铈基磁性Y型分子筛深度去除水中氟离子OA
Deep removal of fluoride ions from water using Cerium-based magnetic Y-type molecular sieve
随着含氟废水排放标准日益严格,开发成本低且易操作、能快速吸附和分离的深度除氟吸附剂已成为当前迫切需要.采用共沉淀法将铈(Ce)和 Fe3O4 负载于 Y型分子筛上,成功制备出新型深度除氟吸附剂 Ce-FMSY,系统考察了 Ce/Fe质量比、吸附时间、溶液初始 pH及共存阴离子对吸附性能的影响.结果表明,Ce负载量为 1.0%,Ce/Fe质量比为 2∶1时,Ce-FMSY可在 30 min内快速吸附溶液中 86.2%的 F−,最大吸附容量达到 4.139 mg·g−1;Ce-FMSY的饱和磁化强度为 13.4 emu·g−1,可实现快速固液分离,且在初始 pH 为 3~9内保持 77.1%~96.8%的稳定除氟率.吸附动力学与等温线拟合结果表明,Ce-FMSY 对 F−的吸附符合准二级动力学和 Freundlich模型,以化学吸附为主,通过快速扩散、表面络合及价态转化反应协同实现.经 5次吸附/解吸循环后,吸附容量略有衰减后趋于稳定,F−去除率维持在初始值的72.3%左右.该研究可为废水深度除氟提供数据支持和理论参考.
With the increasingly strict discharge standards for fluorine-containing wastewater,the development of low-cost,easy-to-operate deep fluoride removal adsorbents that can quickly adsorb and separate fluoride has become an urgent need nowadays.By using the co-precipitation method to load Ce and Fe3O4 onto Y-type molecular sieves,a new type of deep fluoride removal adsorbent,Ce-FMSY,was successfully prepared.The effects of Ce/Fe mass ratio,adsorption time,initial pH of the solution,and coexisting anions on the adsorption performance were systematically investigated.The results show that at a Ce loading of 1.0%and a Ce/Fe mass ratio of 2:1,Ce-FMSY could rapidly adsorb 86.2%of F− from the solution within 30 minutes,with a maximum adsorption capacity of 4.139 mg·g−1.The saturated magnetization of Ce-FMSY was 13.4 emu·g−1,enabling rapid solid-liquid separation.The adsorbent maintained a stable fluoride removal rate of 77.1%~96.8%over an initial pH range of 3~9.The adsorption kinetic and isothermal fitting results showed that the adsorption of F− by Ce-FMSY followed the pseudo-second-order kinetics and Freundlich model,with chemical adsorption being the main mechanism,achieved through rapid diffusion,surface complexation,and valence state transformation reactions in synergy.After 5 adsorption/desorption cycles,the adsorption capacity slightly declined and then stabilized,with the F− removal rate remaining at approximately 72.3%of the initial value.This study provides data support and theoretical references for the deep defluoridation of wastewater.
房婉蓉;邱兆富;王远;李尚书;金锡标
华东理工大学资源与环境工程学院,上海 200237华东理工大学资源与环境工程学院,上海 200237上海新渌环境科技有限公司,上海 201101华东理工大学资源与环境工程学院,上海 200237华东理工大学资源与环境工程学院,上海 200237
资源环境
Y型分子筛铈负载Fe3O4负载深度除氟
Y-type molecular sieveCerium loadedFe3O4 loadeddeep fluoride removal
《环境工程学报》 2026 (7)
2084-2094,11
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