Biriaei Rouholamin, Halladj Rouein, Askari Sima
Water Environ Res. 2017 Apr 1;89(4):337-347. doi: 10.2175/106143017X14839994523109.
Synthesis of AlPO-5 and SAPO-5 nanoparticles was followed by applying hydrothermal method to use them as adsorbents in the removal of Fe3+, Pb2+, and Cd2+ions.The synthesized products were characterized using powder X-ray diffraction, scanning electron microscope (SEM), FTIR and BET analysis. The adsorption isotherms and kinetics including Langmuir, Freundlich, pseudo-first order, pseudo-second order and intraparticle diffusion models have been employed. The experimental adsorption equilibrium and kinetic data nearly followed the Langmuir isotherm and pseudo-second order kinetic model, respectively. It was found that the existence of the bridging hydroxyl group in the SAPO-5 structure causes chemisorption of Fe3+, Pb2+, and Cd2+ions on SAPO-5 which have greatly improved the performance of this adsorbent against its low external surface area. Using AlPO-5 and SAPO-5 as novel adsorbents in heavy metal adsorption for the first time indicated the great potential of these adsorbents in removal of heavy metal ions from water.
采用水热法合成了AlPO-5和SAPO-5纳米颗粒,并将其用作吸附剂去除Fe3+、Pb2+和Cd2+离子。使用粉末X射线衍射、扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和比表面积分析(BET)对合成产物进行了表征。采用了吸附等温线和动力学模型,包括朗缪尔等温线、弗伦德里希等温线、准一级动力学模型、准二级动力学模型和颗粒内扩散模型。实验得到的吸附平衡和动力学数据分别近似遵循朗缪尔等温线和准二级动力学模型。研究发现,SAPO-5结构中桥连羟基的存在导致Fe3+、Pb2+和Cd2+离子在SAPO-5上发生化学吸附,这极大地提高了该吸附剂在低外表面积情况下的性能。首次将AlPO-5和SAPO-5用作重金属吸附的新型吸附剂,表明这些吸附剂在从水中去除重金属离子方面具有巨大潜力。