• 제목/요약/키워드: created wetland

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Successional changes in plant composition over 15 years in a created wetland in South Korea

  • Son, Deokjoo;Lee, Hyohyemi;Cho, Kang-Hyun;Bang, Jeong Hwan;Kwon, Oh-Byung;Lee, Eun Ju
    • Journal of Ecology and Environment
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    • 제42권4호
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    • pp.183-190
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    • 2018
  • Backgrounds: The main purpose of this research was to assess changes in vegetation structure, wetland index, and diversity index for a 15-year-old created wetland in Jincheon, South Korea. The created wetland consists of four sub-wetlands: a kidney-shaped wetland, a ditch, an ecological pond, and a square wetland. Vegetation and water depth data were collected at each site in 1999 and 2013, and Shannon diversity and wetland indices were calculated. Results: The total number of plant species increased from 18 in 1999 to 50 in 2013, and the ecological pond in 1999 and the ditch in 2013 presented the highest diversity indices (2.5 and 3.2, respectively). Plant species were less diverse in 1999 than in 2013, presumably because these initial wetlands were managed periodically for water purification and installation of test beds. The proportion of wetland plants, including obligate wetland and facultative wetland species, decreased from 83 to 56%, whereas upland plants, including obligate upland and facultative upland species, increased from 17 to 44%. After ceasing water supply, water depth in all four sub-wetlands declined in 2013. Thus, upland plants established more readily at these sites, resulting in higher diversity and lower wetland indices than in 1999. Conclusions: The major floristic differences between 1999 and 2013 were an increase in the number of upland plants and a decrease in wetland species. Although wetland indices were lower in 2013, the created wetland performed important ecosystem functions by providing habitats for wetland and upland plants, and the overall species diversity was high.

Plant community development in the first growing season of a created mitigation wetland bank as influenced by design elements

  • Ahn, Chang-Woo
    • Journal of Ecology and Environment
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    • 제33권4호
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    • pp.363-376
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    • 2010
  • Vegetative communities of created wetlands often display lower species richness, less cover, higher occurrence of non-native or invasive species, and fewer obligate wetlands species than those in natural wetlands, thus failing to meet basic success criteria for wetland mitigation. This study examined the effects of two design elements, disking-induced microtopography and hydrologic regime, on the first year vegetation development pattern of a mitigation wetland newly created in the Virginia piedmont. Elevation and species cover were measured along replicate multiscale circular transects in two adjacent wetland sites that are different in their hydrologic regime. Two microtopographic indices, tortuosity (T) and limiting elevation difference (LD), were calculated from the elevation measurements. Both indices were higher in disked plots than non-disked plots, showing the effect of disking on microtopography. Out of forty-one vegetation taxa observed in the wetland, 29 taxa were naturally colonized and 12 taxa were seeded. All plots except one non-disked plot were dominated by wetland vegetation. Species richness and diversity were higher in disked than in non-disked plots. Vegetation community development seemed also influenced significantly by hydrologic regime of the site. The effect of microtopography on species richness and diversity was more pronounced in a relatively dry site compared to a wet site. In addition, percent cover, species richness and diversity of vegetation were positively correlated with microtopographic indices such as T and LD. Two design elements, microtopography and hydrologic regime, should be considered and incorporated in wetland creation to enhance plant community development.

Assessing Organic Matter and Organic Carbon Contents in Soils of Created Mitigation Wetlands in Virginia

  • Ahn, Changwoo;Jones, Stacy
    • Environmental Engineering Research
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    • 제18권3호
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    • pp.151-156
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    • 2013
  • Several soil properties were studied from three young created mitigation wetlands (<10 years old), which were hydrologically comparable in the Piedmont region of Virginia. The properties included soil organic matter (SOM), soil organic carbon (SOC), pH, gravimetric soil moisture, and bulk density ($D_b$). No significant differences were found in the soil properties between the wetlands, except SOM and SOC. SOM and SOC indicated a slight increase with wetland age; the increase was more evident with SOC. Only about a half of SOC variability found in the wetlands was explained by SOM ($R^2$ = 0.499, p < 0.05). The majority of the ratios of SOM to SOC for these silt-loam soils ranged from 2.0 to 3.5, which was higher than the 1.724 Van Bemmelen factor, commonly applied for the conversion of SOM into SOC in estimating the carbon storage or accumulation capacity of wetlands. The results may caution the use of the conversion factor, which may lead to an overestimation of carbon sequestration potentials of newly created wetlands. SOC, but not SOM, was also correlated to $D_b$, which indicates soil compaction typical of most created wetlands that might limit vegetation growth and biomass production, eventually affecting carbon accumulation in the created wetlands.

