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Kinetics, thermodynamics and isotherm studies on adsorption of methyl orange from aqueous solution using ion exchange resin Amberlite IRA-400

机译:使用离子交换树脂Amberlite IRA-400从水溶液中吸附甲基橙的动力学,热力学和等温线研究

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Study on removal of anionic dye methyl orange (MO) from aqueous solution was investigated using ion exchange resin Amberlite IRA-400 batch adsorption process. Effect of operating adsorption factors that influence on the adsorption process such as contact time (1-300 min), initial dye concentration (25-500 ppm), solution pH (2.5-11.5), resin dose (5-100 g/L) and temperature (293-353 K) were studied. The extent of MO adsorption was increased with increase in the contact time, agitation speed, temperature, initial dye concentration and adsorbent dose but decreased with increase/decrease of the solution pH (maximum at pH-6.5). Equilibrium data were analyzed by both Langmuir isotherm and Freundlich adsorption isotherm. The maximum monolayer adsorption capacity of Amberlite IRA-400 was resulted as 74.4 mg/g at 303 K. The value of separation factor (R-L) from Langmuir equation and Freundlich constant (n) indicated on favorability of adsorption. Thermodynamic parameters such as Delta G degrees,Delta H degrees and Delta S degrees were calculated and the positive value of Delta H degrees (4.13, 3.63 and 7.09 kJ mol(-1)) for corresponding initial MO dye concentrations: 50, 100 and 200 ppm, respectively, in the solution indicated that the adsorption was of endothermic in nature. Kinetics result revealed that the adsorption of MO is of pseudo second-order and chemisorptions type.
机译:采用离子交换树脂Amberlite IRA-400间歇吸附法研究了从水溶液中去除阴离子染料甲基橙(MO)的研究。影响吸附过程的操作吸附因子的影响,例如接触时间(1-300分钟),初始染料浓度(25-500 ppm),溶液pH(2.5-11.5),树脂用量(5-100 g / L)研究了温度(293-353 K)。 MO的吸附程度随接触时间,搅拌速度,温度,初始染料浓度和吸附剂剂量的增加而增加,但随着溶液pH值的增加/减少而减小(最大pH为6.5)。平衡数据通过Langmuir等温线和Freundlich吸附等温线进行分析。在303 K下,Amberlite IRA-400的最大单层吸附容量为74.4 mg /g。Langmuir方程的分离因子(R-L)值和Freundlich常数(n)表明了吸附的良好性。计算了诸如Delta G度,Delta H度和Delta S度的热力学参数,并针对相应的初始MO染料浓度:50、100和200得出了Delta H度的正值(4.13、3.63和7.09 kJ mol(-1))。溶液中的ppm分别表示吸附本质上是吸热的。动力学结果表明,MO的吸附为拟二级化学吸附。

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