Photodegradation of Methylene Blue Using Carbon-Doped ZnSn(OH)6 Composite Coated on Membrane

Author:

Fenelon Ernso1ORCID,Ni’am Achmad Chusnun2,Thi Nguyen Truc-Mai3,Lin Ying-Fu4,Wang Ya-Fen45,You Sheng-Jie45ORCID

Affiliation:

1. Centre de Recherche Interdisciplinaire Pour la Vulgarisation Agricole et le Développement Local (CREIVADEL), Université Notre Dame d’Haïti, Faculté d’Agronomie, BP HT 8110, Redon, Torbeck, Haiti

2. Department of Environmental Engineering, Institut Teknologi Adhi Tama Surabaya, Arief Rachman Hakim Road No. 100, Surabaya 60117, Indonesia

3. Center for Environmental Toxin and Emerging-Contaminant Research, Cheng Shiu University, Kaohsiung 83347, Taiwan

4. Department of Environmental Engineering, Chung Yuan Christian University, Taoyuan 320, Taiwan

5. Center for Environmental Risk Management, Chung Yuan Christian University, 200 Chung Pei Road, Chungli 320, Taiwan

Abstract

The dye contamination of water is a global concern in the environment. In this study, the photocatalytic technology and membrane module were combined to improve the surface distribution of the active species of the catalyst for better degradation of the methylene blue (MB) dye under visible light. ZnSn(OH)6 was chosen due to carbon’s complex metal oxide doped to facilitate the application under visible light. The numerous characterizations were analyzed in the composites to verify the consistency of the optimum degradation of MB over the catalyst coated on the membrane. During the preparation of the ZnSn(OH)6 composite, the results confirmed that different reaction times and amounts of sodium hydroxide significantly affected the pollutant’s degradation. The carbon-doped composite denoted the largest surface area and increased the catalyst’s reactive sites on the membrane. The photocatalytic activity test showed that 1% carbon doped on ZnSn(OH)6 prepared at 160°C by hydrothermal method coated on the membrane had the optimal degradation of 89.74% of MB. This study contributes to the ongoing study and development of photocatalytic membranes for the photodegradation of wastewater treatment.

Funder

Chung Yuan Christian University

Publisher

Hindawi Limited

Subject

General Chemistry

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