Experimental data for carbonate adsorption onto synthetic goethite, spanning 3 orders of magnitude in carbonate concentrations, were simulated using the triple-layer surface complexation model (TLM). A single set of TLM parameters successfully described the adsorption behavior versus pH over the con
Surface complexation modeling of soluble molybdenum adsorption by Mn3O4
β Scribed by Zhongwei Zhao; Jing Liu; Wentang Xia; Caifang Cao; Xingyu Chen; Honggui Li
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 2010
- Tongue
- English
- Weight
- 204 KB
- Volume
- 85
- Category
- Article
- ISSN
- 0268-2575
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β¦ Synopsis
Abstract
BACKGROUND: Mo is a harmful element that should strictly be limited in electrolytic manganese dioxide but can readily be removed by Mn~3~O~4~. However, as its adsorption mechanism is not yet clear the aims of this work are to clarify the absorption phenomena and specific reaction processes of Mo onto Mn~3~O~4~.
RESULTS: Some theoretical parameters have been obtained: the total surface site density and protonation constants (N~T~ = 6.84 Γ 10^β3^ mol g^β1^, $K_{a1}^{\rm {int}} = 2.0 \times 10^{-5}$, $K_{a2}^{\rm {int}} = 1.49 \times 10^{-10}$) were obtained by nonβlinear data fitting of acidβbase titrations. Distribution of soluble Mo species derived from thermodynamic calculations showed that the concentration of polyβmolybdenum acid ion was extraordinarily low and could be ignored when the concentration of soluble Mo was 1 mg L^β1^. The adsorption isotherm followed the Freundlich adsorption equation. Under the conditions V = 0.15 L, W = 2 g L^β1^, [Mo]~T~ = 1.12 mg L^β1^, T = 80 Β°C, P = 1.013 Γ 10^5^ Pa, 1.0 mol L^β1^ MnSO~4~ and pH range 1β6.5, the nonβelectrostatic model (NEM) was used to quantify Mo adsorption.
CONCLUSION: The surface adsorption complexation modeling of Mo onto Mn~3~O~4~ can be successfully applied to predict adsorption rates of Mo onto Mn~3~O~4~ at different pH values, with an absolute error less than 6%. Copyright Β© 2009 Society of Chemical Industry
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