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Equilibrium, kinetics and thermodynamics study of phenols adsorption onto activated carbon obtained from lignocellulosic material (Eucalyptus Globulus labill seed)

机译:木质纤维素材料(尤加利桉树种子)制得的活性炭上酚吸附的平衡,动力学和热力学研究

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Activated carbon was prepared from lignocellulosic material (Eucalyptus Globulus labill seed) by chemical activation with ZnCl2 at two different concentrations (10 and 25 % m/v) named ACS25 and ACS10. The textural characteristics of the activated carbons (ACs) were determined by N-2 adsorption isotherms; these exhibit B.E.T. surface areas of 250 and 300 m(2) g(-1) for ACS25 and ACS10, respectively, with micropore volume contents of 0.140 and 0.125 cm(3) g(-1) in the same order. In addition, the FTIR and Boehm methods were conducted for the chemical characterisation of ACs, where many groups with basic character were found, which favours the adsorption of phenols. The prepared carbonaceous adsorbents were used in the adsorption of wide pollutants monosubstituted phenol derivatives: phenol, 4-nitrophenol and 4-chlorophenol. The effect of temperature on the thermodynamics, kinetic and equilibrium of phenols adsorption on ACs was thoroughly examined. The adsorption kinetics adjusted properly for a pseudo-second-order kinetic model. However, the Elovich model (chemisorption) confirms that phenols adsorption did not occur via the sharing of electrons between the phenolic ring and basal plane of ACs because is not properly adjusted, so the process is given by physisorption. The thermodynamic parameters [i.e. Gibbs free energy change (Delta GA degrees), enthalpy change (Delta HA degrees) and entropy change (Delta SA degrees)] were also evaluated. The overall adsorption process was exothermic and spontaneous in nature. The values found in the thermodynamic study, confirm that the adsorption process corresponds to a clearly physical process.
机译:活性炭是通过用两种不同浓度(分别为ACS25和ACS10)的ZnCl2进行化学活化而由木质纤维素材料(全球蓝桉种子)制成的。活性炭(ACs)的织构特性是通过N-2吸附等温线确定的。这些展示了B.E.T. ACS25和ACS10的表面积分别为250和300 m(2)g(-1),微孔体积含量分别为0.140和0.125 cm(3)g(-1)。此外,采用FTIR和Boehm方法对AC进行化学表征,发现了许多具有碱性的基团,有利于酚类的吸附。制备的碳质吸附剂用于吸附宽范围的污染物单取代的苯酚衍生物:苯酚,4-硝基苯酚和4-氯苯酚。彻底研究了温度对苯酚在ACs上吸附的热力学,动力学和平衡的影响。吸附动力学适当调整为伪二级动力学模型。但是,Elovich模型(化学吸附)证实,酚醛树脂的吸附没有通过适当地调节AC的酚环和底面之间的电子共享来发生,因此该过程是通过物理吸附进行的。热力学参数[即还评估了吉布斯自由能变化(ΔGA度),焓变(ΔHA度)和熵变(ΔSA度)。整个吸附过程本质上是放热的和自发的。在热力学研究中发现的值证实了吸附过程与明显的物理过程相对应。

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