• 제목/요약/키워드: artificial wetlands

검색결과 135건 처리시간 0.028초

도시 내 습지의 식생구조 변화 모니터링 (Monitoring Vegetation Structure Changes in Urban Wetlands)

  • 김나영;남종민;이경연;이근호;송영근
    • 한국환경복원기술학회지
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    • 제26권6호
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    • pp.135-154
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    • 2023
  • Urban wetlands provide various ecosystem services and are subject to restoration and creation projects due to their increased value in the context of climate change. However, the vegetation structure of wetlands is sensitive to environmental changes, including artificial disturbances, and requires continuous maintenance. In this study, we conducted a vegetation survey of three wetlands created as part of a project to restore urban degraded natural ecosystems and monitored the quantitative changes in wetland vegetation structure using an unmanned aerial vehicle. The vegetation survey revealed 73 species in Incheon Yeonhui wetland, and the change in vegetation composition based on wetland occurrence frequency was 11.5% on average compared to the 2018 vegetation survey results. The vegetation survey identified 44 species in Busan Igidae wetland, and the proportion of species classified as obligate upland plants was the highest at 48.8% among all plants, while the proportion of naturalized plants accounted for 15.9% of all plants. The open water surface area decreased from 10% in May 2019 to 6.7% in May 2020. Iksan Sorasan wetland was surveyed and 44 species were confirmed, and it was found that the proportion of facultative wetland plant decreased compared to the 2018 vegetation survey results, and the open water surface area increased from 0.4% in May 2019 to 4.1% in May 2020. The results of this study showed that wetlands with low artificial management intensity exhibited a tendency for stabilization of vegetation structure, with a decrease in the proportion of plants with high wetland occurrence frequency and a relatively small number of new species. Wetlands with high artificial management intensity required specific management, as they had a large change in vegetation structure and a partially high possibility of new invasion. We reaffirmed the importance of continuous monitoring of vegetation communities and infrastructure for wetlands considering the function and use of urban wetlands, and restoration stages. These research results suggest the need to establish a sustainable wetland maintenance system through the establishment of long-term maintenance goals and monitoring methods that consider the environmental conditions and vegetation composition of wetlands.

옥상 내 인공 생태습지 조성에 적용 가능한 식물종 선발 (Selection of Plant for Constructing Ecological Wetlands On the Rooftop Greening)

  • 권효진;김유선;유병열
    • 화훼연구
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    • 제18권2호
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    • pp.117-124
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    • 2010
  • The purpose of this study was to create an artificial wetland in rooftop greening. We monitored species and changes of flora in wetland and rooftop greening. As shown the consideration and possibility of supplying the artificial wetland in rooftop greening through flora in wetland, this study tried to find methods to create a efficient flora space. This results are listed as belows. The species were applied to artificial wetland in rooftop greening and come up to 'General standard for selecting plants' among hydrophyte in wetlands. The plants of Potentilla kleiniana, Penthorum chinense, Scirpus radicans, Scirpus triqueter, Veronica undulata, Mentha arvensis var. piperascens, Salvia plebeian, Sagittaria aginashi, Aneilema keisak, Stachys riederi, Alisma canaliculatum, Eclipta prostrata, Sparganium stoloniferum turned out an appropriate species. This research was expected to create a various environment and component of species by introducing many types of plants in ecological wetland on rooftop greening.

강우 유출수 처리를 위한 하이브리드 인공습지의 영양물질 저감 인자 분석 (Analysis of the Factors Affecting Nutrients Removal in Hybrid Constructed Wetland Treating Stormwater Runoff)

