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- W2912491818 abstract "In this research, the physicochemical characteristics of crystal violet (CV) adsorption on raw and modified nanosilica were elucidated through statistical physical models coupled with sites energy distribution. Experimental equilibrium isotherms of Crystal Violet adsorption on raw and modified nanosilica were recorded at four temperatures. Experimental results clearly indicated that the adsorbents presented typical multilayer isotherms and also, that the modified nanosilica was better to remove CV dye. Then, BET, modified BET and infinity multilayer models were fitted with the experimental isotherm data. The infinity multilayer model has agreed satisfactorily with the adsorption data. This model was used to interpret the adsorption process. The model is defined by several parameters which are able to describe the position of CV on the adsorbent surface, the adsorption quantity, the total formed layers during the adsorption process and the adsorption energies. All these parameters were characterized by several physicochemical aspects and interpreted aiming to elucidate the CV adsorption process. The site energy distribution was evaluated at different temperatures to verify the interactions adsorbate/adsorbent and the surface heterogeneity." @default.
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- W2912491818 date "2019-04-01" @default.
- W2912491818 modified "2023-10-16" @default.
- W2912491818 title "Physicochemical assessment of crystal violet adsorption on nanosilica through the infinity multilayer model and sites energy distribution" @default.
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- W2912491818 doi "https://doi.org/10.1016/j.molliq.2018.12.064" @default.
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