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介孔泡沫硅纳米材料对水溶液中结晶紫的吸附研究:过程平衡、动力学、等温线和热力学研究。

Studies of adsorption of crystal violet from aqueous solution by nano mesocellular foam silica: process equilibrium, kinetic, isotherm, and thermodynamic studies.

机构信息

Research Center for Nanotechnology, Changchun University of Science and Technology, Changchun 130022, 7186 Weixing Road, Jilin Province, China E-mail:

出版信息

Water Sci Technol. 2020 May;81(10):2092-2108. doi: 10.2166/wst.2020.267.

Abstract

Mesocellular foam (MCF) silica molecular sieve material was successfully synthesized using a hydrothermal method. X-ray diffraction, infrared spectroscopy, low nitrogen adsorption-desorption, scanning electron microscopy, and transmission electron microscopy (TEM) characterization techniques were used to characterize the material. Low temperature nitrogen adsorption-desorption method showed that pore size of the synthesized MCF was 12 nm. TEM study showed that the synthesized MCFs had honeycomb structure pores, which can be good for the absorbance of dye organic macromolecule substances. This work studied the adsorption of crystal violet by MCF and the results showed that when the adsorptive conditions were pH = 9.0, MCF:crystal violet = 150:1, and when the contact time was 10 min at room temperature of 25 ± 1 °C, the adsorption rate reached 99.71% and adsorption capacity was 6.646 mg/g. This study found that the adsorption is a Freundlich type, it is a multimolecular layer adsorption, and it belongs to the pseudo-second-order kinetic model. According to the ΔG obtained from adsorption thermodynamics, when the temperature is 25-40 °C, the adsorption enthalpy change ΔH = -25.65 kJ/mol, ΔG < 0, the adsorption is an exothermic reaction and can spontaneously occur. The adsorption entropy change ΔS = 5.54 J/(mol·K) and the entropy of system increased.

摘要

介孔泡沫(MCF)硅分子筛材料采用水热法成功合成。采用 X 射线衍射、红外光谱、低温氮吸附-脱附、扫描电子显微镜和透射电子显微镜(TEM)对材料进行了表征。低温氮吸附-脱附法表明,合成 MCF 的孔径为 12nm。TEM 研究表明,合成的 MCF 具有蜂窝状结构的孔,这有利于染料有机大分子物质的吸收。本工作研究了 MCF 对结晶紫的吸附,结果表明,当吸附条件为 pH=9.0、MCF:结晶紫=150:1、在 25±1°C 室温下接触 10min 时,吸附率达到 99.71%,吸附容量为 6.646mg/g。本研究发现,吸附是一种 Freundlich 型,是多分子层吸附,属于准二级动力学模型。根据吸附热力学得到的ΔG,当温度为 25-40°C 时,吸附焓变ΔH=-25.65kJ/mol,ΔG<0,吸附是一个放热反应,可以自发进行。吸附熵变ΔS=5.54J/(mol·K),系统的熵增加。

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