• 제목/요약/키워드: soil ecosystem

검색결과 575건 처리시간 0.03초

우리나라의 환경문제 우선순위 도출 - 환경전문가를 중심으로 - (The Priority of Environmental Problems in Korea)

  • 신동천;임영욱;박종연;장은아;김진용;박성은;조성준
    • Environmental Analysis Health and Toxicology
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    • 제14권4호
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    • pp.165-174
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    • 1999
  • This study was conducted to analyze the priority of environmental problems in Korea by investigating the environmental professionals' perception. The delphi technique was applied to identify their risk perception towards some specific items related with pollution. A standardized questionnaire on environmental problems and their priorities was used to 74 subjects. In the questionnaire, the environmental problems were divided into the general ones,9 items, and the specific ones,30 items. Also, the perception was associated with two points of view which were the risk on general human health or ecosystem, and on the present situation in Korea. The priority of risk from general environmental problems on human health or ecosystem was analyzed in the order of 'water pollution', 'air pollution', 'soil contamination', 'waste', 'toxic chemical pollutants', 'food contamination', 'ocean contamination', 'odor pollution', and 'noise pollution'. The priority of risk on the present situation in Korea was analyzed in the order of 'water pollution','air pollution','waste','toxic chemical pollutants','food contamination','soil contamination','ocean contamination','odor pollution', and 'noise pollution'. And these priorities were significantly related with the characteristics of respondents such as sex, age, and major concerned area. However, for the first five priorities of risk from the specific environmental problems on human health or ecosystem, the environmental professionals agreed with 'automotive vehicle exhaust', 'domestic and industrial source pollutants to surface water', '$CO_2$nd g1oba1 warming effect','toxic air pollutant' and 'industrial source air pollution'. The priorities of risk on the present situation in Korea were similar to these results.

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국내의 생태복원기술 연구동향에 관한 사회네트워크분석 (Social Network Analysis on the Research Trend of Korean Ecological Restoration Technology)

  • 김보미;이동근
    • 한국환경복원기술학회지
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    • 제21권3호
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    • pp.67-81
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    • 2018
  • We tried to analyze qualitatively a total of 110 the research papers which were related domestic ecological restoration technologies about 15 years through semantic network analysis in social network analysis. In order to understand the research trends of ecological restoration technologies, we analyzed the degree centrality and betweenness centrality of the Stream/Wetland, Slope, Soil/Others fields selected as Word Cloud. As a result, ecological restoration technologies have been changed. They were focused on the restoration of species or their habitats in the past. However, they have been evolved into the detailed systems to respond in unpredictable natural disasters and climate change, high-resolution image implementation technology to accurately grasp the practical environment and methods related to environmental restoration for human in urban ecosystem. In the future, investment and technology for the ecosystem restoration field will be continuously demanded for the symbiosis of human beings and species in the damaged ecosystem. Therefore, the research trend of ecological restoration technologies should be provided as reliable guidelines when decision makers establish the policy direction or when researchers select their subjects.

Effect of micro-environment in ridge and southern slope on soil respiration in Quercus mongolica forest

