4.7 Article

Green and efficient synthesis of mesoporous sodalite assisted by persulfate or peroxymonosulfate

Journal

MICROPOROUS AND MESOPOROUS MATERIALS
Volume 346, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.micromeso.2022.112321

Keywords

Mesoporous sodalite; Zeolite; Lithium silica fume; Reactive oxygen species; Copper ion

Funding

  1. Talent Intro- duction Program of Xihua University
  2. [Z202117]

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In this study, mesoporous sodalite zeolite was synthesized rapidly using the reactive oxygen species method under UV irradiation without a template. The zeolite exhibited highly crystalline structure and abundant mesopores, and showed superior adsorption capacity and reusability in copper ion adsorption experiments.
Mesoporous sodalite (SOD) zeolite was fabricated from industrial waste lithium silica fume (LSF) through the reactive oxygen species (ROS) method under ultraviolet (UV) irradiation without the template. Persulfate (PS) and peroxymonosulfate (PMS) under UV irradiation would further induce ROS generation and result in faster crystallization to obtain highly crystalline and abundant mesopores (mesopore volume, Vmes > 0.34 cm(3)/g) SOD within 2 h. The ROS produced in the synthesis system were detected by electron spin resonance (EPR), and the results revealed that center dot OH, O-2 center dot, O-1(2), and SO4 center dot- may be related to the accelerating process. Zeolite produced superior adsorptive capacity (112.4 mg/g) and reusability in copper ion (Cu(II)) adsorptive experiments. The abundance of mesoporous in zeolite facilitates the removal of Cu(II) by ion exchange and hydroxyl complexation. This work opens up a new route for green and fast synthesis of zeolite and highly efficient Cu(II) removal adsorbent.

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