Adsorption mechanism of recovering potassium from seawater by modified-clinoptilolite using microwave

Author:

Guo Hao12,Peng Chang-Sheng1,Kou Chang-Jiang3,Jiang Jian-Yun24,Zhang Fan4,Yuan He-Tao1

Affiliation:

1. Key Laboratory of Marine Environment and Ecology, Ministry of Education, College of Environmental Science and Engineering, Ocean University of China, Qingdao 266100, China E-mail: guohao8432@126.com

2. Beijing Institute of High-tech Environmental Science, Beijing 101111, China

3. CSD (Beijing) Environmental Protection Development Co., Ltd, Beijing 100192, China

4. Beijing Association of Sustainable Development, Beijing 100084, China

Abstract

Abstract The adsorption capacity and mechanism of K+ ion onto modified-clinoptilolite (MC) for recovering potassium from seawater has been investigated in this paper. The maximum value of K+ adsorption capacity is 36.3 mg/g (1.92 times of raw-clinoptilolite) while the modifying condition of microwave power is 450 W and heating time is 60 min. Specific surface area and pore size of absorbent has also been advanced with employing microwave. The kinetic data followed the pseudo-second-order model kinetic model, and the equilibrium data were well fitted to the Langmuir model, showing monolayer coverage of K+ ions on the surface pores of MC. Thermodynamic parameters, including Gibbs free energy (∆G), enthalpy changes (∆H), and entropy changes (∆S) were also calculated. The results demonstrated that K+ ion was absorbed onto MC spontaneously and exothermically in nature. Thus, MC could be employed as efficient and suitable adsorbent for recovering potassium from seawater.

Publisher

IWA Publishing

Subject

Filtration and Separation,Water Science and Technology

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