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Removal of Reactive Dye by Adsorption over Chemical Pretreatment Coal Based Bottom Ash

机译:通过吸附在化学预处理煤基灰灰对反应性染料去除

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The coal based bottom ash from Thailand Power Plant has been used as the adsorbent for the removal of reactive dye in aqueous solution. The bottom ash was pretreated with 1 N HC1, 1 N HNO3, and 30% H2O2 before the adsorption tests. Adsorption of the pretreated bottom ash has been studied as a function of particle size, contact time, initial solution pH, and initial solution concentration. The ability to adsorb reactive dye (in terms of percentage dye removal) of these chemical treated bottom ashes are not significantly different. The adsorption reached an equilibrium state at about 15 hours from the beginning of the experiments. The adsorption capacity at the equilibrium state increased as the size of the particles decreased. This was due to the increase in surface area of the adsorbents. The maximum adsorption occurred at the initial solution pH lower than 2 for all adsorbents with the highest percentage of dye removal and the highest amount dye adsorbed of 75.8 and 0.1 mg/g adsorbents, respectively, for the H2O2 treated bottom ash. With varying the initial solution concentrations, the results showed that the adsorption capacity decreased as the initial solution concentration increased which was limited by the amount of the adsorbents in the system. Adsorption equilibrium data were fitted with both Langmuir and Freundlich adsorption isotherms with the correlation coefficient of 0.947 and 0.937, respectively.
机译:来自泰国发电厂的基煤的底部灰烬已被用作除去水溶液中反应性染料的吸附剂。在吸附试验之前,用1N HCl,1n HNO 3和30%H 2 O 2预处理底灰。已经研究了预处理的底灰的吸附作为粒度,接触时间,初始溶液pH和初始溶液浓度的函数。吸附活性染料(就这些化学处理的底部底部的反应性染料(百分比染料除去)没有显着差异。在实验开始时,吸附在约15小时内达到平衡状态。随着颗粒的尺寸降低,平衡状态下的吸附容量增加。这是由于吸附剂的表面积增加。对于具有最高染料去除百分比的初始溶液pH,最大吸附在初始溶液pH下,分别为H 2 O 2处理的底灰分分别吸附75.8和0.1mg / g吸附剂的最高量染料。随着初始溶液浓度的改变,结果表明,随着初始溶液浓度的增加,吸附容量降低,其受系统中吸附剂量的限制。吸附平衡数据分别配有Langmuir和Freundlich吸附等温线,分别具有0.947和0.937的相关系数。

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