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Application of a combined three-stage system for reclamation of tunnel construction wastewater

Authors
Kim, Jong-OhCho, Kyung HwaPark, Tae-WonLim, Seong-RinKang, SeokkooKim, Young Mo
Issue Date
Sep-2015
Publisher
Selper Ltd.
Keywords
coagulation-filtration; microfiltration membrane; reclamation; reverse osmosis membrane; tunnel construction wastewater
Citation
Environmental Technology (United Kingdom), v.36, no.18, pp 2357 - 2363
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Environmental Technology (United Kingdom)
Volume
36
Number
18
Start Page
2357
End Page
2363
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/24879
DOI
10.1080/09593330.2015.1028469
ISSN
0959-3330
1479-487X
Abstract
A combined three-stage system, (1) coagulation (2) zeocarbon filtration and (3) membrane filtration, a combination of microfiltration (MF) and reverse osmosis (RO), was investigated for reclamation of tunnel construction wastewater having a salinity of 10.8–12.9‰ and a concentration of suspended solids (SS) in the range of 264–1084 mg/L. The initial stages – coagulation, zeocarbon filtration and MF – served as a precursor to RO membrane filtration to successfully reduce water contaminants to less than 0.2 nephelometric turbidity units (NTU) of turbidity, thereby minimizing the potential for fouling. The RO system subsequently removed over 99% of remaining pollutants including ionic substances, resulting in less than 0.02 NTU turbidity, less than 0.04 mg/L total nitrogen (TN) and less than 0.01 mg/L total phosphorus (TP). Also, addition of an RO system markedly reduced high salt concentrations (high chloride (Cl−) concentrations) in the wastewater, exceeding 99% salt elimination. Thus, reclaimed water from our combined system met and exceeded currently regulatory quality standards for wastewater reuse (turbidity ≤ 2.0 NTU; TN ≤ 10 mg/L; TP ≤ 0.5 mg/L; Cl− ≤ 250 mg/L)
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