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Qingke Yuan,Youngchul Kim 한국습지학회 2018 한국습지학회지 Vol.20 No.2
본 연구에서는 포장도로에서 발생되는 강우유출수 처리를 위하여 파일럿 규모의 우드칩 충진 수직흐름형 습지를 이용하여 처리시험을 수행하였다. 각 습지는 전처리 목적의 침강지와 우드칩이 전체용적의 25%, 50%, 75%가 충진된 습지로 구성되어 있다. 입도분석 결과 강우유출수에 함유된 입자의 크기는 0.52-30um 크기가 주종을 이루고 있으며 24시간 침강 후에 20um 이상의 입자는 대부분 제거되었다. 또한 20um 보다 작은 크기의 입자는 건기시 수행되는 내부순환에 의해 여과 및 부착 등의 기작에 의해 상당부분 제거되었으나 전체적인 입자의 양은 우드칩의 연화과정에서 탈리되는 입자들에 의해 증가하는 것으로 밝혀졌다. 우드칩으로 부터 입자탈리는 초기 75일 동안에 걸쳐 발생하였으며 발생된 우드칩 입자의 농도(밀도)는 충진율이 증가할수록 증가하였다. 본 논문에서는 우드칩 탈리과정을 설명할 수 있는 1차 반응속도 모델을 제안하였으며 우드칩 탈리에 영향을 미치는 주요 수질인자 및 운전조건과의 관계를 분석한 결과 수질인자 중에는 수온, 용존산소, pH 등이 주요 영향인자로 파악되었으며 운전조건으로는 습지내부 운전수위 및 선행건기일수도 탈리속도를 결정하는 주요 변수로 분석되었다. In this study, three pilot-scale wetland systems were built for treating stormwater runoff from asphalt road. Each of the system consists of a settling tank and a vertical flow wetland packed with 25%, 50%, and 75% woodchip as treatment media. According to the analysis of the distributions of particle size, it was found that solids ranging in size 0.52–30 μ m were predominant in the stormwater runoff. After 24-hours settling, those coarser than 20 μm were significantly detained. Further retention, especially for the finer-sized fraction, occurred in the wetland through internal recirculation during the dry day periods. As a primary media of the wetland, woodchip showed a high filtration and attachment capacity for the particulates in pre-settled stormwater, whereas overall amount of solids in the wetland effluent increased due to the detachment of woody elements from the media. This was observed mainly during the initial 75 days of operation, and the size and detachment rate were found to be strongly related with the woodchip packing ratio. The mechanism involving woody particle detachment was modeled as a first-order form. In addition, water quality factors and operational parameters affecting the detachment were analyzed and discussed.
합성섬유 충진 여과수로를 이용한 건설사업장의 흙탕물 처리 및 배수구 보호에 관한 실험적 연구
원경과 ( Qingke Yuan ),청징 ( Jing Cheng ),박기수 ( Kisoo Park ),김영철 ( Youngchul Kim ) 한국물환경학회 2016 한국물환경학회지 Vol.32 No.6
In order to cope with the new and strict government regulations for turbid water discharge from construction sites, this study tested whether synthetic fiber filters can replace conventional best management practices. The filter efficiency was about 10 to 60% with a varying filter depth of 5 to 15cm, presuming extreme storm flow conditions to be in the range of 800 to 1500m/day of filtration rates. Fiber filter acts exactly like a granular filter, i.e. the separation efficiency is directly and inversely proportional to filter depth and rate, respectively. Based on the operational data, we suggested the Log-Log design relationship, which can be used to determine the filter depth and area. Compared to the widely used gravel filter which treats the turbid water at the construction site, about 20% higher efficiency was obtained under similar operating conditions. Cleaning the filter through a simple hand-washing method at the time of break-through, achieved about 90% soil recovery.