  • ;;최혜선;홍정선;김이형
    • 한국습지학회지
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    • 제20권1호
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    • pp.54-62
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    • 2018
  • 다양한 토지이용에서 발생된 영양염류는 수계 유입시 부영양화를 유발하며, 녹조발생의 원인물질이 되기에 비점오염원으로부터 영양염류를 저감하기 위한 LID 기법의 적용이 필요하다. 본 연구는 영양물질의 저감효율을 높이기 위한 하이브리드 인공습지(HCW)의 설계인자를 도출하고자 수행되었다. 하이브리드 인공습지는 공주대학교 천안캠퍼스내 100% 불투수층으로 이루어진 주차장 및 도로의 강우유출수 처리를 위하여 2010년에 조성되었으며, 현재까지 모니터링이 수행 중이다. 하이브리드 인공습지의 조성 이후 현재까지 수행 중인 모니터링 결과를 활용하여 산정한 TN의 평균 제거효율은 74%였으며, TP의 평균 제거효율은 72%로 나타났다. 이러한 TN 및 TP 제거효율은 일반적인 인공습지에 비하여 높은 제거효율이며 자유수면 습지 및 지표하 흐름습지에서의 활성화된 물리적 및 생태학적 기작에 기인한다. 하이브리드 인공습지의 효율적 영양물질 저감을 위한 중요설계인자는 유역면적 대비 시설면적의 비(SA/CA), 강우유출량, 강우강도 등으로 나타났으며, 영양물질 제거를 위한 최적 유입수의 C/N 비는 5:1에서 10.3:1로 산정되었다. 본 연구 결과는 도시지역의 강우유출수 내 영양염류를 고효율로 처리하고자 하는 하이브리드 인공습지의 효율적 설계에 사용 가능하다.

생태지리적 입지에 따른 내륙습지 가치평가 (Value Assessment for Inland Wetlands according to Ecological Geographic Distribution)

  • 이정환;임란영;이관규;박현철
    • 한국습지학회지
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    • 제18권4호
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    • pp.456-464
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    • 2016
  • 한국은 2000년부터 2010년까지 전국을 조사하여 총 1,916개소의 내륙습지 인벤토리를 구축한 바 있다. 본 연구는 국가보호지역과 내륙습지와의 입지상관관계를 분석함으로써 내륙습지의 관리가치 측면을 평가하고자 하였다. 그 결과, 내륙습지의 상당수가 자연환경의 보호가치가 높아 국가가 보호지역으로 지정하여 관리하는 지역 내에 입지(527개소, 31.61%)하고 있는 것으로 나타났다. 보호지역 반경 1km 까지 범위를 넓혀 보면 959개소로 전체 국가내륙습지의 57.53%에 해당하는 수가 보호지역 내 및 인근에 입지하고 있음을 알 수 있다. 그 중에서도 하천수계 반경 1km 내에 46.79%가 분포하여 보호지역 내 분포하는 습지 중 81.33%를 기록하고 있어서 현재의 내륙습지의 입지는 대부분 하천수계에 접하여 있는 것으로 분석되었다. 각종 보호지역과의 이격거리를 분석하여 중첩 분석한 결과를 상, 중, 하로 평점구분하고 내륙습지와의 입지관계를 분석한 결과, 보호가치가 '상'인 지역에 분포한 습지의 개소가 998(59.87%)에 해당하였다. 보호가치가 '하'인 지역에도 289개소(17.34%)가 분포되어 있는데, 이는 인공화된 지역에 입지한 습지로써 환경압력에 더욱 노출되어 있는 습지임을 의미하므로 훼손방지를 위한 대책수립을 고려해야 할 내륙습지로 의사결정할 수 있다.

HGM을 이용한 질날늪 기능평가 연구 (Functional Assessment of Jilnalnup Wetland by HGM)

  • 김예화;이란;문상균;구본학
    • 한국환경복원기술학회지
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    • 제16권2호
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    • pp.13-22
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    • 2013
  • Wetlands occupy an important ecological position on the earth, carrying out very important functions and roles both ecologically and hydrologically. However, due to past industrialization, not only wetland areas but also the biodiversity of organisms has severely decreased due to several artificial interferences and damage as wetlands began to be perceived simply as targets for development and reclamation. However in recent times, with the importance of wetlands coming to the fore, the assessment of the function and value of wetlands is being made for their wise use and systematic maintenance. Accordingly, this study targeted the Jilnal Wetlands located in Haman, Gyeongnam, and conducted a functional appraisal of this wetland using the modified HGM Model which was modified & developed appropriately for the actual conditions of our country. The result of its appraisal by selecting the Upo Wetland as the reference wetland, which is a criterion of the index, showed a comparatively positive functional index with 0.89 of the Upo Wetland average. This means that the Jilnal Wetland carrys out more than 89% of the functioning of the Upo Wetland. In this regard, it is thought that the Jilnal Wetland could carry out the wetland functioning equivalent to that of the Upo Wetland through a little more systematic management.

