共 50 条
critical analysis of sono-hybrid advanced oxidation process of ferrioxalate system for degradation of recalcitrant pollutants
被引:34
|作者:
Chauhan, Rohit
[1
]
Dinesh, G. Kumaravel
[1
,2
]
Alawa, Bablu
[1
]
Chakma, Sankar
[1
]
机构:
[1] Indian Inst Sci Educ & Res Bhopal, Dept Chem Engn, Bhopal 462066, India
[2] Natl Univ Ireland Galway, Sch Chem, Univ Rd, Galway H91 TK33, Ireland
来源:
关键词:
Advanced oxidation process;
Ferrioxalate;
Fenton;
Photocatalysis;
Ultrasound;
Wastewater treatment;
SOLAR PHOTO-FENTON;
WASTE-WATER TREATMENT;
SONOPHOTOLYTIC DEGRADATION;
SONOPHOTOCATALYTIC DEGRADATION;
PHOTOCATALYTIC DEGRADATION;
MECHANISTIC ANALYSIS;
EXPERIMENTAL-DESIGN;
NEUTRAL PH;
REMOVAL;
DYE;
D O I:
10.1016/j.chemosphere.2021.130324
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
The emerging contaminants in wastewater discharged from numerous chemical process industries, pharmaceutical industries, textile, and wineries have attracted the attention of the scientific community due to their toxicity and persistence in the environment. The conventional techniques are incompetent to treat many of such recalcitrant toxic pollutants. To achieve high mineralization, advanced oxidation processes (AOPs) are found to be more efficient for the degradation of these organic pollutants without producing secondary pollutants with no/less amount of sludge. The primary oxidation agents for AOPs are in-situ generated free radicals, which are highly reactive and effective oxidants for degrading any type of organic molecules present in the wastewater. In the past decades, the combination of AOPs or simultaneous application of more than one AOP has been investigated extensively for wastewater treatment and these hybrid-AOPs have been reported to be beneficial for high-level mineralization of organic pollutants. This paper presented the characteristics, properties and influence of parameters in sono-photo-ferrioxalate system. The primary operating parameters in sono-photo-ferrioxalate system that affect the kinetics are defined as the solution pH, temperature, molar ratio of Fe3+/C2O42-, H2O2 concentration, source of light, ultrasound intensity, dissolved gases, and size of cavitation bubble. In this process, several oxidizing radicals are generated such as HO center dot, HO2 center dot, C2O4 center dot-, CO2 center dot- and O-2(center dot-) which are also responsible for degradation. In this review, we have mainly addressed the degradation of recalcitrant pollutants using the sono-photo-ferrioxalate system and a critical analysis of process parameters that influence mineralization efficiency. (C) 2021 Elsevier Ltd. All rights reserved.
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