Guaya Diana, Cobos Hernán, Camacho Jhulissa, López Carmen Milena, Valderrama César, Cortina José Luis
Department of Chemistry, Universidad Técnica Particular de Loja, Loja 100107, Ecuador.
Department of Chemical Engineering, Polytechnic University of Catalonia-BarcelonaTech (UPC), 08019 Barcelona, Spain.
Materials (Basel). 2022 Aug 5;15(15):5418. doi: 10.3390/ma15155418.
Hydrothermally synthesized Linde type A (LTA) and faujasite X (FAU-X) zeolites are low-cost and environmentally benign inorganic carriers for environmental applications. In this study, (oxy)hydroxides were incorporated onto LTA and FAU-X zeolites to promote the phosphate adsorption. The performance of LTA-Fe and FAU-X-Fe was evaluated through batch adsorption assays. A complete evaluation was performed to recover phosphate from synthetic wastewater. The effect of pH, concentration, equilibrium, and kinetic parameters on phosphate adsorption and its further reuse in sorption-desorption cycles were evaluated. LTA-Fe and FAU-X-Fe are effective for adsorption of phosphate at neutral (e.g., pH 7.0 ± 0.2) and in a broad range of phosphate concentrations. Higher ratios of adsorption capacities were obtained by synthetic zeolites enriched with iron in comparison to their parent forms. The phosphate adsorption occurred through hydrogen bonding and complexation reactions between protonated iron hydroxyl groups and phosphate anions. The phosphate monolayer adsorption was followed by diffusion through the internal pores and 80% of the equilibrium adsorption was reached within 50 min. The LTA-Fe and FAU-X-Fe can be used for phosphate recovery from wastewater treatment plants. The use of LTA-Fe and FAU-X-Fe in a tertiary wastewater treatment stage could allow to reduce the phosphate-phosphorous content, reaching the regulatory levels (equal 1 mg L total phosphorous). The phosphate adsorption using LTA-Fe and FAU-X-Fe does not require pH adjustment, and it is endothermic. The reusability of both iron zeolites is limited, and they can be finally disposed for soil amendment applications.
水热合成的A型分子筛(LTA)和八面沸石X(FAU-X)是用于环境应用的低成本且环境友好的无机载体。在本研究中,将(氢)氧化物负载到LTA和FAU-X沸石上以促进磷酸盐吸附。通过批量吸附试验评估了LTA-Fe和FAU-X-Fe的性能。进行了全面评估以从合成废水中回收磷酸盐。评估了pH、浓度、平衡和动力学参数对磷酸盐吸附的影响及其在吸附-解吸循环中的进一步再利用。LTA-Fe和FAU-X-Fe在中性条件下(例如pH 7.0±0.2)以及在广泛的磷酸盐浓度范围内对磷酸盐吸附有效。与母体形式相比,富含铁的合成沸石获得了更高的吸附容量比。磷酸盐吸附是通过质子化的铁羟基与磷酸根阴离子之间的氢键和络合反应发生的。磷酸盐单层吸附之后是通过内部孔隙的扩散,在50分钟内达到平衡吸附的80%。LTA-Fe和FAU-X-Fe可用于从污水处理厂回收磷酸盐。在三级废水处理阶段使用LTA-Fe和FAU-X-Fe可以降低磷酸盐-磷含量,达到监管水平(等于1 mg/L总磷)。使用LTA-Fe和FAU-X-Fe吸附磷酸盐不需要调节pH,并且是吸热的。两种铁沸石的可重复使用性有限,最终可用于土壤改良应用。