NPS-WET 습지 모델링을 이용한 습지 증설에 따른 수질개선 효과 분석 (Analysis of Water Quality Improvement Effects on Wetland Expansion using NPS-WET Model)

  • 박종석;이경훈;한창화
    • 한국습지학회지
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    • 제19권4호
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    • pp.393-402
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    • 2017
  • 본 연구는 바이오파크 유역 내 인공습지에 대하여 습지규모와 수질개선효과의 관련성을 분석하여, 최적의 습지규모 설계를 위한 기초 자료를 제공하기 위하여 수행되었다. 본 연구를 통해 인공습지에 대한 합리적인 규모 설계 및 운영에 기여할 것으로 판단되며, 연구결과를 통해 다음과 같은 결론을 얻었다. 인공습지의 0-100 % 증설범위의 설계별 시나리오 분석결과, '기존규모 대비 75 % 증설'의 경우, '기존규모의 현 상태 운영' 설계 기준과 비교하여 수질이 BOD5는 66.7 %, TSS는 69.9 %, T-N은 64.7 %, T-P는 85.5 %, Chl-a는 51.8 % 만큼 개선되어 가장 양호한 효과를 보여주었으며, 특히 4계절 중 여름철에 Chl-a를 제외한 수질항목에서 효과가 크게 나타나는 경향이었다. 그리고 설계규모와 수질개선 효과간 정비례관계가 성립되지 않은 것으로 나타났다.

Distribution of Fish Species in Wetland Protected Areas in South Korea

  • Chu, Yeounsu;Yoon, Jungdo;Cho, Kwang-Jin;Kim, Mijeong;Lim, Jeongcheol;Lee, Changsu
    • Proceedings of the National Institute of Ecology of the Republic of Korea
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    • 제2권1호
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    • pp.42-52
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    • 2021
  • In order to secure basic data on biodiversity for wetland conservation and management used the data from Wetland Protected Area surveys conducted in South Korea (2015-2019) to analyze the distribution of fish from a total of 15 orders, 45 families, 134 species, and 12,972 individuals. The predominant species identified were Zacco platypus (Temminck and Schlegel) (19.47%) and Zacco koreanus (Kim, Oh and Hosoya) (8.16%). Of all emergent species, 52.9% (n=71 species) were freshwater species, 26.9% (n=36) were brackish species, 3.0% (n=4) were migratory species, 27% (n=36) were marine species, and 9.0% (n=12) were riffle benthic species. Overall, 5.2% (n=7 species) were endangered species, 3.0% (n=4) were exotic species, and 23.1% (n=31) were Korean endemic species. The eight identified Wetland Protected Areas (WPA) were classified based on their habitat characteristics and on the analysis of their emergent fish communities, as estuarine (n=2), coastal dune (n=1), marsh (n=2), stream (n=2), and stream-marsh (n=1) types. The environmental factors revealed to have the greatest influence on the species diversity of emergent fish were maintenance and repair, installation of reservoirs, and construction of artificial wetlands around them. The present study offers basic information on the diversity of fish species in different Wetland Protected Area types that can be used to inform conservation and management decisions for WPA.