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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묵논에 형성된 자운늪의 유형분류 및 기능 평가 (Wetland Type Classification and Functional Assessment of an Abandoned Rice Paddy Ja-un Wetland)

  • 구본학
    • 한국환경복원기술학회지
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    • 제6권1호
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    • pp.65-70
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    • 2003
  • This research aims to classify wetland types and evaluate functions of a wetland created by abandoned rice paddies. The case study area is Ja-un wetland in Daejeon Metropolitan City. In this study, wetland types were classified based on the basic elements of wetlands such as hydrology, vegetation, and soil conditions. This study was carried out based upon field surveys, drawing maps and publication, and modified-RAM which can evaluate the general functions and conservation values of wetlands. The analysis shows that several types of wetlands were identified, such as Palustrine/ Perennial/ Hydrophytes, Palustrine/ Perennial/ Openwater, Palustrine/ Seasonal/Herbal, Palustrine/ Seasonal/ Shrub and Scrub, Palustrine/ Seasonal/ Hydrophye, and Riparian/ Seasonal/ Shrub and Scrub in the Ja-un wetland. The average level of functions of the wetlands is very "HIGH", and it is recommended that prompt conservation measures should be taken.

Integration of ERS-2 SAR and IRS-1 D LISS-III Image Data for Improved Coastal Wetland Mapping of southern India

  • Shanmugam, P.;Ahn, Yu-Hwan;Sanjeevi, S.;Manjunath, A.S.
    • 대한원격탐사학회지
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    • 제19권5호
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    • pp.351-361
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    • 2003
  • As the launches of a series of remote sensing satellites, there are various multiresolution and multi-spectral images available nowadays. This diversity in remotely sensed image data has created a need to be able to integrate data from different sources. The C-band imaging radar of ERS-2 due to its high sensitivity to coastal wetlands holds tremendous potential in mapping and monitoring coastal wetland features. This paper investigates the advantages of using ERS-2 SAR data combined with IRS-ID LISS-3 data for mapping complex coastal wetland features of Tamil Nadu, southern India. We present a methodology in this paper that highlights the mapping potential of different combinations of filtering and integration techniques. The methodology adopted here consists of three major steps as following: (i) speckle noise reduction by comparative performance of different filtering algorithms, (ii) geometric rectification and coregistration, and (iii) application of different integration techniques. The results obtained from the analysis of optical and microwave image data have proved their potential use in improving interpretability of different coastal wetland features of southern India. Based visual and statistical analyzes, this study suggests that brovey transform will perform well in terms of preserving spatial and spectral content of the original image data. It was also realized that speckle filtering is very important before fusing optical and microwave data for mapping coastal mangrove wetland ecosystem.

금강유역 신규조성습지의 환경 특성이 동물플랑크톤 군집 구조에 미치는 영향 (Effect of Environmental Characteristics on the Zooplankton Community of the Newly Created Wetlands in the Geum River, South Korea)

  • 최종윤
    • 한국환경과학회지
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    • 제33권7호
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    • pp.489-500
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    • 2024
  • The newly created wetlands in the Geum River Basin have undergone various environmental changes since their establishment in 2012. In this study, we evaluated the influence of environmental characteristics on zooplankton, which are sensitive to environmental changes, and considered appropriate wetland management plans. The thirty-two wetlands were divided into two groups based on the differences in their macrophyte cover. High species diversity and zooplankton density were found in cluster 2, which had abundant macrophyte cover. In contrast, cluster 1, with low plant cover, had lower species diversity and zooplankton density, primarily of pelagic zooplankton. To maintain species diversity and abundance of zooplankton in wetlands, we recommend implementing a management strategy that encourages the development of various plant communities through efficient water conveyance functions.

