• 제목/요약/키워드: Natural Wetland soil

검색결과 69건 처리시간 0.037초

인공습지 조성 후 습지미생물활성도 변화에 관한 연구 (Change of Wetland Microbial Activities after Creation of Constructed Wetlands)

  • 이자연;김보라;박소영;성기준
    • 한국환경과학회지
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    • 제19권1호
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    • pp.17-26
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    • 2010
  • To understand the initial changes in the microbial activities of wetland soil after construction, dehydrogenase activity (DHA) and denitrification potential (DNP) of soil from 1 natural wetland and 2 newly constructed wetlands were monitored. Soil samples were collected from the Daepyung marsh as a natural wetland, a treatment wetland in the West Nakdong River, and an experimental wetland in the Pukyong National University, Busan. The results showed that the DHA of the natural wetland soil was 6.1 times higher than that of the experimental wetland and similar to that of the treatment wetland 6 months after wetland construction (fall). Few differences were observed in the DNP between the soil samples from the natural wetland and 2 constructed wetlands four months after wetland construction (summer). However, 6 months after the construction (fall), the DNP of the soil samples from the natural wetland was 12.9 times and 1.8 times higher than that of the experimental wetland and the treatment wetland, respectively. These results suggested that the presence of organic matter as a carbon source in the wetland soil affects the DHA of wetland soil. Seasonal variation of wetland environment, acclimation time under anaerobic or anoxic wetland conditions, and the presence of carbon source also affect the DNP of the wetland soil. The results imply that the newly constructed wetland requires some period of time for having the better contaminant removal performance through biogeochemical processes. Therefore, those microbial activities and related indicators could be considered for wetland management such as operation and performance monitoring of wetlands.

비정수식물의 인공습지도입을 위한 자연습지토양 발아실험 (Germination Experiments using Natural Wetland Soil for Introducing Non-emergent Plants into a Constructed Wetland)

  • 이용민;강대식;성기준
    • 한국습지학회지
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    • 제11권1호
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    • pp.39-48
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    • 2009
  • 습지식물은 습지의 일차생산자로서 습지 내의 다른 생물뿐만 아니라 습지토양, 수문 등과 같은 무생물 환경요인과 다양한 상호작용을 함으로써 습지의 기능에 큰 영향을 미친다. 따라서 습지식생은 습지 설계에서 중요하게 고려해야 하는 인자이다. 본 연구에서는 인공습지를 조성할 때 식물도입방법으로 다양한 습지식물의 씨앗을 함유한 자연습지토양의 활용성을 알아보기 위하여 습지 mesocosm을 제작한 다음 수심과 자연습지토양 함유량에 따른 수생식물의 출현종과 성장 정도를 조사하였다. 자연습지토양의 발아실험에서 7종의 습지식물이 출현하였는데, 이 가운데 5종은 토양 채취지점인 서낙동강의 식물종과 일치하였으나 2종은 발아실험에서 새롭게 출현하였다. 수심에 따른 출현 식물 개체수는 침수 조건에서 15개체가 출현하여 2개체만 출현한 습윤조건에 비해 훨씬 더 많은 개체가 출현하였다. 자연습지토양의 혼합비율에 따른 출현 개체수는 자연습지토양이 100%일 때 개체수가 가장 많았으며, 자연습지토양의 비율이 50%, 75%, 25%의 순으로 나타났다. 모든 습지실험조에서 출현한 검정말과 붕어마름의 성장 정도를 살펴보면, 검정말은 자연습지토양의 비율이 50%인 조건에서 가장 활발히 성장하였으며 붕어마름은 100% 자연습지토양에서 가장 좋은 성장을 보였다. 자연습지토양 함유량에 따른 식물성장실험결과 자연습지토양의 혼합비율이 50%인 조건에서도 식물의 성장이 원활하여 자연습지토양과 인공습지 조성지역토양을 1:1로 혼합하여도 인공습지에서 식물의 안정된 활착에 문제가 없을 것으로 판단된다.

