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Dosing free nitrous acid for sulfide control in sewers: Results of field trials in Australia.

Authors :
Jiang, Guangming
Keating, Anthony
Corrie, Shaun
O'halloran, Kelly
Nguyen, Lam
Yuan, Zhiguo
Source :
Water Research. Sep2013, Vol. 47 Issue 13, p4331-4339. 9p.
Publication Year :
2013

Abstract

Abstract: Intermittent dosing of free nitrous acid (FNA), with or without the simultaneous dosing of hydrogen peroxide, is a new strategy developed recently for the control of sulfide production in sewers. Six-month field trials have been carried out in a rising main sewer in Australia (150 mm in diameter and 1080 m in length) to evaluate the performance of the strategy that was previously demonstrated in laboratory studies. In each trial, FNA was dosed at a pumping station for a period of 8 or 24 h, some with simultaneous hydrogen peroxide dosing. The sulfide control effectiveness was monitored by measuring, on-line, the dissolved sulfide concentration at a downstream location of the pipeline (828 m from the pumping station) and the gaseous H2S concentration at the discharge manhole. Effective sulfide control was achieved in all nine consecutive trials, with sulfide production reduced by more than 80% in 10 days following each dose. Later trials achieved better control efficiency than the first few trials possibly due to the disrupting effects of FNA on sewer biofilms. This suggests that an initial strong dose (more chemical consumption) followed by maintenance dosing (less chemical consumption) could be a very cost-effective way to achieve consistent control efficiency. It was also found that heavy rainfall slowed the recovery of sulfide production after dosing, likely due to the dilution effects and reduced retention time. Overall, intermittent dose of FNA or FNA in combination with H2O2 was successfully demonstrated to be a cost-effective method for sulfide control in rising main sewers. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
00431354
Volume :
47
Issue :
13
Database :
Academic Search Index
Journal :
Water Research
Publication Type :
Academic Journal
Accession number :
89488494
Full Text :
https://doi.org/10.1016/j.watres.2013.05.024