• Title/Summary/Keyword: 자연저감

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The Effect of CO2 Fixation for Microalgae based on CO2 Concentration and Flow Rate (이산화탄소 농도 및 유속에 따른 하천 내 미세조류의 이산화탄소 고정 효과)

  • Park, Hyomin;Lee, Sangdon
    • Journal of Wetlands Research
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    • v.20 no.4
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    • pp.363-369
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    • 2018
  • One of the recent environmental problems is climate change due to the increase of atmospheric $CO_2$, which causes ecological changes and various environmental problems. Therefore, various studies are being carried out to reduce $CO_2$ in the world in order to solve various environmental problems caused by increase of $CO_2$. The $CO_2$ reduction using microalgae is an environmentally friendly method by using photosynthesis reaction of microalgae. However, most studies using single species. There is no study on the $CO_2$ fixing efficiency of microalgae in natural rivers. Therefore, this study was to identify the microalgae in the Sum river and to analyze the growth characteristics of microalgae in the river to obtain optimal culture conditions. And the changes of biomass and chlorophyll-a of microalgae were analyzed according to $CO_2$ concentration and injection rate. The purpose of this study was to investigate the fixing efficiency of carbon dioxide in microalgae in natural rivers. Six kinds of dominant species were observed as a result of the identification of microalgae in Sum river(Ankistrodesmus falcatus, Scenedesmus intermedius, Selenodictyum sp., Xanthidium apiculatum var. laeve, Cosmarium pseudoquinarium, Dictyosphaerium pulchellum). All of these species were green algae. Biomass and chlorophyll-a increased with the increase of $CO_2$ concentration and biomass and chlorophyll-a increased faster flow rate at the same $CO_2$ concentration. Also, the quantity of $CO_2$ fixation on the microalgae tended to be higher when the flow rate of injected gas was faster. This study can be referred as being significant in the micro-algae in river. In addition, the optimal conditions for $CO_2$ fixation of microalgae in rivers and the quantification of the quantity of $CO_2$ fixation from microalgae in rivers can be used as basic data for future policy of $CO_2$ reduction.

Evaluation of Structural and Functional Changes of Ecological Networks by Land Use Change in a Wetlandscape (토지이용변화에 따른 거시적 습지경관에서의 생태네트워크의 구조 및 기능적 변화 평가)

  • Kim, Bin;Park, Jeryang
    • Ecology and Resilient Infrastructure
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    • v.7 no.3
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    • pp.189-198
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    • 2020
  • Wetlands, which provide various ecological services, have been regarded as an important nature-based solution for, for example, sustainable water quality improvement and buffering of impacts from climate change. Although the importance of conserving wetlands to reduce the impacts of various perturbations (e.g., changes of land use, climate, and hydrology) has been acknowledged, the possibility of applying these efforts as a nature-based solution in a macro-scale (e.g., landscape) has been insufficient. In this study, we examine the possibility of ecological network analysis that provides an engineering solution as a nature-based solution. Specifically, we analyzed how land use change affects the structural and functional characteristics (connectivity, network efficiency, and clustering coefficient) of the ecological networks by using the ecological networks generated by multiple dispersal models of the hypothetical inhabiting species in wetlandscape. Changes in ecological network characteristics were analyzed through simultaneously removing wetlands, with two initial conditions for surface area, in the zones where land use change occurs. We set a total number of four zones of land use change with different wetland densities. All analyses showed that mean degree and network efficiency were significantly reduced when wetlands in the zones with high wetland density were removed, and this phenomenon was intensified especially when zones contained hubs (nodes with high degree). On the other hand, we observed the clustering coefficient to increase. We suggest our approach for assessing the impacts of land use change on ecological networks, and with additional analysis on betweenness centrality, we expect it can provide a nature-based engineering solution for creating alternative wetlands.