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기준습지 토양특성을 활용한 인공습지의 토양발달 평가 (Assessment of the Wetland Soil Development in Constructed Wetlands using the Soil Properties of a Reference Wetland)

  • 이자연;강대석;성기준
    • 한국습지학회지
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    • 제12권1호
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    • pp.1-14
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    • 2010
  • 인공습지 토양의 변화 특성을 인공습지의 성공 여부와 습지의 기능 평가에 활용할 수 있을 지 알아보고자 인공습지 조성 후 토양의 변화를 기준습지 토양의 변화특성과 비교하였다. 본 연구에서는 기준습지로 자연습지 1곳과 오염물질 유입 특성이 다른 인공습지 2곳(처리습지, 실험습지)을 선정하여 주요 토양 특성의 변화를 조사하였다. 습지토양의 침수조건에 따른 물리화학적 특성변화 및 유기물 축적정도를 비교하기 위하여 토성, 함수율, pH, CEC 및 유기물함량을 측정하였으며, 습지의 영양물질의 축적 정도를 비교하기 위하여 총질소와 유효인산의 농도변화를 분석하였다. 토성의 경우 전체적으로 자연습지에서는 점토의 함량이, 인공습지에서는 모래의 함량이 많은 것으로 나타나 자연습지와 인공습지의 토성은 큰 차이를 보였다. 그러나 시간이 지나면서 인공습지 토양의 실트와 점토 함량이 점차 증가하였다. 함수율과 유기물함량의 경우 여름철과 가을철 모두 자연습지가 인공습지보다 높았다. 토양의 pH는 자연습지가 인공습지에 비하여 낮았으며, 인공습지의 경우에도 습지 조성 후 중성으로 변화하였다가 다시 pH가 낮아지는 것을 관찰할 수 있었다. CEC, 총질소, 유효인산의 농도는 외부의 유기물질이나 오염물질 유입과 관련 있는 것으로 판단되나, 오랜 기간 동안 영양물질을 보유한 자연습지에서 인공습지보다 모든 항목이 높게 나타났다. 실험습지의 경우 조성과정에서 오염도가 높은 표토와 낮은 심토가 섞여 유기물과 영양물질의 농도가 감소하였는데, 습지 조성과정에서 나타나는 토양 특성변화도 습지의 생지화학적 기능이나 습지 토양 발달에 영향을 미칠 수 있을 것이라 판단된다. 이 연구는 인공습지 토양의 물리적 특성변화와 유기물 및 영양물질 보유량 변화 등과 같은 습지토양의 발달특성을 활용하여 인공습지 조성의 성공 여부나 인공습지의 기능 평가에 활용할 수 있음을 보여주었으며, 이를 위하여 자연습지와 같은 기준습지의 역할이 중요함을 제시하였다.

인공습지의 수질개선 효과 분석모델 개발 (Development of Pollutant Removal Model in the Artificial Wetland)

  • 최지용
    • 한국습지학회지
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    • 제4권1호
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    • pp.51-61
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    • 2002
  • The wetland is a biologically integrated system consisting of water, soil, bacteria, plants, and animals. The wetland helps sustain the ecosystem, control the micro-climate and flood, maintain the ground water level, and provide fishing grounds. From the environmental standpoint, the wetland plays a vital role in reducing water pollution by filtering out sand and other polluted matters, producing oxygen, absorbing chemicals and nutrients. For these reasons, interest in restoring the wetlands has been steadily increasing. Artificial wetland, which is also referred to as created wetland or constructed wetland, is an alternative to natural wetland. Like natural wetland, artificial wetland is environmentally friendly and can effectively lower pollutant levels. The Korea government is actively reviewing the construction of artificial wetlands in mining and water supply areas to decrease nonpoint pollutant sources. This paper attempts to develop a pollutant removal model for the water quality improvement function of artificial wetlands. Artificial wetland can improve the quality of the water; however, depending on the type of water inflow, vegetation and hydrology, its effect can be different.

