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Investigation of Ammonium and Nitrite Removal by Zeolite Material Synthesized on Red Mud Base

机译:红泥基合成沸石材料去除氨氮和亚硝酸盐的研究

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The zeolite with the unit formula of Na8(Al6Si6O24)S.4H2O was synthesized directly on red mud base with addition of single silicon (signed as RH-ZeO-Si) and both silicon and aluminum portions (signed as RM-ZeO-SiAl) to original Tan Rai (Vietnam) red mud. The structure of the zeolite was studied by X-Ray difration and FT-IR absorption spectra. The synthesized materials were studied on their adsorption ability of ammonium and nitrite ions. The results showed that, the adsorption of ammonium cation was mostly allowing ion-exchange mechanism and the zeolite crystaline forms played predominantly role besids minor one of single metal oxides. For nitrite anions, it is otherwise, the adsorption mechanism was mostly leant to electrostatic attraction between nitrite anions and electropositive effect of the hematite surface in light acidic condition. The adsorption isotherms of all ammonium and nitrite ions on both synthesized materials were nearly conformable with Freundlich model than Langmuir model. Those showed that, both materials have unhomogeneous adsorption surface. The maximum adsorption capacity of ammonium and nitrite on RM-ZeO-Si was 5.71 mg/g and 2.73 mg/g respectively, and on RM-ZeO-SiAl was 5.61 mg/g and 3.12 mg/g respectively. The initial test of competitive ions influencing on adsorption ability showed that, for all cases the competition of cations to ammonium ion was more significance than those of anions to nitrite ion in the same conditions.
机译:分子式为Na8(Al6Si6O24)S.4H2O的沸石是在红泥基上直接合成的,同时添加了单硅(标记为RH-ZeO-Si)以及硅和铝部分(标记为RM-ZeO-SiAl)到原始的Tan Rai(越南)红泥。通过X射线衍射和FT-IR吸收光谱研究了沸石的结构。研究了合成材料对铵离子和亚硝酸根离子的吸附能力。结果表明,铵阳离子的吸附主要是通过离子交换机制实现的,而沸石的结晶形式主要是次要的单一金属氧化物。对于亚硝酸根阴离子,相反,其吸附机理主要取决于亚硝酸根阴离子之间的静电吸引和轻酸性条件下赤铁矿表面的正电效应。两种合成材料上所有铵离子和亚硝酸根离子的吸附等温线均与Langmuir模型相符,与Freundlich模型相符。结果表明,两种材料均具有不均匀的吸附表面。铵和亚硝酸盐在RM-ZeO-Si上的最大吸附容量分别为5.71 mg / g和2.73 mg / g,在RM-ZeO-SiAl上的最大吸附容量分别为5.61 mg / g和3.12 mg / g。竞争离子影响吸附能力的初步测试表明,在相同条件下,在所有情况下,阳离子对铵离子的竞争比阴离子对亚硝酸根离子的竞争更为重要。

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