Use of ozone-biofiltration for bulk organic removal and disinfection byproduct mitigation in potable reuse applications

被引:38
作者
Arnold, Mayara [1 ,2 ]
Batista, Jacimaria [1 ]
Dickenson, Eric [3 ]
Gerrity, Daniel [1 ]
机构
[1] Univ Nevada, Dept Civil & Environm Engn & Construct, Box 454015,4505 S Maryland Pkwy, Las Vegas, NV 89154 USA
[2] Trussell Technol Inc, 232 North Lake Ave,Suite 300, Pasadena, CA 91101 USA
[3] Southern Nevada Water Author, Appl Res & Dev Ctr, POB 99954, Las Vegas, NV 89193 USA
关键词
Ozone; Biofiltration; Potable reuse; Total organic carbon (TOC); Trihalomethane (THM); Haloacetic acid (HAA); BIOLOGICAL ACTIVATED CARBON; WASTE-WATER TREATMENT; ULTRAVIOLET ABSORBENCY; TREATMENT TRAINS; DRINKING-WATER; DBP PRECURSORS; OZONATION; EFFLUENT; OXIDATION; TRIHALOMETHANE;
D O I
10.1016/j.chemosphere.2018.03.085
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The purpose of this research was to investigate the impacts of ozone dose and empty bed contact time (EBCT) in ozone-biofiltration systems on disinfection byproduct (DBP) formation potential. The data were used to evaluate the possibility of using DBP formation potential as an alternative guideline for total organic carbon (TOC) removal in potable reuse applications. A pilot-scale ozone-biofiltration system was operated with O-3/TOC ratios ranging from 0.1 to 2.25 and EBCTs ranging from 2 to 20 min. The biofiltration columns contained anthracite or biological activated carbon (BAC). Bench-scale chlorination was performed using the uniform formation conditions (UFC) approach, and quenched samples were analyzed for total trihalomethanes (TTHMs) and regulated haloacetic acids (HAA5s). The data demonstrated that ozone-biofiltration achieved TOC removals ranging from similar to 10 to 30%, depending on operational conditions, but biofiltration without ozone generally achieved <10% TOC removal. UFC testing demonstrated that ozone alone was efficient in transforming bulk organic matter and reducing DBP formation potential by 10-30%. The synergistic combination of ozone and biofiltration achieved average overall reductions in TTEM and HAA5 formation potential of 26% and 51%, respectively. Finally, a maximum TOC concentration of 2.0 mg/L was identified as a recommended treatment target for reliable compliance with TTHM and HAA5 regulations for potable reuse systems in the United States. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:228 / 237
页数:10
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