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동해안 석호에서 군개 간척습지의 식생 구조 (Vegetation Structure of the Kungae Reclaimed Wetland in a Coastal Lagoon of East Sea, Korea)

  • 김자애;조강현;이효혜미
    • The Korean Journal of Ecology
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    • 제24권1호
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    • pp.27-34
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    • 2001
  • 30년 전 석호를 간척한 후 농경을 포기하여 자연 천이가 진행되고 있는 강원도 양양군 동해안의 군개 습지에서 물 및 토양환경과 관련하여 습지 식생을 조사하였다. 이 습지에서는 해수의 유입이 차단되어 거의 담수화되었으며, 수심과 토양 유기물 함량의 공간적 변이가 다른 환경요인에 비하여 상대적으로 컸다. 다변량 분석인 detrended canonical correspondence analysis를 실시한 결과 습지의, 식물군집 구조는 주로 수심 혹은 지형의 높이와 토양 유기물함량에 의하여 결정되었다. 군개 습지에서는 다양한 정수식물 식생이 발달하였다 갈대, 산조풀, 삿갓사초, 부처꽃과 같은 종은 전체 습지에 넓게 분포하였고, 애기부들과 큰고랭이와 같은 수생식물은 수심이 깊고 낮은 지형에, 미국가막사리, 며느리배꼽과 같은 황무지 식물은 토양 유기물함량이 많은 육상에 가까운 곳에, 통보리사초, 백령풀, 곰솔, 눈양지꽃과 같은 사구식생은 높은 지형에서 발달하였다. 교란된 군개 습지를 보존, 복원하기 위해서는 자연 석호의 식생 분석으로부터 복원 원형을 도출하고 자연 습지 수위로 복원하고 바다와 수문을 연결하는 것이 중요하다고 판단되었다.

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Fungal Clusters and Their Uniqueness in Geographically Segregated Wetlands: A Step Forward to Marsh Conservation for a Wealth of Future Fungal Resources

  • Park, Jong Myong;Hong, Ji Won;Lee, Woong;Lee, Byoung-Hee;You, Young-Hyun
    • Mycobiology
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    • 제48권5호
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    • pp.351-363
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    • 2020
  • Here, we investigated fungal microbiota in the understory root layer of representative well-conserved geographically segregated natural wetlands in the Korean Peninsula. We obtained 574,143 quality fungal sequences in total from soil samples in three wetlands, which were classified into 563 operational taxonomic units (OTU), 5 phyla, 84 genera. Soil texture, total nitrogen, organic carbon, pH, and electrical conductivity of soil were variable between geographical sites. We found significant differences in fungal phyla distribution and ratio, as well as genera variation and richness between the wetlands. Diversity was greater in the Jangdo islands wetland than in the other sites (Chao richness/Shannon/Simpson's for wetland of the Jangdo islands: 283/6.45/0.97 > wetland of the Mt. Gariwang primeval forest: 169/1.17/0.22 > wetland of the Hanbando geology: 145/4.85/0.91), and this variance corresponded to the confirmed number of fungal genera or OTUs (wetlands of Jangdo islands: 42/283> of Mt. Gariwang primeval forest: 32/169> of the Hanbando geology: 25/145). To assess the uniqueness of the understory root layer fungus taxa, we analyzed fungal genera distribution. We found that the percentage of fungal genera common to two or three wetland sites was relatively low at 32.3%, while fungal genera unique to each wetland site was 67.7% of the total number of identified fungal species. The Jangdo island wetland had higher fungal diversity than did the other sites and showed the highest level of uniqueness among fungal genera (Is. Jangdo wetland: 34.5% > wetland of Mt. Gariwang primeval forest: 28.6% > wetland of the Hanbando geology: 16.7%).