Performance of woodchip biofilters to treat piggery stormwater
Cheng, Jing,Park, Kisoo,Yuan, Qingke,Kim, Youngchul 한국방재학회 2015 한국방재학회 학술발표대회논문집 Vol.14 No.-
Biofilters are widely used for treating various types of wastewater and also recently in controlling non-point source (NPS) pollution including piggery stormwater. Gravels are common substrates employed in this type of biofilters. In this study, three parallel woodchip based biofilters with different thickness of woodchip layer were constructed and operated for about 300 days in 2013. Sampling was conducted every 2 days. The water temperature, pH, electric conductivity (EC), turbidity and DO were measured in situ. Other water quality parameters were analyzed in accordance with the Standard Methods for the Examination of Water and Wastewater (APHA et al. 1995). On one hand, with less woodchip media packed in the biofilter, better removal of TN, TP, NH4-N, TCOD was achieved. On the other hand, almost all NO3-N were removed regardless of the thickness of woodchip. In addition, with deeper thickness of woodchip media in the biofilter, more increased alkalinity and released organic matters were observed at the effluent. Alkalinity is important in biological nitrogen processes, especially in the reactions of ammonia transformation into nitrate (nitrification). Organic matters released from woodchip served as the carbon source to derive denitrification. It seems that only small amount of the woodchip were sufficient to achieve nice removal of nitrogen and phosphorus. Therefore, the amount of the woodchip could be a key in designing a woodchip biofilter.
원경과,김영철,Yuan, Qingke,Kim, Youngchul Korean Wetlands Society 2018 한국습지학회지 Vol.20 No.2
본 연구에서는 포장도로에서 발생되는 강우유출수 처리를 위하여 파일럿 규모의 우드칩 충진 수직흐름형 습지를 이용하여 처리시험을 수행하였다. 각 습지는 전처리 목적의 침강지와 우드칩이 전체용적의 25%, 50%, 75%가 충진된 습지로 구성되어 있다. 입도분석 결과 강우유출수에 함유된 입자의 크기는 0.52-30um 크기가 주종을 이루고 있으며 24시간 침강 후에 20um 이상의 입자는 대부분 제거되었다. 또한 20um 보다 작은 크기의 입자는 건기시 수행되는 내부순환에 의해 여과 및 부착 등의 기작에 의해 상당부분 제거되었으나 전체적인 입자의 양은 우드칩의 연화과정에서 탈리되는 입자들에 의해 증가하는 것으로 밝혀졌다. 우드칩으로 부터 입자탈리는 초기 75일 동안에 걸쳐 발생하였으며 발생된 우드칩 입자의 농도(밀도)는 충진율이 증가할수록 증가하였다. 본 논문에서는 우드칩 탈리과정을 설명할 수 있는 1차 반응속도 모델을 제안하였으며 우드칩 탈리에 영향을 미치는 주요 수질인자 및 운전조건과의 관계를 분석한 결과 수질인자 중에는 수온, 용존산소, pH 등이 주요 영향인자로 파악되었으며 운전조건으로는 습지내부 운전수위 및 선행건기일수도 탈리속도를 결정하는 주요 변수로 분석되었다. In this study, three pilot-scale wetland systems were built for treating stormwater runoff from asphalt road. Each of the system consists of a settling tank and a vertical flow wetland packed with 25%, 50%, and 75% woodchip as treatment media. According to the analysis of the distributions of particle size, it was found that solids ranging in size $0.52-30{\mu}m$ were predominant in the stormwater runoff. After 24-hours settling, those coarser than $20{\mu}m$ were significantly detained. Further retention, especially for the finer-sized fraction, occurred in the wetland through internal recirculation during the dry day periods. As a primary media of the wetland, woodchip showed a high filtration and attachment capacity for the particulates in pre-settled stormwater, whereas overall amount of solids in the wetland effluent increased due to the detachment of woody elements from the media. This was observed mainly during the initial 75 days of operation, and the size and detachment rate were found to be strongly related with the woodchip packing ratio. The mechanism involving woody particle detachment was modeled as a first-order form. In addition, water quality factors and operational parameters affecting the detachment were analyzed and discussed.