Laboratorio de Sólidos Porosos (LabSoP), INFAP-CONICET, Universidad Nacional de San Luis, Av. Ejército de los Andes 950, 5700, San Luis, Argentina.
Environ Sci Pollut Res Int. 2022 Nov;29(53):79890-79902. doi: 10.1007/s11356-022-18569-5. Epub 2022 Jan 12.
This work presents a ceramic monolith with a honeycomb structure obtained from a natural zeolite (clinoptilolite), bentonite, and alumina. The monolith obtained by extrusion had a cell density of 57 CPSI (cells per square inch), an open frontal area of 52% w/w, and a wall thickness of 0.9 mm. The raw materials and the natural zeolite ceramic monolith (NZCM) were characterized by X-ray diffraction, N adsorption-desorption at 77 K, CO adsorption at 273 K, mercury intrusion-extrusion, axial compression tests, resistance to leaching at acidic and basic pH, and point of zero charge. The NZCM presented an S = 31 m∙g, a modal micropore size of 0.44 nm, a porosity of 39%, the compressive stress = 14 MPa, and a pH = 7.5. The NZCM was used as an inexpensive and easy-to-handle adsorbent to remove methylene blue (MB) dye in batch studies of kinetics and adsorption isotherms. From modeling of adsorption kinetic data, the predominant phenomenon in this system was physisorption. The modeling of adsorption isotherm data shows that the material has homogeneous active sites. The adsorption occurs by monolayer formation, finding a maximum capacity removal rate of 27 mg MB per gram of NZCM. Compared to other structured materials, a high capacity for removing MB with the ceramic monolith was obtained along with good mechanical properties and resistance in acidic and alkaline environments.
本工作制备了一种具有蜂窝结构的陶瓷整体式材料,其原料为天然沸石(斜发沸石)、膨润土和氧化铝。通过挤出法得到的整体式材料的孔密度为 57 CPSI(每平方英寸的孔数),开口面积率为 52%w/w,壁厚为 0.9 毫米。对原材料和天然沸石陶瓷整体式材料(NZCM)进行了 X 射线衍射、77 K 下的 N 吸附-解吸、273 K 下的 CO 吸附、压汞法、轴向压缩试验、耐酸碱性浸出性和零电荷点测试。NZCM 的比表面积为 31 m²/g,中值微孔尺寸为 0.44nm,孔隙率为 39%,抗压强度为 14MPa,pH 值为 7.5。NZCM 被用作一种廉价且易于处理的吸附剂,用于动力学和吸附等温线的批量研究,以去除亚甲基蓝(MB)染料。通过吸附动力学数据的建模,该体系中的主要现象是物理吸附。吸附等温线数据的建模表明,该材料具有均匀的活性位。吸附通过单层形成发生,NZCM 对 MB 的最大去除率达到 27mg/g。与其他结构材料相比,陶瓷整体式材料对 MB 具有较高的去除容量,同时具有良好的机械性能和在酸碱性环境下的稳定性。