Xiao B, Thomas K M
Northern Carbon Research Laboratories, Department of Chemistry, School of Natural Sciences, Bedson Building, University of Newcastle upon Tyne, Newcastle upon Tyne, NE1 7RU United Kingdom.
Langmuir. 2004 May 25;20(11):4566-78. doi: 10.1021/la049712j.
Competitive adsorption is the usual situation in real applications, and it is of critical importance in determining the overall performance of an adsorbent. In this study, the competitive adsorption characteristics of all the combinations of binary mixtures of aqueous metal ion species Ca2+(aq), Cd2+(aq), Pb2+(aq), and Hg2+(aq) on a functionalized activated carbon were investigated. The porous structure of the functionalized active carbon was characterized using N2 (77 K) and CO2 (273 K) adsorption. The surface group characteristics were examined by temperature-programmed desorption, Fourier transform infrared spectroscopy, Raman spectroscopy, acid/base titrations, and measurement of the point of zero charge (pHpzc). The adsorption of aqueous metal ion species, M2+(aq), on acidic oxygen functional group sites mainly involves an ion exchange mechanism. The ratios of protons displaced to the amount of M2+(aq) metal species adsorbed have a linear relationship for both single-ion and binary mixtures of these species. Hydrolysis of metal species in solution may affect the adsorption, and this is the case for adsorption of Hg2+(aq) and Pb2+(aq). Competitive adsorption decreases the amounts of individual metal ions adsorbed, but the maximum amounts adsorbed still follow the order Hg2+(aq) > Pb2+(aq) > Cd2+(aq) > Ca2+(aq) obtained for single metal ion adsorption. The adsorption isotherms for single metal ion species were used to develop a model for competitive adsorption in binary mixtures, involving exchange of ions in solution with surface proton sites and adsorbed metal ions, with the species having different accessibilities to the porous structure. The model was validated against the experimental data.
竞争吸附是实际应用中的常见情况,对于确定吸附剂的整体性能至关重要。在本研究中,研究了水溶液中金属离子物种Ca2+(aq)、Cd2+(aq)、Pb2+(aq)和Hg2+(aq)的二元混合物的所有组合在功能化活性炭上的竞争吸附特性。使用N2(77K)和CO2(273K)吸附对功能化活性炭的多孔结构进行了表征。通过程序升温脱附、傅里叶变换红外光谱、拉曼光谱、酸碱滴定以及零电荷点(pHpzc)的测量来考察表面基团特性。水溶液中金属离子物种M2+(aq)在酸性氧官能团位点上的吸附主要涉及离子交换机制。对于这些物种的单离子和二元混合物,被置换的质子与吸附的M2+(aq)金属物种的量之比呈线性关系。溶液中金属物种的水解可能会影响吸附,Hg2+(aq)和Pb2+(aq)的吸附情况就是如此。竞争吸附会减少单个金属离子的吸附量,但最大吸附量仍遵循单金属离子吸附时得到的顺序Hg2+(aq) > Pb2+(aq) > Cd2+(aq) > Ca2+(aq)。利用单金属离子物种的吸附等温线建立了二元混合物中竞争吸附的模型,该模型涉及溶液中的离子与表面质子位点以及吸附的金属离子之间的交换,且不同物种对多孔结构的可及性不同。该模型通过实验数据进行了验证。