Damage Analysis of Meteorological Disasters for Each District Considering the Characteristics of a District (지자체별 특성을 고려한 자연재해에 따른 피해유형 분석)

  • Jun, Hwan-Don;Park, Moo-Jong;Kim, Guen-Young
    • Journal of the Korean Society of Hazard Mitigation
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    • v.8 no.2
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    • pp.75-82
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    • 2008
  • Heavy rains and typhoons are the most critical meteorological disaster occurred in the Korean peninsular. Due to the global warming, the magnitude of heavy rains and typhoons is becoming heavier resulting in more damage annually. Therefore, it is required to establish a mitigation plan to reduce the damage from meteorological disasters. To do so, in general, it is better to establish a mitigation plan for each district considering the characteristics of a district than a single mitigation plan for the entire districts without considering the characteristics of an individual district. In this study, we provide fundamental data for establishing a mitigation plan from analysis considering the frequency and damage in monetary value by heavy rain and typhoon with the geological and social characteristics of districts. The annual damage reports published by the National Emergency Management Agency, dated from 1994 to 2003, are used for the analysis. The districts are classified into six categories by the geological and social characteristics. Also, the frequency and damage in monetary value are assessed for each district. Based on them, the damage degree by heavy rain and typhoon from 1st to 4th is assigned to each district. The assigned damage degree is, then, analyzed with geological and social characteristics of each district to show the status of damage by meteorological disasters on the district.

Study on the Environmental Quality Assessment of River Revetment Technique by Life-Cycle-Assessment (전과정 평가에 의한 하천 호안 공법의 환경성 평가에 관한 연구)

  • Kim, Kook-Il;Ahn, Won-Sik
    • Journal of Korea Water Resources Association
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    • v.40 no.6 s.179
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    • pp.485-494
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    • 2007
  • This study was performed to evaluate the environmental qualities of the revetment construction methods and the river-facility materials using Life-Cycle-Assessment(LCA) for the nature-friendly design of close-to-nature river, The investigation results on the environmental qualities of energy and materials used to the close-to-nature river plan showed that the environmental impacts per unit weight increased in the order of gasoline > diesel > cement > wood. The environmental impacts per unit area of revetment construction method exhibited that the environmental loadings increased in the order of gabion > revetment > cribwork. In addition, it was observed that the environmental impact was reduced by improving the materials of zinc-galvanized wire. The model basin investigated in this study was the $0.3km^2$ area of river improvement works in Kyung stream, which is a tributary to the Seomjin river and the second regional stream. The research was conducted based on the 30years by life expectancy of artificial facilities. For the comparisons of revetment techniques with respect to the environmental qualities, the method resulted in the highest environmental loadings. The method using ready-mixed concrete ranked second in the environmental loadings of revetment techniques. The present results of this study are expected to play a beneficial role in the nature-friendly design of close-to-nature river by quantitatively identifying the environmental quality of total procedures (i.e., combination of techniques, selection of river-facility materials, maintenance of river-facility) applied to close-to-nature river plan.

Analysis of the Differences in the Vascular Flora Distributed in the Gatbawi District of Palgongsan Natural Park (입지환경 특성에 따른 팔공산 자연공원 갓바위 지구에 분포하는 관속식물상 차이 분석)

  • Kim, Tae Kyu;Ra, Jung Hwa;Lim, Won Hyeon
    • Korean Journal of Plant Resources
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    • v.32 no.1
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    • pp.72-85
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    • 2019
  • This study was conducted to investigate the vascular flora distributed in the Gatbawi District of Palgongsan Natural Park and to provide basic data for the conservation and management of the natural resources. The results of the investigation of the flora with the Gatbawi District from April 2015 through October 2017 are as follows. As a result of drawing up a list of flora based on the specimens of evidence, as for the entire flora, 238 taxa were identified in total: 75 families, 167 genera, 214 species, 3 subspecies, 18 variants and 3 varieties. Also, one species of rare plant, 20 particular floristic species and a total of 18 species of naturalized plant were found.

Comparative assessment of urban stormwater low impact strategies equipped with pre-treatment zones (침강지 시설이 조성된 LID 시설의 환경적 영향평가)

