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A Further Investigation of NH4+ Removal Mechanisms by Using Natural and Synthetic Zeolites in Different Concentrations and Temperatures

机译:通过使用不同浓度和温度的天然和合成沸石进一步研究NH4 +去除机制

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摘要

We investigated the ammonium removal abilities of natural and synthetic zeolites with distinct Si/Al ratios and various surface areas to study how adsorption and ion exchange processes in zeolites perform under different ammonium concentrations and different temperatures. Five zeolites—natural mordenite, chabazite, erionite, clinoptilolite, and synthetic merlinoite—were immersed in 20, 50, and 100 mg/kg ammonium solutions. The results demonstrate that zeolites under high ammonium concentrations (100 mg/kg) possess higher physical adsorption capacity (0.398⁻0.468 meq/g), whereas those under lower ammonium concentrations (20 mg/kg) possess greater ion exchange properties (64⁻99%). The ion exchange ability of zeolites is extremely dependent on the cation content of the zeolites, and the cation content is affected by the Si/Al ratio. The surface area of zeolites also has a partial influence on its physical adsorption ability. When the surface area is less than 100 m2/g, the adsorption ability of zeolite increases obviously with surface area; however, adsorption ability is saturated as the surface area becomes larger than this critical value of 100 m2/g. When we placed the zeolites in 50 mg/kg ammonium concentration at different temperatures (5⁻50 °C), we found that the zeolites exhibited the highest ammonium removal ability at 30 °C and the potassium release was enhanced at 30⁻40 °C.
机译:我们研究了具有不同的Si / Al比和各种表面积的天然和合成沸石的铵去除能力,以及各种表面积,以研究沸石在不同铵浓度和不同温度下的吸附和离子交换过程。五个沸石 - 天然丝硝,Chabazite,Erionite,Clinopholite和合成梅利诺钛矿 - 浸入20,50和100mg / kg铵溶液中。结果表明,高铵浓度(100mg / kg)下的沸石具有较高的物理吸附能力(0.398×0.468meq / g),而下铵浓度(20mg / kg)下的物理吸附容量具有更大的离子交换特性(64˚99 %)。沸石的离子交换能力极大地取决于沸石的阳离子含量,阳离子含量受Si / Al比的影响。沸石的表面积也对其物理吸附能力进行了部分影响。当表面积小于100m 2 / g时,沸石的吸附能力明显增加了表面积;然而,由于表面积大于该临界值为100m 2 / g,吸附能力饱和。当我们在不同温度(5±50℃)的50mg / kg铵浓度下放置沸石时,发现沸石在30℃下表现出最高的铵去除能力,并且在30°40℃下提高钾释放。

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