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  4. A preliminary investigation of wastewater treatment efficiency and economic cost of subsurface flow Oyster-Shell-Bedded constructed wetland systems
 
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A preliminary investigation of wastewater treatment efficiency and economic cost of subsurface flow Oyster-Shell-Bedded constructed wetland systems

Journal
Water
Journal Volume
5
Journal Issue
3
Pages
893
Date Issued
2013-01-01
Author(s)
SAU-WAI YAM  
Hsu, Chia Chuan
TSANG-JUNG CHANG  
Chang, Wen-Lian
DOI
https://api.elsevier.com/content/abstract/scopus_id/84885344720
10.3390/w5030893
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/412249
URL
https://api.elsevier.com/content/abstract/scopus_id/84885344720
Abstract
We conducted a preliminary investigation of wastewater treatment efficiency and economic cost of the oyster-shell-bedded constructed wetlands (CWs) compared to the conventional gravel-bedded CW based on field monitoring data of water quality and numerical modeling. Four study subsurface (SSF) CWs were built to receive wastewater from Taipei, Taiwan. Among these sites, two are vertical wetlands, filled with bagged- (VA) and scattered- (VB) oyster shells, and the other two horizontal wetlands were filled with scattered-oyster shells (HA) and gravels (HB). The BOD, NO3-, DO and SS treatment efficiency of VA and VB were higher than HA and HB. However, VA was determined as the best option of CW design due to its highest cost-effectiveness in term of BOD removal (only 6.56 US$/kg) as compared to VB, HA and HB (10.88-25.01 US$/kg). The results confirmed that oyster shells were an effective adsorption medium in CWs. Hydraulic design and arrangement of oyster shells could be important in determining their treatment efficiency and cost-effectiveness. A dynamic model was developed to simulate substance transmissions in different treatment processes in the CWS using AQUASIM 2.1 based on the water quality data. Feasible ranges of biomedical parameters involved were determined for characterizing the importance of different biochemical treatment processes in SSF CWs. Future work will involve extending the experimental period to confirm the treatment efficiency of the oyster-shell-bedded CW systems in long-term operation and provide more field data for the simulated model instead of the literature values. © 2013 by the authors.
Subjects
AQUASIM | Ecological adsorbent medium | Natural wastewater treatment systems | subsurface flow (SSF) constructed wetland | Water quality simulation
SDGs

[SDGs]SDG15

Publisher
MDPI AG
Type
journal article

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