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Removal of 4-picoline from aqueous solution by adsorption onto bagasse fly ash and rice husk ash: Equilibrium, thermodynamic, and desorption study

机译:通过吸附在蔗渣粉煤灰和稻壳灰上去除水溶液中的4-甲基吡啶:平衡,热力学和解吸研究

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This paper deals with the adsorption of 4-picoline (4Pi) from aqueous solutions onto bagasse fly ash (BFA) and rice husk ash (RHA) as adsorbents. We discuss the effect of several parameters, such as initial pH, adsorbent dose, contact time, initial concentration, and temperature, on the batch adsorption. We collected equilibrium sorption isotherm data, which could be well-represented by the Redlich-Peterson, Toth, and Radke-Prausnitz isotherm equations. The maximum removal of 4Pi was found to be 46% and 96% by BFA, and 55% and 95% by RHA for lower (50 mg/L) and higher (600 mg/L) concentration of 4Pi, respectively, with sorbent dosages of 5 g/L for BFA and 20 g/L for RHA. Adsorption was found to be very fast, and about 72-90% of 4Pi removal was achieved in the initial 5min of contact time. We found the sorption of 4Pi on BFA and RHA to be endothermic in nature. The spent adsorbents can be dried and used as a cofuel in boiler furnaces/incinerators.
机译:本文研究了水溶液中4-甲基吡啶(4Pi)作为吸附剂在蔗渣粉煤灰(BFA)和稻壳灰(RHA)上的吸附。我们讨论了几个参数(例如初始pH,吸附剂剂量,接触时间,初始浓度和温度)对批量吸附的影响。我们收集了平衡吸附等温线数据,这些数据可以由Redlich-Peterson,Toth和Radke-Prausnitz等温线方程很好地表示。对于较低浓度(50 mg / L)和较高浓度(600 mg / L)的4Pi,通过吸附剂剂量,BFA的最大去除量分别为46%和96%,RHA分别为55%和95%对于BFA为5 g / L,对于RHA为20 g / L。发现吸附非常快,并且在接触的最初5分钟内约实现了4Pi去除率的72-90%。我们发现4Pi在BFA和RHA上的吸附本质上是吸热的。废吸附剂可以干燥并用作锅炉炉/焚化炉中的助燃料。

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