Institute of Hot Spring Industry, Chia Nan University of Pharmacy and Science, Taiwan, China.
J Environ Sci (China). 2013 Jul 1;25(7):1483-91. doi: 10.1016/s1001-0742(12)60188-0.
The adsorption of Mn2+ onto immobilized Mn-oxide and Fe-oxide adsorbent such as manganese oxide-coated sandl (MOCS1), manganese oxide-coated sand2 (MOCS2), iron oxide-coated sand2 (IOCS2), and manganese and iron oxide-coated sand (MIOCS) was investigated. The effects of pH (5.5 to 8.0) and temperature (25 to 45 degrees C) on the equilibrium capacity were examined. Equilibrium studies showed that there is a good fit with both Freundlich and Langmuir isotherm, which indicates surface heterogeneity and monolayer adsorption of the adsorbents. Kinetic data showed high correlation with the pseudo second-order model, which signifies a chemisorption-controlled mechanism. The activation energies, activation parameters (deltaG, deltaH, deltaS), and thermodynamic parameters (deltaG0, deltaH0, deltaS0) confirmed that adsorption with MIOCS was endothermic and more spontaneous at higher temperature while an opposite trend was observed for the other adsorbents. Thermodynamic studies showed that adsorption involved formation of activated complex, where MOCS 1 and MIOCS follow a physical-chemical mechanism, while MOCS2 and IOCS2 follows purely chemical mechanism.
研究了 Mn2+在固定化 Mn-氧化物和 Fe-氧化物吸附剂(如氧化锰涂层砂 1(MOCS1)、氧化锰涂层砂 2(MOCS2)、氧化铁涂层砂 2(IOCS2)和 Mn 和 Fe 氧化物涂层砂(MIOCS))上的吸附。考察了 pH(5.5 至 8.0)和温度(25 至 45 摄氏度)对平衡容量的影响。平衡研究表明,两种等温线模型(Freundlich 和 Langmuir 等温线)都非常适用,这表明吸附剂表面具有不均匀性和单层吸附。动力学数据与拟二级模型高度相关,这表明吸附过程受化学吸附控制。活化能、活化参数(ΔG、ΔH、ΔS)和热力学参数(ΔG0、ΔH0、ΔS0)证实,MIOCS 的吸附是吸热的,在较高温度下更自发,而对于其他吸附剂,则观察到相反的趋势。热力学研究表明,吸附涉及形成活化配合物,其中 MOCS1 和 MIOCS 遵循物理化学机制,而 MOCS2 和 IOCS2 遵循纯化学机制。