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亚甲基蓝在活化椰壳上的吸附行为:吸附动力学、热力学、吸附机理及吸附剂的再生

Adsorption Behavior of Methylene Blue Onto Activated Coconut Shells: Kinetic, Thermodynamic, Mechanism and Regeneration of the Adsorbent.

作者信息

Abbas Moussa, Trari Mohamed

机构信息

Laboratory of Applied Chemistry and Materials (LabCAM), University of M'hamed Bougara of Boumerdes, Avenue de l'Indépendance, Boumerdes, Algeria.

Laboratory of Storage and Valorization of Renewable Energies, Faculty of Chemistry (USTHB), Algiers, Algeria.

出版信息

Dose Response. 2024 Oct 8;22(4):15593258241290708. doi: 10.1177/15593258241290708. eCollection 2024 Oct-Dec.

Abstract

Adsorption techniques are widely used to remove some classes of pollutants from waters, especially those which are not easily biodegradable. The removal of Methylene blue (MB), as a pollutant, from waste waters of textile, paper, printing and other industries has been addressed by the researchers. The aim of this study is to eliminate MB by Activated Coconut Shells (ACS) produced at low cost by adsorption in batch mode. The ACS was characterized by the FTIR spectroscopy and point of zero charge (pHpzc: 5.06). Some examined factors were found to have significant impacts on the MB uptake of ACS like the initial dye concentration C (40-120 mg/L), solution pH (2-8), ACS dose (1-12 g/L), agitation speed (50-500 r/min), particles size (1.0-1.2 mm) and temperature (298-333 K). The best capacity was found at pH 6 with an adsorbent dose 8 g/L, an agitation speed 200 r/min and a contact time of 60 min. Modeling Kinetics and Isotherms shows that the pseudo-second-order kinetic model with (0.935 -0.998) and Langmuir adsorption isotherm model provide better fitness to the experimental data with the maximum adsorption capacity of 30.30 mg/g at 25°C. The separation factor R (0.933-0.541) in the concentration range studied (10-120 mg/L) shows a favorable adsorption. The isotherms at different temperatures have been used for the determination of the free energy ΔG (198-9.72 kJ/mol); enthalpy ΔH (82.082 kJ/mol) and entropy ΔS (245.689 J/K mol) to predict the nature of MB adsorption process. The positive values of (ΔG) and (ΔH) indicate a non-spontaneous and endothermic MB adsorption with a chemisorption. The adsorbent elaborated from Coconut Shells was found to efficient and suitable for the removal of MB dye from aqueous solutions, due to its availability, low cost preparation and good uptake capacity.

摘要

吸附技术被广泛用于去除水体中的某些类别的污染物,尤其是那些不易生物降解的污染物。研究人员已探讨了从纺织、造纸、印刷及其他行业的废水中去除作为污染物的亚甲基蓝(MB)的问题。本研究的目的是通过以间歇模式吸附法低成本制备的活性炭椰壳(ACS)来去除MB。通过傅里叶变换红外光谱(FTIR)和零电荷点(pHpzc:5.06)对ACS进行了表征。发现一些考察因素对ACS对MB的吸附有显著影响,如初始染料浓度C(40 - 120 mg/L)、溶液pH值(2 - 8)、ACS剂量(1 - 12 g/L)、搅拌速度(50 - 500 r/min)、颗粒尺寸(1.0 - 1.2 mm)和温度(298 - 333 K)。在pH值为6、吸附剂剂量为8 g/L、搅拌速度为200 r/min和接触时间为60 min时发现最佳吸附容量。动力学和等温线建模表明,相关系数(0.935 - 0.998)的伪二级动力学模型和朗缪尔吸附等温线模型能更好地拟合实验数据,在25°C时最大吸附容量为30.30 mg/g。在所研究的浓度范围(10 - 120 mg/L)内分离因子R(0.933 - 0.541)表明吸附效果良好。已利用不同温度下的等温线来测定自由能ΔG(198 - 9.72 kJ/mol)、焓ΔH(82.082 kJ/mol)和熵ΔS(245.689 J/K mol),以预测MB吸附过程的性质。(ΔG)和(ΔH)的正值表明MB吸附是非自发的且为吸热过程,属于化学吸附。发现由椰壳制备的吸附剂高效且适合从水溶液中去除MB染料,这归因于其可得性、低成本制备和良好的吸附容量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66b2/11462580/8a4e3aa001b9/10.1177_15593258241290708-img01.jpg

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