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Enhanced Hg Removal from Aqueous Streams by Sulfurized Activated Carbon Products: Equilibrium and Kinetic Studies

机译:通过硫化活性炭产物从含水流中加强Hg:均衡和动力学研究

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The removal of Hg from contaminated aquatic media is of major importance, taking into consideration the highly toxic character of the element. One of the most promising water treatment technologies is adsorption by low cost adsorbents, such as activated carbon produced by agricultural byproducts. In this study, activated carbon in granular form (GAC) was produced using pistachio shells from Aegina Island (Greece). Two main GAC products have been synthesized. The first one was chemically activated using ZnCl2. The second one was further treated with Na2S in order to introduce S atoms on the functional groups. The effectiveness of synthesized GAC products for Hg removal was evaluated by conducting batch equilibrium and kinetic experiments. It was found that sulfurization was able to increase by a factor of more than 2 the adsorptive capacity of activated carbon. Namely the maximum adsorption capacity was 73 mg/g for the simple GAC and increased up to 166 mg/g for the S-modified product. The kinetics of adsorption was described with almost equivalent precision using the pseudo-first and the pseudo-second order models, a behavior which is often observed in adsorption experiments, depending on the experimental conditions. The value of activation energy E-A was found to be negative (- 18.8 kJ/mol) in the case of simple GAC and positive (8.27 kJ/mol), in the case of S-modified GAC, suggesting that Hg adsorption on the modified carbon follows a different mechanism, closer to chemisorption processes.
机译:考虑到元素的高度毒性,从污染的水生媒体中去除Hg的重视。最有前途的水处理技术之一是通过低成本吸附剂吸附,例如由农业副产品产生的活性炭。在该研究中,使用来自Aegina岛(希腊)的开心壳生产颗粒形式(GAC)的活性炭。已经合成了两个主要的GAC产品。第一个使用ZnCl2化学激活。用Na 2进一步处理第二个,以便在官能团上引入S原子。通过进行批料平衡和动力学实验来评估合成的GAC产品的合成GAC产品的有效性。发现硫磺能够增加60多个活性炭的吸附容量。即简单的GAC的最大吸附容量为73mg / g,并且对于S型产品增加至多166mg / g。使用伪第一和伪二阶模型的几乎等同的精度描述了吸附的动力学,这是根据实验条件在吸附实验中经常观察到的行为。发现活化能量EA的值是阴性( - 18.8 kJ / mol),在简单的GAC和阳性(8.27kJ / mol)的情况下,在S改性GAC的情况下,表明HG对改性碳的吸附遵循不同的机制,更接近化学吸取过程。

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