Lago Diana, Kraxner Jozef, Galusek Dušan, Bernardo Enrico
FunGlass - Centre for Functional and Surface Functionalized Glass, Alexander Dubček University of Trenčín, Študentská 2, 911 50, Trenčín, Slovakia.
Joint Glass Centre of the IIC SAS, TnUAD and FChFT STU, 911 50, Trenčín, Slovakia.
Heliyon. 2023 Jul 18;9(8):e18221. doi: 10.1016/j.heliyon.2023.e18221. eCollection 2023 Aug.
A porous membrane was developed through alkali activation of pharmaceutical boro-alumino-silicate glass powders suspended in diluted NaOH and KOH aqueous solutions (2.5 M). A consolidated porous structure was obtained by the binding of unreacted particles mediated by a surface gel, developed upon drying of the suspensions and their curing at 40 °C for 14 days. The binding phase was sufficiently stable to resist immersion in boiling water and in acidic solutions. Copper adsorption tests were carried out under acidic pH, immersing the membranes in a Cu(NO) solution for different periods of time. To determine the effect of surface washing on capture of copper ions, adsorption experiments with washed and unwashed membranes were also carried out, at varying pH. It was determined that the adsorption kinetics follow the pseudo-second-order kinetic model. The main adsorption mechanism observed is the electrostatic interaction between the negative surface charge of the washed membrane and the Cu ions present in solution. An adsorption higher than 60% was observed at pH = 5, while at pH = 2 the efficiency decreased due to the presence of HO ions. To ensure immobilization of copper, the membranes were densified by viscous flow sintering at a moderate temperature (700 °C). Leaching tests on membranes demonstrated the efficiency of the process in terms of copper ions immobilization.
通过对悬浮在稀释的NaOH和KOH水溶液(2.5M)中的药用硼铝硅酸盐玻璃粉末进行碱活化,制备了一种多孔膜。通过表面凝胶介导的未反应颗粒的结合获得了致密的多孔结构,该表面凝胶是在悬浮液干燥并在40℃固化14天后形成的。结合相足够稳定,能够抵抗在沸水中和酸性溶液中的浸泡。在酸性pH条件下进行铜吸附试验,将膜浸泡在Cu(NO)溶液中不同时间。为了确定表面洗涤对铜离子捕获的影响,还在不同pH值下对洗涤过和未洗涤过的膜进行了吸附实验。结果表明,吸附动力学符合准二级动力学模型。观察到的主要吸附机制是洗涤过的膜的负表面电荷与溶液中存在的Cu离子之间的静电相互作用。在pH = 5时观察到吸附率高于60%,而在pH = 2时,由于H₃O⁺离子的存在,效率降低。为了确保铜的固定化,通过在中等温度(700℃)下的粘性流烧结使膜致密化。对膜的浸出试验证明了该过程在固定铜离子方面的效率。