Borrok D M, Fein J B
Department of Civil Engineering and Geological Sciences, University of Notre Dame, 156 Fitzpatrick Hall, Notre Dame, IN 46556, USA.
J Colloid Interface Sci. 2005 Jun 1;286(1):110-26. doi: 10.1016/j.jcis.2005.01.015.
Bacterial surface adsorption reactions are influenced by electric field effects caused by changes in ionic strength; however, existing datasets are too sparse to definitively constrain these differences or to determine the best way to account for them using thermodynamic models. In this study, we examine the ionic strength dependence of proton and metal adsorption onto the surfaces of Pseudomonas mendocina and Pseudomonas putida by conducting proton, Cd(II), Pb(II), and Sr(II) adsorption experiments over the ionic strength range of 0.001 to 0.6 M. Chosen experimental results are thermodynamically modeled using a non-electrostatic approach, a diffuse layer model (DLM), and a triple-layer model (TLM). The results demonstrate that bacterial surface electric field effects are negligible for proton, Cd, and Pb adsorption onto P. putida and P. mendocina, and that the discrete site non-electrostatic model developed in this study is adequate for describing these reactions. The extent of Sr adsorption is influenced by changes in the bacterial surface electric field; however, the non-electrostatic model better describes Sr adsorption behavior than the DLM or TLM. The DLM and TLM greatly overpredict the effect of the electric field for all adsorption reactions at all ionic strengths tested.
细菌表面吸附反应受离子强度变化引起的电场效应影响;然而,现有数据集过于稀疏,无法明确限制这些差异,也无法确定使用热力学模型解释这些差异的最佳方法。在本研究中,我们通过在0.001至0.6 M的离子强度范围内进行质子、Cd(II)、Pb(II)和Sr(II)吸附实验,研究了质子和金属在门多萨假单胞菌和恶臭假单胞菌表面吸附的离子强度依赖性。选择的实验结果使用非静电方法、扩散层模型(DLM)和三层模型(TLM)进行热力学建模。结果表明,质子、Cd和Pb在恶臭假单胞菌和门多萨假单胞菌表面的吸附中,细菌表面电场效应可忽略不计,且本研究中开发的离散位点非静电模型足以描述这些反应。Sr的吸附程度受细菌表面电场变化的影响;然而,非静电模型比DLM或TLM能更好地描述Sr的吸附行为。在所有测试的离子强度下,DLM和TLM对所有吸附反应的电场效应都有极大的高估。