  • Lee, Jae-Seok
    • Journal of Ecology and Environment
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    • 제42권4호
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    • pp.210-218
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    • 2018
  • Background: Soil respiration (Rs) is a major factor of the absorption and accumulation of carbon through photosynthesis in the ecosystem carbon cycle. This directly affects the amount of net ecosystem productivity, which affects the stability and sustainability of the ecosystem. Understanding the characteristics of Rs is indispensable to scientifically understand the carbon cycle of ecosystems. It is very important to study Rs characteristics through analysis of environmental factors closely related to Rs. Rs is affected by various environmental factors, such as temperature, precipitation, soil moisture, litter supply, organic matter content, dominant plant species, and soil disturbance. This study was conducted to analyze the effects of micro-topographical differences on Rs in forest vegetation by measuring the Rs on the ridge and southern slope sites of the broadly established Quercus mongolica forest in the central Korean area. Method: Rs, Ts, and soil moisture data were collected at the southern slope and ridge of the Q. mongolica forest in the Mt. Jeombong area in order to investigate the effects of topographical differences on Rs. Rs was collected by the closed chamber method, and data collection was performed from May 2011 to October 2013, except Winter seasons from November to April or May. For collecting the raw data of Rs in the field, acrylic collars were placed at the ridge and southern slope of the forest. The accumulated surface litter and the soil organic matter content (SOMC) were measured to a 5 cm depth. Based on these data, the Rs characteristics of the slope and ridge were analyzed. Results: Rs showed a distinct seasonal variation pattern in both the ridge and southern slope sites. In addition, Rs showed a distinct seasonal variation with high and low Ts changes. The average Rs measurements for the two sites, except for the Winter periods that were not measured, were $550.1\;mg\;CO_2m^{-2}h^{-1}$ at the ridge site and $289.4\;mg\;CO_2m^{-2}h^{-1}$ at the southern slope, a difference of 52.6%. There was no significant difference in the Rs difference between slopes except for the first half of 2013, and both sites showed a tendency to increase exponentially as Ts increased. In addition, although the correlation is low, the difference in Rs between sites tended to increase as Ts increased. SMC showed a large fluctuation at the southern slope site relative to the ridge site, as while it was very low in 2013, it was high in 2011 and 2012. The accumulated litter of the soil surface and the SOMC at the depth range of 0~5 cm were $874g\;m^{-2}$ and 23.3% at the ridge site, and $396g\;m^{-2}$ and 19.9% at the southern slope site. Conclusions: In this study, Rs was measured for the ridge and southern slope sites, which have two different results where the surface litter layer is disturbed by strong winds. The southern slope site shows that the litter layer formed in autumn due to strong winds almost disappeared, and while in the ridge site, it became thick due to the transfer of litter from the southern slope site. The mean Rs was about two times higher in the ridge site compared to that in the southern slope site. The Rs difference seems to be due to the difference in the amount of litter accumulated on the soil surface. As a result, the litter layer supplied to the soil surface is disturbed due to the micro-topographical difference, as the slope and the change of the community structure due to the plant season cause heterogeneity of the litter layer development, which in turn affects SMC and Rs. Therefore, it is necessary to introduce and understand these micro-topographical features and mechanisms when quantifying and analyzing the Rs of an ecosystem.

탈수소효소(脫水素酵素), 탈질균(脫窒菌) 및 황산환원균(黃酸還元菌)의 정량(定量)을 통(通)한 온산공단(溫山工團)과 마니산(摩尼山) 산림토양(山林土壤)의 동태(動態) 조사(調査) (Investigation on Forest Soil Dynamics at Onsan Industrial Estate and Mt. Mani by the Assay of Dehydrogenase Activity, Denitrifying and Sulfur-Reducing Bacteria)

  • 박현
    • 한국산림과학회지
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    • 제87권1호
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    • pp.106-112
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    • 1998
  • 본 연구는 토양의 화학적 특성과 탈질소, 황 환원에 관여하는 세균류 및 탈수소효소 활성의 관계를 살펴보고, 궁극적으로는 산림 토양생태계의 동태를 평가하는 도구로 탈수소효소를 활용할 수 있는지에 대하여 고찰한 것이다. 오염지역으로 여겨지는 온산공단 주변과 해안의 청정지역인 강화도 마니산에서 각각 침엽수림과 활엽수림을 산정, 총 4개 임분을 대상으로 본 연구를 수행하였는데, 마니산 토양은 온산공단 주변에 비하여 상대적으로 유기물, 질소, 유효인산 등의 함량이 높아 미생물의 활동에 유리한 것으로 여겨졌다. 한편, 탈질균이나 황산환원균은 지역간 차이가 없었던 반면, 탈수소효소의 활성은 지역이나 시기에 따른 변화를 뚜렷이 나타내어 두 종류의 미생물 정량기법에 비하여 훨씬 민감하게 나타났다. 또한, 탈수소효소는 미생물의 활성과 깊은 관계가 있는 것으로 여겨지는 유기물함량(r=0.53. p=0.004), 전질소(r=0.41. p=0.008)나 C/Ava. P 비율(r=-0.52. p=0.001) 등과 비교적 높은 상관관계를 나타내었다. 따라서, 비슷한 토성을 지녀야 비교가 가능하다는 다른 연구자들의 지적을 감안하여 수행한다면, 토양생태계의 동태를 파악하는 지표로서 탈수소효소를 활용할 수 있을 것으로 여겨진다.

