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首页> 外文期刊>Journal of Molecular Liquids >Application of foam separation method for removal of alkaline earth metal ions from solution
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Application of foam separation method for removal of alkaline earth metal ions from solution

机译:泡沫分离方法从溶液中除去碱土金属离子的应用

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Foam separation was used to separate dissolved alkaline earth metal ions from aqueous solution. The mechanism is based on anionic surfactant adsorption onto the bubbles generated in the aqueous alkaline earth metal solution. The negatively charged bubbles rise while adsorbing the positive metal ions and change to foam at the surface. The foam in the glass tube drains excess water as it rises and is finally turned into dry foam. The foam separation method with sodium decyl sulfate (SDeS) (8 mmol L-1, below the critical micelle concentration (CMC)) was used to remove alkaline earth metal (Mg, Ca, and Sr) chlorides in the respective systems. The initial concentrations of the surfactant and alkaline earth metal chloride were 8 mmol L-1 (below the CMC) and 2.5 mmol L-1 in 250 mL of solution, respectively. The results showed that the removal rate in the one-component alkaline earth metal system increased with increasing atomic number: Mg (46%) < Ca (58%) < Sr (77%) in 5 h of foam separation. A similar trend was observed in the foam separation in a mixed system of alkaline earth metals. However, the concentration of the surfactant counterion (Na+) remained almost constant after the operation, indicating that the divalent ions, rather than the monovalent surfactant counterions, were preferentially adsorbed onto the sulfate group of the anionic surfactant. The changes in the concentration of the alkaline earth metal ions were analyzed using kinetics. The plot of the first-order rate constant against the ionic radius of each metal suggested a linear relationship in each series of alkaline earth metals or alkali metals. The present study indicates that foam separation using SDeS can be used to effectively remove large alkaline earth metal ions from contaminated water. (C) 2019 Elsevier B.V. All rights reserved.
机译:泡沫分离用于将溶解的碱土金属离子与水溶液分离。该机制基于阴离子表面活性剂吸附到含水碱土金属溶液中产生的气泡上。在吸附正金属离子并在表面的泡沫变化时,带负电的气泡升高。玻璃管中的泡沫在上升时汲取过量的水,最终变成干泡沫。使用泡沫分离方法用硫酸钠(SDE)(8mmol L-1,低于临界胶束浓度(CMC)),用于在各个系统中除去碱土金属(Mg,Ca和Sr)氯化物。表面活性剂和碱土金属氯化物的初始浓度分别为8mmol L-1(下方CMC)和2.5mmol L-1,分别为250mL溶液。结果表明,单组分碱土金属系统中的去除率随着泡沫分离的5小时内的增加而增加,原子数:Mg(46%)

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