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Physicochemical and thermodynamic study of malachite green adsorption on raw and modified corn straw

机译:原料和改性玉米秸秆对孔雀石绿吸附的物理化学和热力学研究

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Physicochemical and thermodynamic interpretations of malachite green (MG) adsorption on raw (RCS) and modified corn straw (MCS) are detailed in this work. Experimental isotherms were constructed at different temperatures (from 298 to 328K). To interpret these curves, three models named multilayer model with saturation, double layer model with two energies, and monolayer model with one energy were developed based on the principle of grand canonical ensemble in statistical physics. The double layer model with two energies was the more adequate to represent the adsorption process. Thermodynamic functions such as configurational entropy (S-a), free adsorption enthalpy (G), and internal energy (E-int) were studied. The number of MG molecules per site (n) ranged from 0.33 to 2.33 and the adsorbed quantity at saturation (Q(asat)) ranged from 164.15 to 528.19mgg(-1) and both increased with the temperature. The density of the receptor sites (N-M) ranged from 248.71 to 104.88 and decreased with the temperature. For RCS and MCS, the first and second energies, E-1 and E-2, increased with the temperature, with E-1 being higher than E-2. The adsorption energies of MCS (7.77-11.19kJmol(-1)) were higher than the adsorption energies of RCS (6.17-10.88kJmol(-1)). The adsorption process occurred by physisorption and the disorder increased at low equilibrium concentrations, but decreased at high concentrations. The free enthalpy and internal energy described with care the spontaneity of the studied system.
机译:在这项工作中详细说明了对原始(RCS)和改性玉米秸秆(MCS)的孔雀石绿色(Mg)吸附的物理化学和热力学解释。实验等温线在不同的温度(298至328k)处构建。为了解释这些曲线,基于统计物理学的大规范合奏原理,开发了三种具有饱和度,双层模型的三个具有饱和度,双层模型和单层模型的模型,以及一个能量的单层模型。具有两个能量的双层模型更具足以表示吸附过程。研究了诸如配置熵(S-A),游离吸附焓(G)和内能(E-INT)的热力学功能。每个位点(n)的Mg分子的数量范围为0.33-2.33,饱和度的吸附量(Q(Q(Q(Q(Q(Q))范围为164.15至528.19mg(-1),两者都随温度而增加。受体位点(N-M)的密度范围为248.71至104.88,并随温度降低。对于RCS和MCS,第一和第二能量,E-1和E-2随温度而增加,E-1高于E-2。 MCS的吸附能量(7.77-11.19kjmol(-1))高于RCS的吸附能量(6.17-10.88KJmol(-1))。物理化发生的吸附过程,病症在低平衡浓度下增加,但高浓度下降。通过注意研究系统的自发性来描述的自由焓和内部能量。

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