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이화령 및 육십령 백두대간 생태축 복원사업지 토양 박테리아 군집 분석 (Analysis of Soil Bacterial Community in Ihwaryeong and Yuksimnyeong Restoration Project Sites Linking the Ridgeline of Baekdudaegan)

  • 박영대;권태호;어수형
    • 농업생명과학연구
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    • 제50권1호
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    • pp.117-124
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    • 2016
  • 토양 미생물 군집은 외부 환경변화에 있어 식물 군집보다 더 빨리 반응할 수 있다는 점에서 복원 과정의 초기 지표로 활용될 수 있다. 이런 측면에서 인위적인 교란에 대한 생태계 반응을 측정하고 생태계 복원의 지표를 제공하는 토양 미생물 군집 연구가 증가하고 있는 추세이다. 본 연구는 2012년과 2013년 준공된 이화령과 육십령 백두대간 생태축 복원사업지와 주변 임분에서 각각 토양을 채취하여 16S rRNA 파이로시퀀싱 기법을 이용하여 토양 박테리아 군집을 분석하였다. 문(Phylum) 수준에서의 박테리아 다양성은 이화령이 평균 29.3, 육십령이 평균 32.3으로 나왔고 복원사업지와 주변 임분은 통계적으로 유의한 차이를 보였으나(p<0.01), 지리적 위치(이화령과 육십령 비교)나 토심(0~15cm, 16~30cm 비교)에 따른 유의한 영향은 나타나지 않았다. 검색된 토양 박테리아 중에서 Acidobacteria(37.3%)와 Proteobacteria(31.1%)가 가장 우점적으로 분포하는 것으로 나타났으며, 복원한 토양과 주변 임분에서 이 두 문의 박테리아 다양성 양상은 서로 상반되었다. 즉, 인공적으로 복원된 토양에서는 Proteobacteria가 높은 비율로 나타났고(38.1%, 인근 산림토양에서는 24.2%), 주변 임분에서는 Acidobacteria가 다양한 것으로 나타났다(55.4%, 복원 사업지는 19.2%). 이러한 경향은 토양의 영양상태에 따라 선호하는 박테리아 종류가 다르다는 기존의 연구 결과와 유사하였으며, 특히 Acidobacteria는 산성토양을 선호하는 등 토양산도와 밀접한 연관이 있을 것으로 생각된다. 따라서, 토양 박테리아 군집 특성은 연구지 위치나 토심에 따른 영향보다는 토양복원에 따른 영향이 더 크게 나타났고 이는 향후 토양복원의 성공여부를 정량적으로 모니터링하는데 활용될 수 있을 것으로 기대한다.

Deriving Ecological Protective Concentration of Cadmium for Korean Soil Environment

  • Lee, Woo-Mi;Nam, Sun-Hwa;An, Youn-Joo
    • Environmental Engineering Research
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    • 제18권4호
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    • pp.241-246
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    • 2013
  • For effective and efficient environmental management, developed countries, such as the Netherlands, UK, Australia, Canada, and United States apply ecological risk assessment, and they have an autonomous risk assessment methodology to protect native receptors. In this study, soil ecological protective concentration (EPC) of cadmium in Korea was derived using Korean ecological risk assessment methodology. The soil EPC of cadmium was calculated using probabilistic ecological risk assessment based on species sensitivity distribution. The soil EPC was calculated according to land use for residential/agricultural and industrial/commercial purposes. The chronic soil EPCs for residential/agricultural and industrial/commercial lands were derived to be 1.58 and 9.60 mg/kg, respectively. These values were similar to soil EPC of European Commission, the Netherlands, UK, and Canada. However, these values were lower than the established Korean soil standard, because the current soil standard was based on human risk. Therefore, the impact on an ecosystem when establishing environmental standard should be considered.

