TY - JOUR
T1 - Advanced organic and biological analysis of dual media filtration used as a pretreatment in a full-scale seawater desalination plant
AU - Jeong, Sanghyun
AU - Vollprecht, Robert
AU - Cho, Kyungjin
AU - Leiknes, TorOve
AU - Vigneswaran, Saravanamuthu
AU - Bae, Hyokwan
AU - Lee, Seockheon
N1 - KAUST Repository Item: Exported on 2020-10-01
Acknowledgements: This study was supported by the National Centre of Excellence in Desalination Australia (NCEDA), which was funded by the Australian Government through Water for the Future initiative (Project code: 09148). The authors also acknowledge Mr. Damien Marwick (Degremont) and Ms. Ushi Jismi (Water Corporation) for their contribution to the sampling. PSDP is owned by Water Corporation while the operation and maintenance is conducted in alliances with Degremont and Suez Environment.
PY - 2016/2/19
Y1 - 2016/2/19
N2 - Dual media filter (DMF) is being used as a primary pretreatment to remove particulate foulants at seawater desalination plants. However, many plants experience organic and biological fouling. The first part of this paper focuses on the monitoring of organic and biological foulants using advanced analytical techniques to optimize functioning of DMF at Perth Seawater Desalination Plant (PSDP) in Western Australia. In addition, microbial community analysis in DMF filtered seawater, and on DMF media (DMF-M) and cartridge filter (CF) was conducted using terminal restriction fragment length polymorphism (T-RFLP) and 454-pyrosequencing. In the full-scale DMF system, the bacterial community structure was clustered along with the filtration time and sampling positions. For the DMF effluent samples, the bacterial community structure significantly shifted after 4 h of filtration time, which corresponded with the permeability reduction trend. The dominant bacterial communities in the DMF effluent were OTU 13 (Phaeobacter) and OTU 19 (Oceaniserpentilla). The different biofilm-forming bacteria communities were found in the biofilm samples on DMF-M and CF. In the second part of the study, semi-pilot scale DMF columns were operated on-site under same operating conditions used in PSDP. It demonstrated the advantage of operating DMF at the biofiltration mode for improving the reduction of biofoulants. © 2016 Elsevier B.V.
AB - Dual media filter (DMF) is being used as a primary pretreatment to remove particulate foulants at seawater desalination plants. However, many plants experience organic and biological fouling. The first part of this paper focuses on the monitoring of organic and biological foulants using advanced analytical techniques to optimize functioning of DMF at Perth Seawater Desalination Plant (PSDP) in Western Australia. In addition, microbial community analysis in DMF filtered seawater, and on DMF media (DMF-M) and cartridge filter (CF) was conducted using terminal restriction fragment length polymorphism (T-RFLP) and 454-pyrosequencing. In the full-scale DMF system, the bacterial community structure was clustered along with the filtration time and sampling positions. For the DMF effluent samples, the bacterial community structure significantly shifted after 4 h of filtration time, which corresponded with the permeability reduction trend. The dominant bacterial communities in the DMF effluent were OTU 13 (Phaeobacter) and OTU 19 (Oceaniserpentilla). The different biofilm-forming bacteria communities were found in the biofilm samples on DMF-M and CF. In the second part of the study, semi-pilot scale DMF columns were operated on-site under same operating conditions used in PSDP. It demonstrated the advantage of operating DMF at the biofiltration mode for improving the reduction of biofoulants. © 2016 Elsevier B.V.
UR - http://hdl.handle.net/10754/621792
UR - https://linkinghub.elsevier.com/retrieve/pii/S0011916416300558
UR - http://www.scopus.com/inward/record.url?scp=84958234992&partnerID=8YFLogxK
U2 - 10.1016/j.desal.2016.02.017
DO - 10.1016/j.desal.2016.02.017
M3 - Article
SN - 0011-9164
VL - 385
SP - 83
EP - 92
JO - Desalination
JF - Desalination
ER -