소규모 공공시설 개발 사업지의 생태적 복원 연구 - 고양시 일산정수장 조성예정지를 사례로 - (Ecological Restoration Plan for a Small Scale Public Construction Area - A Case Study on Ilsan Water Treatment Plant, Goyang-Si -)

  • 이수동;강현경
    • 한국조경학회지
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    • 제35권6호
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    • pp.48-63
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    • 2008
  • This research is to apply suitable natural ecosystem evaluation criteria in order to develop the ecosystem conservation, restoration and ways to build substitute habitats as a compensation plan for damaged soundly natural ecosystems in small-scale projects such as resource recovery facility, filtration, etc. The environmental ecology evaluation i.e. generally based on their actual vegetation, community structure, wildlife, water system survey were measured the primary plans for reflecting unique natural environment level of site. As a result, it is necessary to conserve the land in fallow type of wetland, good conservative condition of deciduous forest, wetlanded watercourse for amphibia and reptiles crossing. However, the plan of filtration plant was destroyed wetland(sound ecosystem), natural forest, asian toad spawning area. According to the result of it schemed to build alternative wetland and spawning area, plan to healthy ecosystem and surface soil transplantation as compensation plan. The alternative wetland and spawning area are not only created a various water levels like depth of water is $0{\sim}30cm,\;30{\sim}60cm$, more than 1.5m but also it leads to asian toad spawning and wildlife inhabitant. Moreover, the ecosystem and surface soil transplantation be applied to use the Quercus acutissima forest resources(114 upper trees, 71 canopy trees, 401 shrubs) and surface soil$(5,072m^3)$ in ecology creation sets.

Temporal and Spatial Change in Microbial Diversity in New-developed Wetland Soil Covered by Tamarix chinesis Community in Chinese Yellow River Delta

  • Chen Weifeng;Ann Seoung-Won;Kim Hong-Nam;Shi Yanxi;Mi Qinghua
    • 한국환경과학회지
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    • 제14권4호
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    • pp.367-371
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    • 2005
  • Soil samples were collected from new-developed wetland soil ecosystem of Tamarix chinesis plantation in Chinese Yellow River Delta in different months of 2003. Soil characteristics, temporal change and spatial distribution of microbial community composition and their relationship with nitrogen turnover and circling were investigated in order to analyze and characterize the role of microbial diversity and functioning in the specific soil ecosystem. The result showed that the total population of microbial community in the studied soil was considerably low, compared with common natural ecosystem. The amount of microorganism followed as the order: bacteria> actinomycetes>fungi. Amount of actinomycetes were higher by far than that of fungi. Microbial population remarkably varied in different months. Microbial population of three species in top horizon was corrected to that in deep horizon. Obvious rhizosphere effect was observed and microbial population was significantly higher in rhizosphere than other soils due to vegetation growth, root exudation, and cumulative dead fine roots. Our results demonstrate that microbial diversity is low, while is dominated by specific community in the wetland ecosystem of Tamarix chinesi.

