학술논문

인 제거 입상소재를 적용한 여과수로 설계인자의 실험적 결정
Experimental determination of design parameters for filtration trench using phosphorus removal granular materials
Document Type
Article
Source
상하수도학회지 / Journal of the Korean Society of Water and Wastewater. Feb 15, 2019 33(1):9
Subject
Phosphorus removal
Filtration trench
Dissolved and particulate phosphorus
Design parameter
Visual MINTEQ
인 제거
여과수로
용존성 및 입자성 인
설계인자
비쥬얼 민테크
Language
Korean
ISSN
1225-7672
Abstract
The algal blooms in stagnant streams and lakes have caused many problems. Excessive algae leads to disturbance of ecosystem and overload of water treatment processes. Therefore, phosphorus(P), source of algal blooms, should be controlled. In this study, a filtration trench has been developed to convert dissolved phosphorus into hydroxyapatite(HAP) so that it could be crystallized on the surface of ‘phosphorus removal granular material’; and residual particulate phosphorus could be removed by additional precipitation and filtration. The front and rear parts of filtration trench consisted of ‘phosphorus removal granular material contact bed’ and ‘limestone filtration bed’, respectively. As a result of the column test using phosphorus removal granular material and limestone serially, PO4-P was removed more than 90% when EBCT(empty bed contact time) of the contact bed was over 20 minutes; and T-P represented 60% of removal efficiency when total EBCT was over 1.5 hours. The results of column tests to figure out the sedimentation characteristics showed that more than 90% of particulate phosphorus could be removed within 24 hours. It was necessary to optimize the filtration part in order to increase removal efficiency of T-P additionally. Also, it was confirmed through the simulation of Visual MINTEQ that most of particulate phosphorus in the column tests is the form of HAP. Based on the results of the study, it could be suggested that the design parameters are over 0.5 hour of EBCT for phosphorus removal granular material contact bed and over 1.5 hours of EBCT for limestone filtration bed.

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