배 재배지의 탄소수지 산정에 관한 연구 (The Study on Carbon Budget Assessment in Pear Orchard)

  • 서상욱;최은정;정현철;이종식;김건엽;이재석;소규호
    • 환경생물
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    • 제33권3호
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    • pp.345-351
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    • 2015
  • 본 연구는 IPCC (2006)의 농업분야 온실가스 배출권 측정의 새로운 지침에 의거하여 과수와 토양, 대기 간의 탄소수지 산정 방법론을 제시하고자 전남 나주시의 배 재배농가를 대상으로 토양 호흡량과 초본류, 그리고 과수의 생태계 순생산량을 측정하였다. 토양 호흡량 및 초본류 생태계 순생산량은 Closed Dynamic Chamber (CDC) 방법으로 측정하였고, 배 과수의 생태계 순생산량은 EddyPro 5.2.1 프로그램을 이용하여 공분산법으로 측정하였다. 배 과수원의 토양 호흡량으로 연간 $429.1mgCO_2m^{-2}h^{-1}$이 배출되었으며, 토양온도민감도 ($Q_{10}$)는 2.3으로 나타났다. 초본류의 경우 측정기간 동안 호흡이 광합성보다 우세하게 나타났다. 2015년 6월 20일부터 24일까지 초본류의 광합성 또는 호흡을 통해 흡수 및 배출된 $CO_2$의 총합은 $156.1mgCO_2m^{-2}h^{-1}$으로 상대적으로 호흡이 더 많았던 것으로 나타났다. 배 과수의 광합성 또는 호흡에 의한 $CO_2$ 총합은 $-680.1mgCO_2m^{-2}h^{-1}$로 광합성에 의해 $CO_2$가 흡수되었다. 배 과원 단위의 토양 호흡량과 초본류 및 배 과수의 광합성 및 호흡량의 총합은 $-0.04tonCO_2ha^{-1}$$CO_2$의 흡수원이었다. 결론적으로 배 과원에서의 다양한 접근방법을 통한 향후 다년생 목본 작물 재배지에서의 탄소수지 산정 방법론 제시에 꼭 필요하다고 판단된다.

송이산 소나무림 생태계에서 엽면적지수와 생리적활동 및 토양수분의 변화 (Changes of Leaf Area Index, Physiological Activities and Soil Water in Tricholoma matsutake Producing Pine Forest Ecosystem)

  • 구창덕;가강현;박원철;박현;류성렬;박용우;김태헌
    • 한국산림과학회지
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    • 제96권4호
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    • pp.438-447
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    • 2007
  • 이 연구의 목적은 송이산 소나무림생태계의 구조와 기능, 그리고 토양 수분동태를 이해하는 것이다. 연구는 충북 괴산군 칠성면 속리산국립공원내 쌍곡의 송이산 소나무림에서, 생태계 구조에 속하는 식생구성 및 엽면적지수 그리고 기능에 속하는 광합성, 증산, 목부수분포텐셜과 토양수분변동을 측정분석하였다. 송이산의 수직적 구조로써 주요 상층식생은 소나무였고, 중층은 신갈나무, 하층은 진달래, 철쭉, 신갈나무, 쇠물푸레나무였다. 송이산의 엽면적지수는, 6월~9월에 3.8, 10월에 2.6, 11월~4월에는 2.1로 연중 변하였다. 수목들의 광합성은 8월말에 $6.0{\sim}7.0{\mu}mol\;CO_2/m^2/s$였으나, 10월 말경에는 소나무 $4.0{\mu}mol\;CO_2/m^2/s$, 신갈나무 $2.0{\mu}mol\;CO_2/m^2/s$, 철쭉은 마이너스 값이었고, 쇠물푸레나무는 낙엽되었다. 수목들의 증산량은 8월말경에 $2.5{\sim}3.5mmol\;H_2O/m^2/s$, 10월 중순경에는 약 $1.0 mmol\;H_2O/m^2/s$로 감소하였다. 신갈나무는 다른 활엽수보다 늦게까지 광합성과 증산작용을 하였다. 각 수종의 목부수분포텐셜은 소나무가 -10~ -22 bars, 진달래와 철쭉, 신갈나무, 쇠물푸레나무는 -5~-12 bars의 범위로 변화하였는데, 8월 말경이 -12 bars로 가장 낮았고, 10월 중순경에 -3 bars 정도였다. 송이산의 토양수분은 지형과 관련이 깊었다. 수분함량은 산능선부에서 7~11%, 중간인 산복에서 8~15%, 산록은 11~19%의 범위였다. 송이균환내부의 온도는 비균환보다 약 0.2~0.4 높은 경향이었고 송이원기 형성온도인 $19.0^{\circ}C$는 9월 중순경에 도달한 것으로 추정되었다. 송이균환의 수분은 비균환보다 약 0.5~2.0% 낮았다. 이것은 송이균환이 대사작용을 하면서 열이 발생하고 수분을 소비하고 있음을 나타낸다. 송이 발생에는 생태계의 구조와 기능이 복합적으로 관여하므로 이들의 관계에 대한 연구가 더욱 필요하다고 생각한다.

