Photocatalytic degradation of methyl orange using pullulan-mediated porous zinc oxide microflowers

被引:0
作者
Eleen Dayana Mohamed Isa
Nurfatehah Wahyuny Che Jusoh
Roshasnorlyza Hazan
Kamyar Shameli
机构
[1] Universiti Teknologi Malaysia,Department of Chemical and Environmental Engineering, Malaysia
[2] Universiti Teknologi Malaysia,Japan International Institute of Technology
[3] Malaysian Nuclear Agency,Advanced Materials Research Group, Center of Hydrogen Energy
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Green synthesis; Zinc oxide; Microflowers; Porous; Photocatalytic activity;
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中图分类号
学科分类号
摘要
One of mankind’s biggest concerns is water pollution. Textile industry emerged as one of the main contributors with dyes as the main pollutant. Presence of dyes in water is very dangerous due to their toxicity; thus, it is important to remove them from water. In these recent years, heterogeneous advance oxidation process surfaced as a possible dyes’ removal technique. This process utilizes semiconductor as photocatalyst to degrade the dyes in presence of light and zinc oxide (ZnO) appears to be a promising photocatalyst for this process. In this study, pullulan, a biopolymer, was used to produce porous ZnO microflowers (ZnO-MFs) through green synthesis via precipitation method. The effects of pullulan’s amount on the properties of ZnO-MFs were investigated. The ZnO-MF particle size decreased with the increased of pullulan amount. Interestingly, formation of pores occurred in presence of pullulan. The synthesized ZnO-MFs have the surface area ranging from 6.22 to 25.65 m2 g−1 and pore volume up to 0.1123 cm3 g−1. The ZnO-MF with the highest surface area was chosen for photocatalytic degradation of methyl orange (MO). The highest degradation occurred in 300 min with 150 mg catalyst dosage, 10 ppm initial dye concentration, and pH 7 experimental conditions. However, through comparison of photodegradation of MO with all synthesized ZnO-MFs, 25PZ exhibited the highest degradation rate. This shows that photocatalytic activity is not dependent on surface area alone. Based on these results, ZnO-MF has the potential to be applied in wastewater treatment. However, further improvement is needed to increase its photocatalytic activity.
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页码:5774 / 5785
页数:11
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