  • Yano, K.A.V.;Reyes, N.J.D.G.;Jeon, M.S.;Kim, L.H.
    • Journal of Wetlands Research
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    • v.21 no.2
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    • pp.181-190
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    • 2019
  • Recently, Low impact development techniques, a form of nature-based solutions (NBS), were seen cost-efficient alternatives that can be utilized as alternatives for conventional stormwater management practices. This study evaluated the effectiveness of an infiltration trench (IT) and a small constructed wetland (SCW) in treating urban stormwater runoff. Long-term monitoring data were observed to assess the seasonal performance and cite the advantages and disadvantages of utilizing the facilities. Analyses revealed that the IT has reduced performance during the summer season due to higher runoff volumes that exceeded the facility's storage volume capacity and caused the facility to overflow. On the other hand, the pollutant removal efficiency of the SCW was impacted by the winter season as a result of dormant biological activities. Sediment data also indicated that fine and medium sand particles mostly constituted the trapped sediments in the pretreatment and media zones. Sediments in SCW exhibited a lower COD and TN load due to the phytoremediation and microbiological degradation capabilities of the system. This study presented brief comparison LID facilities equipped with pre-treatment zones. The identified factors that can potentially affect the performance of the systems were also beneficial in establishing metrics on the utilization of similar types of nature-based stormwater management practices.

A Study on the Land-Use Related Assessment Factors in Korean Environmental Impact Assessment (환경영향평가 토지환경 분야의 토지이용 평가항목 고찰 연구)

  • Park, Sang-Jin;Lee, Dong Kun;Jeong, Seulgi
    • Journal of Environmental Impact Assessment
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    • v.30 no.5
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    • pp.297-304
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    • 2021
  • The environmental impact assessment(EIA) project in Korea has undergone changes and revisions in various evaluation items for about 30 years after the introduction of the Environmental Conservation Act (1997). However, despite the importance of land use evaluation items under the current EIA Act, there are insufficient studies to consider. Therefore, this study focused on the land-use evaluation items based on the EIA guidelines, reviewed 90 of the evaluation documents and consultation documents, and tried to suggest implications and supplementary points forthe domestic EIA land-use evaluation items. As a result, the paradigm was changing from land efficiency centered on development in the past to land efficiency centered on the natural environment and resource conservation. However, in spite of the manual for fitting the paradigm change, opinions on the conservation of the natural environment are still being drawn in the consultation document, so it needs improvement. Two improvements in the impact assessment process suggested in this study are the establishment of standardized spatial data and a quantitative impact and reduction method evaluation tool based on it. In particular, there is a need for a plan evaluation tool for land use arrangement and distribution that can solve the needs of minimizing damage to the natural environment and securing green space and a green network.

Assessment of Potential Natural Attenuation of Arsenic by Geological Media During Managed Aquifer Recharge (대수층 함양관리에 있어서 지질매질에 의한 비소 자연저감 가능성 평가)

  • Park, Dasomi;Hyun, Sung Pil;Ha, Kyoochul;Moon, Hee Sun
    • Journal of Soil and Groundwater Environment
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    • v.25 no.3
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    • pp.12-22
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    • 2020
  • Managed aquifer recharge (MAR) is a promising water management strategy for securing stable water resources to overcome water shortage and water quality deterioration caused by global environmental changes. A MAR demonstration site was selected at Imgok-ri, Sangju-si, Korea, based on screening for the frequency of drought events and local water supply situations. The abundant groundwater discharging from a nearby abandoned coal mine is one of the potential recharge water sources for the MAR implementation. However, it has elevated levels of arsenic (~12 ㎍/L). In this study, the potential of the natural attenuation of arsenic by the field geological media was investigated using batch and column experiments. The adsorption and desorption parameters were obtained for two drill core samples (GM1; 21.8~22.8 m and GM2; 26.0~27.8 m depth) recovered from the potentially water-conducting fracture-zones in the injection well. The effluent arsenic concentrations were monitored during the continuous flow of the mine drainage water through the columns packed with the core samples. GM2 removed about 60% of arsenic in the influent (0.1 mg-As/L) while GM1 removed about 20%. The results suggest that natural attenuation is an acitive process occurring during the MAR operation, potentially lowering the arsenic level in the mine drainage water below the regulatory standard for drinking water. This study hence demonstrates that using the mine drainage water as the recharge water source is a viable option at the MAR demonstration site.

