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首页> 外文期刊>Journal of Molecular Liquids >Fast and highly efficient removal of 2,4-D using amino-functionalized poly (glycidyl methacrylate) adsorbent: Optimization, equilibrium, kinetic and thermodynamic studies
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Fast and highly efficient removal of 2,4-D using amino-functionalized poly (glycidyl methacrylate) adsorbent: Optimization, equilibrium, kinetic and thermodynamic studies

机译:使用氨基官能化聚(甲基丙烯酸缩水甘油酯)吸附剂快速且高效地去除2,4-D:优化,平衡,动力学和热力学研究

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Experimental design has been applied to consider any possible interaction between process parameters with fewer experiments as well as to create a response model influenced by several factors and to optimize the response. In this study, response surface methodology (RSM), which is cost-effective and less laborious for process optimization has been applied to observe the performance of amino-functionalized poly (glycidyl methacrylate) as adsorbent (AR) in the 2,4-dichlorophenoxyacetic acid (2,4-D) adsorption from aquatic media in terms of adsorbent dose (0.0125-0.05 g), temperature (20-30 degrees C) and stirring speed (100-200 rpm). The greatest adsorption capacity was calculated as 99.4470 mg g(-1) for 100 mg/L solution under the optimal conditions (0.05 g of adsorbent and 100.01 revolution speed per minute at 28.725 degrees C). on the other hand, experimental outcome displayed that 2,4-D adsorption on the adsorbent was notably quick, where 83% of the adsorption occurred within the first 15 min, and reached almost equilibrium at 60 min and the adsorbent had a relatively high adsorption capacity changing between 100 and 450 mu mol/g (20-100 mg g(-1)) according to adsorbent dosage. The rate of adsorption was represented by both pseudo-second-order and Elovich models more efficiently than the pseudo first-order kinetic model. The equilibrium data were found to be compatible with the relevant isotherm models such as Langmuir (1-4), Freundlich and Dubinin-Radushkevich (DRK). The findings of the thermodynamic study indicate that the concerned adsorption system is applicable, endothermic and enthalpy driven. (C) 2018 Published by Elsevier B.V.
机译:实验设计已应用于考虑工艺参数之间的任何可能的相互作用,实验较少,以及创建受几个因素影响的响应模型,并优化响应。在该研究中,已经应用了对工艺优化具有成本效益和更少费力的响应面方法(RSM),以观察到2,4-二氯苯脲酸2,4-二氯苯酸的吸附剂(Ar)作为吸附剂(Ar)的氨基官能化聚(甲基丙烯酸酯)的性能酸(2,4-D)根据吸附剂量(0.0125-0.05g),温度(20-30℃)和搅拌速度(100-200rpm)从水生介质吸附。在最佳条件下,最大的吸附容量为99.44770mg(-1),可在最佳条件下(0.05g吸附剂,每分钟100.01次),每分钟在28.725℃下速度为100mg / l)。另一方面,显示的实验结果显示,吸附剂对吸附剂的吸附非常快,其中& 83%的吸附在前15分钟内发生,并且在60分钟内几乎达到平衡,吸附剂具有相对的根据吸附剂剂量,高吸附能力在100和450μmmol/ g(20-100mg(-1))之间变化。伪二阶和ELOVICH模型的吸附速率比伪首次动力学模型更有效地表示。发现均衡数据与相关的等温模型相容,如Langmuir(1-4),Freundlich和Drk)。热力学研究的发现表明,有关吸附系统适用,吸热和焓驱动。 (c)2018由elestvier b.v出版。

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