GIS와 AHP분석에 의한 생태습지의 생성 및 유지조건 도출 (Elicitation of Ecological Wetland's Creating & Maintaining Conditions through GIS & AHP Analysis)

  • 엄대용;심미영;신계종
    • 한국측량학회지
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    • 제31권1호
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    • pp.29-40
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    • 2013
  • 본 연구에서는 남한강 유역내 자연적으로 생성되어 오랜 시간 습지로서의 기능을 유지하고 있는 습지들을 대상으로 습지가 가지는 공통적 특성을 GIS와 AHP(Analytic Hierarchy Process)에 의해 분석함으로써 습지의 생성 및 유지 조건을 도출하고자 하였다. 이를 위해 습지에 대한 문헌 및 선행연구를 토대로 지형학적, 지질학적, 수리 수문학적, 토양학적, 환경 생태학적 측면의 5개 카테고리로 분류하였다. 그리고 각 카테고리별 관련 자료를 수집하여 중첩분석을 실시하고 그 결과를 각 연구대상 습지들에 연계하여 충족 여부를 분석함으로써 연구대상 습지들이 갖는 공통적인 생성 및 유지조건을 도출하였다. 그리고 각각의 요인들에 대해 AHP분석기법을 적용해 요인별 가중치를 산출함으로써 보다 신뢰성이 높은 분석결과를 도출하였다. 본 연구의 결과는 습지총량제의 도입에 있어 습지의 복원 및 유지, 인공습지의 조성을 위한 적지선정에 효과적으로 적용 될 수 있을 것으로 기대된다. 또한 습지의 단순한 보존을 넘어 가치의 재인식과 함께 자연형 습지에 대한 지속 가능한 성장을 연계할 수 있는 방안이 될 것이라 사료된다.

Effects of habitat conditions in created wetlands on sustaining wintering waterfowl in riverine plains, Nakdong River, South Korea

  • Choi, Jong-Yun;Jang, Ji-Deok;Jeong, Kwang-Seuk;Joo, Gea-Jae
    • Journal of Ecology and Environment
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    • 제38권3호
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    • pp.343-352
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    • 2015
  • The landscape setting of a habitat strongly influences the distribution, abundance, and species composition of waterfowl. Thus, habitat assessment is very important to understand the habitat characteristics that sustain waterfowl assemblages. In this study, we hypothesized that the excessive use of artificial materials when new wetlands are constructed negatively influences wintering waterfowl. To test this hypothesis, we measured environmental factors, assessed habitat, and investigated waterfowl at 13 artificial wetlands in the Nakdong River Basin. There were greater numbers of waterfowl species and individuals in artificial wetlands with high habitat assessment scores. In contrast, environmental factors did not affect waterfowl distribution. In particular, features of natural habitats, such as macrophytes and sandbars, and the surrounding land-use patterns were important factors for sustaining waterfowl assemblages in each created wetland. Our results show that promoting naturalness in wetlands and surrounding areas would increase the species diversity and abundance of waterfowl. Further, complex habitats, such as wetlands and some terrestrial habitats, support both aquatic and terrestrial species because mixed habitats feature a larger array of food sources than more limited habitats do.

수질 오염물질 배출저감을 위한 완충식생 복원 모델 개발 (Development and Application of a Model for Restoring a Vegetation Belt to Buffer Pollutant Discharge)

  • 안지홍;임치홍;임윤경;남경배;피정훈;문정숙;방제용;이창석
    • 한국물환경학회지
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    • 제32권2호
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    • pp.205-215
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    • 2016
  • In order to improve water quality in the Paldang Lake, a riparian vegetation belt, treatment wetland, and artificial floating island were designed for introduction in the upland field, the estuary of tributaries, and the section of water facing mountainous land, respectively. We synthesized vegetation information collected from a reference river and found that herbaceous, shrubby, and tree vegetation zones tended to be dominated by Phragmites japonica, Phalaris arundinacea, etc.; Salix gracilistyla, S. integra, etc.; and S. koreensis, S. subfragilis, and Morus alba, respectively. In our plan, the herbaceous vegetation zone, which is established on floodplains with a high frequency of disturbance, will be left in its natural state. A shrubby vegetation zone will be created by imitating the species composition of the reference river in the ecotone between floodplain and embankment. A tree vegetation zone will be created by imitating species composition on the embankment slope. In the treatment wetland, we plan to create emerged and softwood plant zones by imitating the species composition of the Zizania latifolia community, the Typha orientalis community, the P. communis community, the S. integra community, and the S. koreensis community. The floating island will be created by restoring Z. latifolia and T. orientalis for water purification purposes.