Effects of magnetic ion exchange resin with PACI coagulation on removal of natural organic matter and MF fouling (자성체 이온교환 수지와 PACI 응집에 의한 국내 주요 수계 내 자연유기물 제거 특성 및 막오염 저감 효과)

  • Choi, Yang Hun;Jeong, Young Mi;Kim, Young Sam;Lee, Seung Ryul;Kweon, Ji Hyang;Kwon, Soon Buhm
    • Journal of Korean Society of Water and Wastewater
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    • v.22 no.1
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    • pp.131-140
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    • 2008
  • The application of magnetic ion exchange resin($MIEX^{(R)}$) is effective for natural organic matter(NOM) removal and for control of the formation of disinfection byproducts(DBPs). NOM removal is also enhanced by adding $MIEX^{(R)}$ with coagulant such as polyaluminium chloride(PACl) in conventional drinking water treatment systems. In the application of $MIEX^{(R)}$, it is important to understand changes of NOM characteristics such as hydrophobicity and molecular weight distributions with $MIEX^{(R)}$ or $MIEX^{(R)}$+coagulant treatment.To observe characteristics of NOM by treatment with $MIEX^{(R)}$ or $MIEX^{(R)}$+coagulant, four major drinking water sources were employed. Results showed that the addition of $MIEX^{(R)}$ to coagulation significantly reduced the amount of coagulant required for the optimum removal of dissolved organic matter(DOC) and turbidity in the all four waters. The DOC removal was also increased approximately 20%, compared to coagulant treatment alone. The process with $MIEX^{(R)}$ and coagulant showed that complementary removal of hydrophobic and hydrophilic fraction of DOC. The combined processes preferentially removed the fractions of intermediate (3,000-10,000 Da) and low (< 500 Da) molecular weight. The microfiltration test showed that membrane cake resistance was decreased for waters with flocs from $MIEX^{(R)}$+coagulant. A porous layer was formed to $MIEX^{(R)}$ on the membrane surface and the layer consequently inhibited settling of coagulant flocs, which could act on a foulant.

Bed Change Analysis for the Upstream Channel of the Hantan River Flood Control Dam Using the Hec-6 Model (HEC-6 모형을 이용한 한탄강 홍수조절댐 상류의 하상변동 분석)

  • Han, Seung-Won;Lim, Jong-Chul;Ji, Un;Yeo, Woon-Kwang
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.740-746
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    • 2009
  • 자연 상태의 하천의 하상은 흐름에 의해 끊임없이 변하지만 기록적인 홍수 등 특별한 자연 현상이 없는 한 유사이송에 평형을 이룬 상태라 할 수 있다. 하지만 유역 토지이용의 변화와 골재 채취, 댐과 저수지의 건설 등과 같은 인위적인 요인들은 하천의 평형 상태를 파괴하고 유사이송문제 및 하상변화 등과 같은 문제점을 야기 시킨다. 따라서 홍수피해를 경감시키고 홍수조절을 목적으로 계획하는 홍수조절댐의 경우 홍수 발생 기간 외에는 상류와 하류 하천 간의 흐름 차단을 최대한 억제하고 상류로부터 유입되는 유사가 댐 상류부에 퇴적되는 것을 방지하기 위해 댐에 상시 개방되어 있는 배사관과 생태통로를 설치하도록 계획되기도 한다. 국내에서는 임진강 유역에서 홍수피해 저감을 위한 한탄강댐의 건설이 계획되었으며 유사이송문제와 생태환경 문제를 고려하여 배사관과 생태통로를 설치하도록 설계하였다. 본 연구에서는 1차원 HEC-6모형을 이용하여 대상 유역인 한탄강 홍수조절댐 상류하천에 대해 댐 건설 전과 후의 수위변화 및 하상변동 모의를 수행하였으며 지속 기간별 평수량과 연평균유량에 대한 장기하상변동을 분석하였다. 또한 과거유량수문자료를 이용하여 산출된 1년 동안의 대표 유량수문곡선을 HEC-6 모의에 적용하여 유량변화가 연속적으로 발생했을 경우의 하상변화를 1년과 100년 기간에 대해 각각 분석하였다. 그 결과 지속 기간이 길어짐에 따라 상류 7.8 km에서는 퇴적과 침식 작용이 활발히 일어남을 알 수 있었다. 하지만 댐 건설 전과 후의 하상 변화의 차이가 크지 않았다. 또한 연평균 유량 조건을 복합적으로 적용했을 때가 지속적인 연평균유량을 적용했을 때보다 하상변화가 더 크게 발생하였다.

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