Wastewater Utilization: A Place for Managed Wetlands - Review -

  • Humenik, F.J.;Szogi, A.A.;Hunt, P.G.;Broome, S.;Rice, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권4호
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    • pp.629-632
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    • 1999
  • Constructed wetlands are being used for the removal of nutrients from livestock wastewater. However, natural vegetation typically used in constructed wetlands does not have marketable value. As an alternative, agronomic plants grown under flooded or saturated soil conditions that promote denitrification can be used. Studies on constructed wetlands for swine wastewater were conducted in wetland cells that contained either natural wetland plants or a combination of soybeans and rice for two years with the objective of maximum nitrogen reduction to minimize the amount of land required for terminal treatment. Three systems, of two 3.6 by 33.5 m wetland cells connected in series were used; two systems each contained a different combination of emergent wetland vegetation: rush/bulrush (system 1) and bur-reed/cattail (system 2). The third system contained soybean (Glycine max) in saturated-soil-culture (SSC) in the first cell, and flooded rice (Oryza sativa) in the second cell. Nitrogen (N) loading rates of 3 and $10kg\;ha^{-1}\;day^{-1}$ were used in the first and second years, respectively. These loading rates were obtained by mixing swine lagoon liquid with fresh water before it was applied to the wetland. The nutrient removal efficiency was similar in the rush/bulrush, bur-reed/cattails and agronomic plant systems. Mean mass removal of N was 94 % at the loading rate of $3kg\;N\;ha^{-1}\;day^{-1}$ and decreased to 71% at the higher rate of $10kg\;N\;ha^{-1}\;day^{-1}$. The two years means for above-ground dry matter production for rush/bulrushes and bur-reed/cattails was l2 and $33Mg\;ha^{-1}$, respectively. Flooded rice yield was $4.5Mg\;ha^{-1}$ and soybean grown in saturation culture yielded $2.8Mg\;ha^{-1}$. Additionally, the performance of seven soybean cultivars using SSC in constructed wetlands with swine wastewater as the water source was evaluated for two years, The cultivar Young had the highest yield with 4.0 and $2.8Mg\;ha^{-1}$ in each year, This indicated that production of acceptable soybean yields in constructed wetlands seems feasible with SSC using swine lagoon liquid. Two microcosms studies were established to further investigate the management of constructed wetlands. In the first microcosm experiment, the effects of swine lagoon liquid on the growth of wetland plants at half (about 175 mg/l ammonia) and full strength (about 350 mg/l ammonia) was investigated. It was concluded that wetland plants can grow well in at least half strength lagoon liquid. In the second microcosm experiment, sequencing nitrification-wetland treatments was studied. When nitrified lagoon liquid was added in batch applications ($48kg\;N\;ha^{-1}\;day^{-1}$) to wetland microcosms the nitrogen removal rate was four to five times higher than when non-nitrified lagoon liquid was added. Wetland microcosms with plants were more effective than those with bare soil. These results suggest that vegetated wetlands with nitrification pretreatment are viable treatment systems for removal of large quantities of nitrogen from swine lagoon liquid.

Holocene Paleosols of the Upo Wetland, Korea

  • Nahm, Wook-Hyun;Kim, Ju-Yong;Yang, Dong-Yoon;Hong, Sei-Sun;Lee, Jin-Young;Kim, Jin-Kwan
    • 한국제4기학회지
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    • 제17권2호
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    • pp.167-168
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    • 2003
  • The Upo wetland, the largest natural wetland in Korea, is located in Changnyeong-gun, Gyeongsannam Province ($35^{\circ}33'$ N, $128^{\circ}25'$ E), and 70 km upstream from the Nakdong River estuary. Unlike most other Korean wetlands that have been destroyed under the name of economic development, the Upo wetland has been able to preserve its precious ecosystem throughout the years. Thanks to increased public awareness about natural wetlands and environmental conservation, the Korean Ministry of Environment designated the Upo wetland an 'Ecological Conservation Area' on July 26th, 1997. On March 2nd of the following year, the Upo wetland (8.54 $\textrm{km}^2$) was designated a 'Protected Wetland' in accordance with the international Ramsar Treaty. A 4.49m long (from 9.73 to 5.24 m in altitude) UP-1 core ($35^{\circ}33'05"N$, $128^{\circ}25'17"E$), recovered in the marginal part of the Upo wetland, is divided into eight buried paleosol units of different ages on the basis of the abundance of color mottles and vertical color variations (Aslan et al., 1998). Radiocarbon datings suggested that the paleosol profile represent the last 5700 years. The entire section of the core was more or less subjected to pedogenetic processes, and shows very weak to moderate soil profile development. These Holocene paleosols are therefore regarded as synsedimentary soils of deluvium (deposits formed by floods) origin (Sycheva et al., 2003). Unit 1 to 5 paleosols are generally silt-rich and exhibit moderate profile development. The boundaries between the units are somewhat distinguishable, but not so clear cut. This is due to variable repeated combination of accumulation, denudation and soil forming processes within various periods. Mottle textures gradually decrease in abundance with increasing clay content in Unit 6, which results in weak profile development. The lower boundary of Unit 6 lies around about 2000 yrBP, the beginning of Subatlantic in Korea (Kim et al., 2001). Abrupt sediment textural change is detected in Unit 7, which is interpreted to indicate the human activities on the Upo wetland. Unit 8 represents the recent soil forming processes. The preliminary results of this ongoing study imply the primary factor for pedogenetic processes is the water table fluctuations related to the sedimentary textures like grain size distributions, and the geomorphological stability of the Upo wetland.o wetland.

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