treatment, this study shows that sepiolite can effectively be utilized and Sep-AAM provides a sustainable solution for dye removal with advanced mechanical properties.
一种新型的、廉价的、易于合成的基于海泡石的碱激活材料(Sep-AAM)被介绍出来,它是通过镁硅酸盐源海泡石与硅酸钠溶液反应合成的,具有高机械强度和亚甲基蓝(MB)去除性能。动力学数据表明,MB 的吸附是通过准二级吸附动力学模型发生的,而 Langmuir 等温模型更适合吸附等温线。Sep-AAM 在 50°C 时提供了 99.92mg/g 的去除容量,为用于此目的的材料设定了一个新的基准值。热力学参数表明,MB 吸附到 Sep-AAM 上是吸热的,Sep-AAM 和 MB 之间的相互作用包括弱化学键。Sep-AAM 在粉末和整体形式下的可再生性被证实可达到四个循环。通过几种表征工具确定的结构参数表明,表面羟基基团是其具有优越的 MB 吸附性能的原因。机械强度测量表明,Sep-AAM 整体形式显示出 40MPa 的显著抗压强度值。为了在废水处理用 AAMs 的开发方面建立一种新的方法,本研究表明海泡石可以有效地被利用,并且 Sep-AAM 提供了一种具有先进机械性能的可持续的染料去除解决方案。