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蒙脱石表面碱金属离子的亚稳平衡吸附及其特异性效应
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作者 杜伟 胡斐南 +2 位作者 许晨阳 李雄 吕家珑 《土壤学报》 CAS CSCD 北大核心 2023年第1期117-126,共10页
离子吸附的亚稳平衡是描述离子交换吸附中实际反应平衡特征及限度的重要理论范式。本研究旨在从理论上推导离子吸附的亚稳态平衡模型,建立离子平衡吸附量与活化能之间的数学关系,探讨碱金属离子亚稳平衡吸附的特异性效应。结合恒流混合... 离子吸附的亚稳平衡是描述离子交换吸附中实际反应平衡特征及限度的重要理论范式。本研究旨在从理论上推导离子吸附的亚稳态平衡模型,建立离子平衡吸附量与活化能之间的数学关系,探讨碱金属离子亚稳平衡吸附的特异性效应。结合恒流混合置换技术及基于表面静电场理论的离子吸附动力学模型,探究了钾离子(K^(+))、钠离子(Na^(+))、锂离子(Li^(+))三种碱金属离子在铯离子(Cs^(+))-蒙脱石饱和样表面可能存在的亚稳平衡吸附作用;通过开展K^(+)、Na^(+)和Li^(+)在Cs^(+)-蒙脱石表面的吸附动力学实验,对理论模型进行验证。研究结果表明:(1)K^(+)、Na^(+)、Li^(+)在Cs^(+)-蒙脱石饱和样表面表现出显著的亚稳平衡吸附特征,交换离子的吸附活化能(能量势垒)来源于吸附态Cs^(+)的解吸过程;(2)相同离子浓度条件下,表面静电场引起的离子强极化作用导致各离子的亚稳平衡吸附呈现出特异性效应;(3)离子吸附的亚稳平衡受到离子浓度和离子特异性效应的共同影响,离子平衡吸附量与离子吸附速率呈正比例关系。碱金属离子在蒙脱石表面的吸附平衡是亚稳平衡而不是真正的平衡,离子亚稳平衡吸附的存在应归因于活化能对离子吸附动力学的限制。碱金属离子不同的极化效应导致各体系的活化能不同,进一步触发了离子亚稳态平衡吸附的特异性效应。 展开更多
关键词 离子吸附动力学 亚稳态 离子极化效应 活化能 离子特异性
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Biosorption mechanism of Cr (Ⅵ) onto cells of Synechococcus sp.
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作者 申丽 夏金兰 +2 位作者 何环 聂珍媛 邱冠周 《Journal of Central South University of Technology》 2007年第2期157-162,共6页
The biosorption mechanism of Cr (Ⅳ) ions on Synechococcus sp. biosorbent was studied by analyzing the biosorption kinetics as well as speciation change and bond formation during the biosorption process. The kinetic... The biosorption mechanism of Cr (Ⅳ) ions on Synechococcus sp. biosorbent was studied by analyzing the biosorption kinetics as well as speciation change and bond formation during the biosorption process. The kinetics study shows that the adsorption process of Cr (Ⅳ) consists of a very fast stage in the first several minutes, in which more than half of the saturation adsorption is attained, and a slower stage that approximately follows the first order kinetic model, basically Freundlich isotherm models were observed. Comparative studies of FT-LR spectra of K2Cr2O7, free cells of Synechococcus sp., and Cr-bound cells of Synechococcus sp show that the speciation of chromium that binds to the cells ofSynechococcus sp. is Cr (Ⅲ), instead of Cr (Ⅳ), and the carboxylic, alcoholic, amido and amino groups may be involved in the binding of Cr (Ⅲ). Integrative analyses of the surface electric potential, the effect of pH value on adsorption behavior of Cr (Ⅵ), and the results of FT-IR show that the biosorption of Cr (Ⅵ) follows two subsequent steps, biosorption of Cr2O7 ^2- by electrostatical force at the protonated active sites and reduction of Cr2O7^2- to Cr^3+ by the reductive groups on the surface of the biosorbents. 展开更多
关键词 BIOSORPTION Synechococcus sp. Cr (Ⅳ) biosorption mechanism biosorption kinetics
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