de Menezes Eliana W, Lima Eder C, Royer Betina, de Souza Felipe E, dos Santos Bruna D, Gregório José R, Costa Tania M H, Gushikem Yoshitaka, Benvenutti Edilson V
Institute of Chemistry, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre, RS, Brazil.
J Colloid Interface Sci. 2012 Jul 15;378(1):10-20. doi: 10.1016/j.jcis.2012.04.021. Epub 2012 Apr 19.
The present study reports the development of an ionic silica based hybrid material containing the cationic pyridinium group, which was employed for the removal of the Reactive Red 194 textile dye from aqueous solution. Three hybrid material samples were prepared with planned textural and chemical properties, varying the inorganic precursor molar percentage in the sol-gel synthesis. The obtained samples were defined as Py/Si-90, Py/Si-92 and Py/Si-94, where the number specifies the inorganic molar percentage. The hybrid samples were characterized by elemental, infrared, (13)C and (29)Si NMR, N(2) adsorption-desorption isotherms and thermogravimetric analyses. The dye-removing ability of these adsorbents was determined by the batch contact adsorption procedure. Effects such as pH value and adsorbent dosage on the adsorption capacities were studied. Four kinetic models were applied. The adsorption was best fitted to Avrami fractional-order kinetic model for the three hybrid material samples. The kinetic data were also adjusted to an intra-particle diffusion model resulting three linear regions, indicating that the adsorption kinetics follows multiple sorption rates. The equilibrium data were fitted to Langmuir, Freundlich and Liu isotherm models. The maximum adsorption capacities were 165.4, 190.3 and 195.9 mg g(-1) for Py/Si-90, Py/Si-92 and Py/Si-94, respectively. Simulated dye-house effluents were used to check the applicability of the proposed adsorbents for effluent treatment. Dye loaded adsorbents were regenerated (>98.2%) by using 0.4 mol L(-1) of NaOH solution as an eluent.
本研究报道了一种含阳离子吡啶鎓基团的离子型二氧化硅基杂化材料的研制,该材料用于从水溶液中去除活性红194纺织染料。通过在溶胶-凝胶合成中改变无机前驱体的摩尔百分比,制备了具有预定结构和化学性质的三种杂化材料样品。所得样品分别定义为Py/Si-90、Py/Si-92和Py/Si-94,其中数字表示无机摩尔百分比。通过元素分析、红外光谱、(13)C和(29)Si核磁共振、N(2)吸附-脱附等温线和热重分析对杂化样品进行了表征。采用间歇接触吸附法测定了这些吸附剂的染料去除能力。研究了pH值和吸附剂用量等因素对吸附容量的影响。应用了四种动力学模型。三种杂化材料样品的吸附最符合Avrami分数阶动力学模型。动力学数据也根据颗粒内扩散模型进行了调整,得到了三个线性区域,表明吸附动力学遵循多种吸附速率。平衡数据符合Langmuir、Freundlich和Liu等温线模型。Py/Si-90、Py/Si-92和Py/Si-94的最大吸附容量分别为165.4、190.3和195.9 mg g(-1)。使用模拟印染废水来检验所提出的吸附剂用于废水处理的适用性。用0.4 mol L(-1)的NaOH溶液作为洗脱剂对负载染料的吸附剂进行再生(>98.2%)。