토양수분과 식생의 물 압박에 대한 생태수문학적 해석 : 추계학적 모형의 유도와 적용을 중심으로 (Ecohydrologic Analysis on Soil Water and Plant Water Stress : Focus on Derivation and Application of Stochastic Model)

  • 한수희;김상단
    • 한국물환경학회지
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    • 제24권1호
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    • pp.99-106
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    • 2008
  • With globally increasing interests in climate-soil-vegetation system, a new stochastic model of soil water and plant water stress is derived for better understanding of the soil water and plant water stress dynamics and their role in water-controlled ecosystem. The steady-state assumption is used for simplifying the equations. The derived model is simple yet realistic that it can account for the essential features of the system. The model represents the general characteristics of rainfall, soil, and vegetation; i.e. the soil moisture constitutes the decrease form of the steady-state and the plant water stress becomes increasing with the steady state when the rainfall is decreased. With this model, further deep study for the effects of soil water and plant water stress on the system will be accomplished.

Influence of carbonized crop residue on soil carbon storage in red pepper field

  • Lee, Jae-Ho;Eom, Ji-Young;Jeong, Seok-hee;Hong, Seung-Bum;Park, Eun-Jin;Lee, Jae-Seok
    • Journal of Ecology and Environment
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    • 제41권12호
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    • pp.336-344
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    • 2017
  • Background: Because of climate change, interest in the development of carbon pools has increased. In agricultural ecosystems, which can be more intensively managed than forests, measures to control carbon dioxide ($CO_2$) emission and absorption levels can be applied relatively easily. However, crop residues may be released into the atmosphere by decomposition or combustion. If we can develop scientific management techniques that enable these residues to be stocked on farmland, then it would be possible to convert farmlands from carbon emission sources to carbon pools. We analyzed and investigated soil respiration (Rs) rate characteristics according to input of carbonized residue of red peppers (Capsicum annuum L.), a widely grown crop in Korea, as a technique for increasing farmland carbon stock. Results: Rs rate in the carbonized biomass (CB) section was $226.7mg\;CO_2\;m^{-2}h^{-1}$, which was 18.1% lower than the $276.9mg\;CO_2\;m^{-2}h^{-1}$ from the red pepper residue biomass (RB) section. The Rs rate of the control was $184.1mg\;CO_2\;m^{-2}h^{-1}$. In the following year, Rs in the CB section was $204.0mg\;CO_2\;m{-2}h^{-1}$, which was 38.2% lower than the $330.1mg\;CO_2\;m^{-2}h^{-1}$ from the RB section; the control emitted $198.6mg\;CO_2\;m^{-2}h^{-1}$. Correlation between Rs and soil temperature ((Ts) at a depth of 5 cm) was $R^2=0.51$ in the RB section, which was higher than the other experimental sections. A comparison of annual decomposition rates between RB and CB showed a large difference, 41.4 and 9.7%, respectively. The results showed that carbonization of red pepper residues reduced the rates of decomposition and Rs. Conclusions: The present study confirmed that the Rs rate can be reduced by carbonization of residue biomass and putting it in the soil and that the Rs rate and Ts (5 cm) were positively correlated. Based on the results, it was determined that approximately $1.2t\;C\;ha^{-1}$ were sequestered in the soil in the first year and $3.0t\;C\;ha^{-1}$ were stored the following year. Therefore, approximately $1.5t\;C\;ha^{-1}year^{-1}$ are expected to be stocked in the soil, making it possible to develop farmlands into carbon pools.