A Review of the Application of Constructed Wetlands as Stormwater Treatment Systems

  • Reyes, Nash Jett;Geronimo, Franz Kevin;Guerra, Heidi;Jeon, Minsu;Kim, Lee-Hyung
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2022년도 학술발표회
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    • pp.162-162
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    • 2022
  • Stormwater management is an essential component of land-use planning and development. Due to the additional challenges posed by climate change and urbanization, various stormwater management schemes have been developed to limit flood damages and ease water quality concerns. Nature-based solutions (NBS) are increasingly used as cost-effective measures to manage stormwater runoff from various land uses. Specifically, constructed wetlands were already considered as socially acceptable green stormwater infrastructures that are widely used in different countries. There is a large collection of published literature regarding the effectiveness or efficiency of constructed wetlands in treating stormwater runoff; however, metadata analyses using bibliographic information are very limited or seldomly explored. This study was conducted to determine the trends of publication regarding stormwater treatment wetlands using a bibliometric analysis approach. Moreover, the research productivity of various countries, authors, and institutions were also identified in the study. The Web of Science (WoS) database was utilized to retrieve bibliographic information. The keywords ("constructed wetland*" OR "treatment wetland*" OR "engineered wetland*" OR "artificial wetland*") AND ("stormwater*" or "storm water*") were used to retrieve pertinent information on stormwater treatment wetlands-related publication from 1990 up to 2021. The network map of keyword co-occurrence map was generated through the VOSviewer software and the contingency matrices were obtained using the Cortext platform (www.cortext.net). The results obtained from this inquiry revealed the areas of research that have been adequately explored by past studies. Furthermore, the extensive collection of published scientific literature enabled the identification of existing knowledge gaps in the field of stormwater treatment wetlands.

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표준습지 분석을 통한 대체습지의 생태 성능 기준 개발 (Developing the Ecological Performance Standard for Replaced Wetlands by Analyzing Reference Wetlands)

  • 구본학;정진용;박미옥
    • 한국환경복원기술학회지
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    • 제14권1호
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    • pp.11-22
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    • 2011
  • This study was established to build and suggest the Ecological Performance Standards for replaced wetlands as the mitigation strategies for the construction projects. The request performance and assessment factors and standards were derived by bibliographic review and verified by the field survey for the reference wetlands. And the weights for each factor were derived by AHP(Analytical Hierarchy Process) method. The results are as follows : 1) Assessment factors were induced by in-depth research of many wetland assessment models and benchmarks evaluated ecological functions. This study proposed final 12 assessment factors through ecological specialist and experts interviews added with literature analysis. 2) 10 natural wetlands were selected as Reference Wetlands as the measure to propose assessment factors and assessment criteria. Those reference wetlands are well-conserved inland natural wetlands classified to the one having worthy to conserve (grade "high") according to RAM(Rapid Assessment Method). Reference wetlands chosen by the study are Parksilji, Jeongyangji, Mulkubi, Bawineupkubi, Jilnalneup, Jinchonneup, Doomoso, Haepyung wetland, Whangjeong wetland, and Whapo wetland. The research developed assessment criteria for the performance assessment factors based on several explorations of the reference wetlands. 3) "Requiring performance" of replaced wetlands is defined as "to carry out similar or same ecological functions provided by natural wetlands", in overall. The detailed requiring performances are as follows; ${\bullet}$ to play a role of wildlife habitats ${\bullet}$ to have biological diversity ${\bullet}$ to connect with other ecosystems ${\bullet}$ to provide water environment to perform good ecological functions 4) The assessment factors for required performance are categorized by wildlife habitat function, biological diversity, connectivity of adjacent ecosystem, and water environment. Wildlife habitat category is consisted of wildlife habitat creation, size of replacement wetland, and site suitability. Biological diversity category contains the number of plant species, the number of wildlife species, and number of protected species as the sub-factors. Connectivity of adjacent ecosystem is comprised of wildlife corridor, green network and distance from other ecosystem. Finally, water environment make up with water quality, depth of water body, and shape of waterfront. 5) Finally, every assessment factors were verified and weighted by the AHP methods and the final standards were proposed. The weights of factors of requiring performance suggested as habitat (0.280), connectivity (0.261), diversity (0.260), hydraulic environment (0.199). And those of detailed sub-factors are site suitability (0.118), protected species (0.096), distance to neighbor ecosystem (0.093), habitat creating (0.091), green corridor (0.090) etc.