• Title/Summary/Keyword: Pal-Dang lake

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Optimal Management Scheme for Phosphorus Discharged from Public Sewage Treatment Plant Located in Upstream Basin of Paldang Lake (팔당호 상류수계에 위치한 공공 하수종말처리시설의 총인 배출 최적관리)

  • Woo, Younggug;Park, Eunyoung;Jeon, Yangkun;Jeong, Myungsuk;Rim, Jaymyung
    • Journal of Korean Society on Water Environment
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    • v.27 no.2
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    • pp.200-209
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    • 2011
  • The purpose of the study is to optimally manage sewage treatment plant with analysis of phosphorus contribution and improvement of water quality contributing rate in the effect of inflowing point of effluent and Pal-Dang lake after reducing T-P discharge from large scale public sewage treatment plant at upstream of Pal-Dang lake. Also, this study, for enforcement of T-P in effluent, plans optimal management of effluent T-P through examining propriety of environmental, technological, and economical aspect such as water quality standard of domestic and foreign T-P and related policy. In regarding optimal management of T-P discharged from public sewage treatment plant located in upstream of Pal-Dang lake, the study drew following conclusions. With the optimal management of public sewage treatment plant, it showed that a pollution level became higher in the order of Sumgang E in South-Han river, C in Dalcheon, B1 B2, A in North-Han river, and J in Kyungancheon, and it is required reduction of T-P first. The highest value in analysis of benefit-costs from sewage treatment plant in the selected research area was Kyungan B, and the others are with the order of Jojong A, Bokha A, Kyungan A, and Yanghwa A. With result of this study, all 14 areas are required more enforced phosphorus treatment. The study resulted that the most top priority areas were Hangang F, Sumgang B, and Gyungan A, top priority areas were Bokha A, Dalcheon B, and Cheongmi A, priority areas were Hangang E, Heukcheon A, Gyungan B, and Jojong A, and potential areas were Sumgang A, Yanghwa A, Dalcheon A, and Hangang D. It seems to be appropriate to apply 0.2 mg/L of T-P treatment for water supply source reservation, 0.5 mg/L for the other areas by locally, and 0.2~0.5 mg/L for biological nitrogen phosphorus treatment method and 0.5~1 mg/L for Conventional Activated Sludge by technologically. Also, it may be appropriate to apply 0.2 mg/L for the most top priority area(I), 0.3 mg/L for the top priority area(II), 0.4 mg/L for priority area(III), and 0.5 mg/L for potential area(IV) by the separation of priority area.

Measurement of Nitrogen and Sulfur Deposition to Lake Paldang (팔당호로의 질소와 황성분 침적 측정)

  • Ghim Young Sung;Jin Hyoun Cheol
    • Journal of Korean Society for Atmospheric Environment
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    • v.21 no.1
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    • pp.39-48
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    • 2005
  • Nitrogen and sulfur deposition was measured on Lake Pal dang from March 2002 to October 2003. Wet and dry depositions were separately measured using wet- and dry-only samplers, respectively. In order to measure the dry deposition to the water body, a dry deposition sampler composed of three pans filled with pure water, called the deposition water, was used. Since ammonium was generally in excess in ambient air, more than half of ammonium was present in the gaseous form. Ammonium concentration was also generally higher than the sum of major anion concentrations in the deposition water because gaseous species were much easily deposited than the species in fine particles. Nevertheless, the contribution of gaseous ammonia to the deposition of ammonium was not high as well as that of particulate ammonium while the contribution of gaseous nitric acid was much higher than that of particulate nitrate. Annual wet deposition fluxes of nitrogen and sulfur were five and six times higher than their dry deposition fluxes, respectively. Except for ammonium, the dry deposition flux estimated in the present work was a half of the previous results. This was mainly caused by much smaller dry deposition velocities over the water than over the ground.

Relationship between a Dense Bloom of Cyanobacterium Anabaena spp. and Rainfalls in the North Han River System of South Korea (북한강 수계의 남조 Anabaena 대발생과 강우의 관계)

  • Byun, Jeong-Hwan;Cho, In-Hwan;Hwang, Soon-Jin;Park, Myung-Hwan;Byeon, Myeong-Seop;Kim, Baik-Ho
    • Korean Journal of Ecology and Environment
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    • v.47 no.2
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    • pp.116-126
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    • 2014
  • To evaluate the relationship between dynamics of Cyanobacterial bloom and rainfalls, a monthly monitoring of water quality and phytoplankton from the three serial lakes (Lake Ui-am, Lake Chung-pyeong and Lake Pal-dang) in the North Han River System were examined 12 times from May 2012 to March 2013. A dense bloom of cyanobacterium Anabaena spp., was occurred over three lakes in the summer season of 2012. In Lake Ui-am, the Anabaena population appeared in June, showed a peak in July (43,850 cells $mL^{-1}$) and disappeared in November 2012. In Lake Chung-pyeong and Lake Pal-dang, Anabaena population commonly appeared in July, showed the peaks (31,648 cells $mL^{-1}$ and 7,136 cells $mL^{-1}$, respectively) in August, and entirely disappeared in September 2012. Over the three lakes, the phytoplankton community was commonly dominated by diatoms before Monsoon, cyanobacteria during Monsoon, and diatoms after Monsoon, respectively, indicating a Monsoon-dependent succession. A correlation analysis revealed that dynamics of Anabaena population was strongly related with rainfall (r=0.72, r=0.83, r=0.88, P<0.01 for three lakes), and partly with nutrients, inflow and outflow of lakes. Therefore, this study indicates that the outbreak and destruction of Anabaena bloom in North Han River System between 2012 and 2013 was impacted by rainfalls. However, a high density of cyanobacteria in Lake Ui-am remained after Monsoon, and thus, may paroduce bad-order and toxins from phytoplankton.

