Degradation of antibiotic amoxicillin from pharmaceutical industry wastewater into a continuous flow reactor using supercritical water gasification

被引:39
作者
Dias, Isabela M. [1 ]
Mourao, Lucas C. [1 ]
Andrade, Laiane A. [2 ]
Souza, Guilherme B. M. [1 ]
Viana, Julio C. V. [1 ,3 ]
Oliveira, Sergio B. [4 ]
Alonso, Christian G. [1 ]
机构
[1] Univ Fed Goias UFG, Inst Quim, Ave Esperanca S-N Campus Samambaia, BR-74690900 Goiania, Goias, Brazil
[2] Univ Fed Mato Grosso UFMS, Ave Rosilene Lima Oliveira, 64, Jardim Univ, BR-79750000 Nova Andradina, Brazil
[3] Univ Fed Tocantins UFT, Chacara 69-72 Rua Badejos, Lote 7 S-N Campus Jardi, BR-77410530 Gurupi, Tocantins, Brazil
[4] Inst Fed Goias IFG, Rua 75 46,, BR-74055110 Goiania, Goias, Brazil
关键词
Industrial effluent; Pharmaceutical residues; Supercritical water; Wastewater treatment; Emergent pollutants; SEWAGE-SLUDGE; OXIDATION; MODEL;
D O I
10.1016/j.watres.2023.119826
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In recent years the concern with emerging pollutants in water has become more prominent, especially pharmaceutical residues, such as antibiotics due to the influence to increase antibacterial resistance. Further, conventional wastewater treatment methods have not demonstrated efficiency for the complete degradation of these compounds, or they have limitations to treat a large volume of waste. In this sense, this study aims to investigate the degradation of amoxicillin, one of the most prescribed antibiotics, in wastewater via supercritical water gasification (SCWG) using a continuous flow reactor. For this purpose, the process operating conditions of temperature, feed flow rate, and concentration of H2O2 was evaluated using Experimental Design and Response Surface Methodology techniques and optimized by Differential Evolution methodology. Total organic carbon (TOC) removal, chemical oxygen demand (COD) degradability, reaction time, amoxicillin degradation rate, toxicity of degradation by-products, and gaseous products were evaluated. The use of SCWG for treatment achieved 78.4% of the TOC removal for the industrial wastewater. In the gaseous products, hydrogen was the majority component. Furthermore, high-performance liquid chromatography analyses demonstrated that the antibiotic amoxicillin was degraded. For a mass flow rate of 15 mg/min of amoxicillin fed into the reaction system, 14.4 mg/min was degraded. Toxicity tests with microcrustacean Artemia salina showed slight toxicity to treated wastewater. Despite that, the outcomes reveal the SCWG has great potential to degrade amoxicillin and may be applied to treat several pharmaceutical pollutants. Aside from this, carbon-rich effluents may lead to a significant energy gaseous product, especially, hydrogen and syngas.
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页数:11
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