4.7 Article

A novel porous hollow carboxyl-polysulfone microsphere for selective removal of cationic dyes

期刊

CHEMOSPHERE
卷 289, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.133205

关键词

Carboxyl-polysulfone; Click reaction; Selective adsorption; Porous hollow microsphere; Reusable absorbent

资金

  1. Research Startup program of Donghua University [285-07-005702]
  2. Key-Area Research and Development Program of Guangdong Province [2020B010182002]

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Porous hollow carboxyl-polysulfone (PH-CPSF) microspheres were synthesized through non-solvent-induced phase separation (NIPS) method, showing high adsorption capacity for cationic dyes. The microspheres exhibit a hollow core structure, high surface area, and strong adsorption ability due to inter-molecular interactions.
Herein, we obtained porous hollow carboxyl-polysulfone (PH-CPSF) microspheres through non-solvent-induced phase separation (NIPS) method and simple modification, used as highly efficient adsorbents for removing cationic dyes from sewage. The resulting PH-CPSF microspheres possess a hollow core and sponge-like shell structure, with high surface area, durable chemical inertness and structural stability. The as-synthesized PH-CPSF microspheres deliver a desirable adsorption effect after deprotonation treatment, with an adsorption capacity reaching up to 154.5 mg g(-1) at 25 degrees C (pH = 7) of methylene blue (MB). The inter-molecular interactions between MB and the surface of the PH-CPSF, including pi-pi interaction, hydrogen bonding, strong charge attraction and weak charge attraction endow the adsorption ability of the PH-CPSF. The pseudo-second-order kinetic model pronounces in the adsorption behavior, and the adsorption equilibrium data is fitted to the Langmuir model. Moreover, PH-CPSF microspheres can also be used as adsorption fillers for large-scale water purification, and a removal rate of 94.0% for MB can be achieved under a flow rate of 8000 L m(-3) h(-1). The reusability of 95.3% removal effect for PH-CPSF microspheres after 20 consecutive cycles can be attained by a simple regeneration treatment. The adsorption efficiency of the PH-CPSF microspheres was evaluated by variety of cationic and anionic dyes, with high adsorption capacity toward cationic dyes (100%) and less than 10% toward anionic dyes. These results manifest that PH-CPSF microspheres are a potential adsorbent with long-term purification capabilities, which are expected to be used in small and large-scale sewage treatment.

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