Relationship between a Dense Population of Cyanobacteria and Odorous Compounds in the North Han River System in 2014 and 2015 (북한강 수계에 출현한 남조류와 이취미의 상관관계)

  • Byun, Jeong-Hwan;Hwang, Soon-Jin;Kim, Baik-Ho;Park, Jin-Rak;Lee, Jae-Kwan;Lim, Byung-Jin
    • Korean Journal of Ecology and Environment
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    • v.48 no.4
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    • pp.263-271
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    • 2015
  • To evaluate the relationship between dynamics of cyanobacteria and odorous compounds, a monthly monitoring of water quality and phytoplankton were conducted at the three serial lakes (Lake Ui-am, Lake Cheong-pyeong and Lake Pal-dang) in the North Han River for 11 times from May 2014 to March 2015. In the three serial lakes, phytoplankton communities showed that seasonal changes in Bacillariophyceae-Cyanophyceae-Bacillariophyceae. Anabaena and Pseudanabaena were dominant species in August and September 2014. At the same time the odors (Geosmin, 2-MIB) were also detected with high concentration. Relationship between environmental factors and cyanobacterial abundance showed a significant correlation with Anabaena circinalis and geosmin (r=0.983, p<0.01). In the case of Pseudanabaena limnetica showed a significant correlation of total nitrogen (r=0.685, p<0.01) and NO3-N (r=0.723, p<0.01). In addition, similarly Pseudanabaena limnetica and 2-MIB (r=0.717, p<0.01) was high. The odorous compounds appeared in the North Han River water were considered to be a direct relationship with cyanobacteria.

Characteristics and Assessment of Water Quality by Vinyl House Cultivation in Pal-dang Lake Basin (비닐하우스 경작에 따른 팔당호 유역의 수질특성 및 오염도 평가)

  • Ahn, Tae-Woong;Choi, I-Song;Oh, Jong-Min
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.2009-2013
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    • 2009
  • 일반적으로 비닐하우스내의 농작물 경작은 자연환경과 차단된 조건에서 작물을 집약적으로 재배하므로 비료의 사용량이 많아 오염원으로 작용하고, 휴작기에 비닐을 제거 방치하므로 비닐 표면에 집적된 오염물은 강우 시 유출되어 이들로 인한 주변 하천수 및 지하수 오염을 가중시킨다. 따라서 팔당호 유역내 하천 부지에서 비닐하우스 등이 집단화 되어 있어 이로 인해 팔당호 유역내 수질에 영향을 미칠 것으로 판단된다. 또한 팔당호 유역내 하천부지에서 대단위 비닐농가가 집단적으로 조성되어 있는 것으로 조사되었으며, 팔당호 유역내 산발적으로 비닐하우스 농가가 형성되어 있는 것으로 조사되었다. 이들 비닐하우스로부터 비강우시에는 유출 오염수는 없는 것으로 파악되었으나, 강우 시 강우유출수가 표면 유출되는 과정에서 오염수가 팔당호로 직접 유입되어 팔당호 수질에 영향을 미치는 것으로 파악되었다. 팔당호 유역의 비닐하우스 경작에 의한 수질특성 조사 결과, SS 농도는 북한강 $372{\sim}446$ $mg/{\ell}$, 남한강 $488{\sim}547$ $mg/{\ell}$, 경안천 $345{\sim}415$ $mg/{\ell}$로 조사되었으며, BOD 농도는 북한강 $12.2{\sim}15.3$ $mg/{\ell}$, 남한강 $13.3{\sim}16.8$ $mg/{\ell}$, 경안천 $15.6{\sim}18.8$ $mg/{\ell}$으로 조사되었고, COD 농도는 북한강 $23.9{\sim}26.8$ $mg/{\ell}$, 남한강 $25.2{\sim}26.0$ $mg/{\ell}$, 경안천 $26.4{\sim}32.9$ $mg/{\ell}$로 조사되었다. 또한 T-N 농도는 북한강 $17.39{\sim}23.64$ $mg/{\ell}$, 남한강 $17.87{\sim}22.09$ $mg/{\ell}$, 경안천 $18.34{\sim}19.55$ $mg/{\ell}$으로 조사되었으며, T-P 농도는 북한강 $1.425{\sim}1.795$ $mg/{\ell}$, 남한강 $1.519{\sim}1.767$ $mg/{\ell}$, 경안천 $1.727{\sim}1.827$ $mg/{\ell}$로 조사되었다. 또한, 오염부하량으로부터 산정된 비닐하우스의 하천에 미치는 오염부하기여율은 SS의 경우 17.3%, BOD 4.5%, COD 5.2%, T-N 11.0%, T-P 7.4%로 조사되었다. 이는 비닐하우스 농가에서 유출되는 SS 및 T-N, T-P 오염부하량이 하천에 미치는 영향이 상대적으로 높다는 것을 의미하며, 이는 비닐하우스 주변이 주로 나대지로 되어 있고 비료 또는 영양물질이 많기 때문인 것으로 판단된다. 그러나 탄소성 유기물질을 나타내는 BOD 및 COD의 오염부하기여율은 주변 토양과 큰 차이를 보이지 않았다. 결국 비닐하우스의 재배는 토양 표면피복의 효과적인 관리 및 영양물질에 대한 관리가 이루어지지 않을 경우 팔당호에 영향을 미칠 수 있을 것으로 판단된다.

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