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Effect of Br?nsted acidity of HY zeolites in adsorption of methylene blue and comparative study with bentonite

机译:HY分子筛的布朗斯台德酸度对亚甲基蓝吸附的影响及与膨润土的比较研究

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In the present study, HY zeolite with various Si/Al ratios have been used as adsorbents for the removal of a cationic dye; methylene blue, from aqueous solution using a batch process, and a comparative study with bentonite was conducted. Characterizations of the adsorbents were carried out by nitrogen adsorption–desorption, pyridine chemisorption followed by infrared spectroscopy and X-ray fluorescence. The effects of various parameters such as contact time, initial MB concentration, adsorbent concentration and solution pH were investigated. The adsorption of methylene blue on the zeolites is directly related to the Br?nsted acidity where each molecule of MB corresponds to one Br?nsted acid site. This means that the adsorption mechanism occurs via a cation exchange. So, adsorption of MB can be used to determine the Br?nsted acidity of HY zeolites. The highest removal efficiency (181?mg?g?1) corresponding to 86% of the abatement rate has been obtained with the bentonite. At lower dye concentrations (≤ 50?mg?L?1), HY (16.6) and bentonite have a close adsorption capacities, 93?mg?g?1 (97%) and 96?mg?g?1 (99%) respectively. For both material types, the pseudo-second-order kinetic model fits very well with the experimental data. Equilibrium data fitted well the Langmuir isotherm model in the studied concentrations range of MB.
机译:在本研究中,具有各种Si / Al比的HY沸石已被用作吸附剂,用于去除阳离子染料。用间歇法从水溶液中分离出亚甲蓝,并与膨润土进行了对比研究。吸附剂的表征是通过氮吸附-解吸,吡啶化学吸附,红外光谱和X射线荧光进行的。研究了各种参数的影响,如接触时间,初始MB浓度,吸附剂浓度和溶液pH。亚甲基蓝在沸石上的吸附与布朗斯台德酸度直接相关,其中每个MB分子对应一个布朗斯台德酸位。这意味着吸附机理是通过阳离子交换发生的。因此,MB的吸附可用于确定HY沸石的布朗斯台德酸度。膨润土可获得最高的去除效率(181?mg?g?1),相当于去除率的86%。在较低的染料浓度(≤50?mg?L?1)下,HY(16.6)和膨润土具有接近的吸附能力,分别为93?mg?g?1(97%)和96?mg?g?1(99%)。分别。对于这两种材料类型,伪二级动力学模型都非常适合实验数据。在研究的MB浓度范围内,平衡数据非常适合Langmuir等温模型。

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