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      • KCI등재

        고빈도 DO 및 수온 센서 자료를 이용한 대청호 생태계 신진대사 산정

        김성진 ( Sung-jin Kim ),정세웅 ( Se-woong Chung ),박형석 ( Hyungseok Park ),오정국 ( Jungkuk Oh ),박대연 ( Daeyeon Park ) 한국물환경학회(구 한국수질보전학회) 2018 한국물환경학회지 Vol.34 No.6

        The lakes’ metabolism bears important information for the assessment of the carbon budget due to the accumulation or loss of carbon in the lake as well as the dynamics of the food webs through primary production. A lake-scale metabolism is evaluated by Gross Primary Production (GPP), Ecosystem Respiration (R), and Net Ecosystem Production (NEP), which is the difference between the first two values. Methods for estimating GPP and R are based on the levels carbon and oxygen. Estimation of carbon is expensive because of the use of radioactive materials which requires a high degree of proficiency. The purpose of this study was to estimate Lake Daecheong ecosystem metabolism using high frequency water temperature data and DO measurement sensor, widely utilized in the field of water quality monitoring, and to evaluate the possibility of using the application method. High frequency data was collected at intervals of 10 minutes from September to December 2017 by installing a thermistor chain and a DO sensor in downstream of Daechung Dam. The data was then used to estimate GPP, R and NEP using the R public program LakeMetabolizer, and other metabolism models (mle, ols, kalman, bookkeep). Calculations of gas exchange coefficient methods (cole, crusius, heiskanen, macIntyre, read, soloviev, vachon) were compared. According to the result, Lake Daecheong has some deviation based on the application method, but it was generally estimated that the NEP value is negative and acts as a source of atmospheric carbon in a heterotrophic system. Although the high frequency sensor data used in this study had negative and positive GPP and R values during the physical mixing process, they can be used to monitor real-time metabolic changes in the ecosystem if these problems are solved.

      • Carbon and nitrogen dynamics in a <i>Pinus densiflora</i> forest with low and high stand densities

        Noh, Nam Jin,Kim, Choonsig,Bae, Sang Won,Lee, Woo Kyun,Yoon, Tae Kyung,Muraoka, Hiroyuki,Son, Yowhan Oxford University Press 2013 Journal of plant ecology Vol.6 No.5

        <P><B>Aims</B></P><P>Understanding carbon (C) and nitrogen (N) dynamics and their dependence on the stand density of an even-aged, mature forest provides knowledge that is important for forest management. This study investigated the differences in ecosystem total C and N storage and flux between a low-density stand (LD) and a high-density stand (HD) and examined the effects of stand density on aboveground net primary productivity (ANPP), total belowground C allocation (TBCA) and net ecosystem production (NEP) in a naturally regenerated, 65- to 75-year-old <I>Pinus densiflora</I> S. et Z. forest.</P><P><B>Methods</B></P><P>LD (450 trees ha<SUP>−1</SUP>) and HD (842 trees ha<SUP>−1</SUP>) were established in an even-aged, mature <I>P. densiflora</I> forest in September 2006. The forest had been naturally regenerated following harvesting, and the stand density was naturally maintained without any artificial management such as thinning. The diameter at breast height (DBH ≥ 5.0cm) of all live stems within the stands was measured yearly from 2007 to 2011. To compare C and N storage and fluxes in LD and HD, C and N pools in aboveground and belowground biomass, the forest floor, coarse woody debris (CWD) and soil; soil CO<SUB>2</SUB> efflux (<I>R</I> <SUB>S</SUB>); autotrophic respiration (<I>R</I> <SUB>A</SUB>); litter production; and soil N availability were measured. Further, ANPP, TBCA and NEP were estimated from plot-based measurement data.</P><P><B>Important Findings</B></P><P>Ecosystem C (Mg C ha<SUP>−1</SUP>) and N (Mg N ha<SUP>−1</SUP>) storage was, respectively, 173.0±7.3 (mean ± SE) and 4.69±0.30 for LD and 162±11.8 and 4.08±0.18 for HD. There were no significant differences in C and N storage in the ecosystem components, except for soils, between the two stands. In contrast, there were significant differences in aboveground ANPP and TBCA between the two stands (<I>P</I> < 0.05). Litterfall, biomass increment and <I>R</I> <SUB>S</SUB> were major C flux components with values of, respectively, 3.89, 3.74 and 9.07 Mg C ha<SUP>−1</SUP> year<SUP>−1</SUP> in LD and 3.15, 2.94 and 7.06 Mg C ha<SUP>−1</SUP> year<SUP>−1</SUP> in HD. Biometric-based NEP (Mg C ha<SUP>−1</SUP> year<SUP>−1</SUP>) was 4.18 in LD and 5.50 in HD. Although the even-aged, mature <I>P. densiflora</I> forest had similar C and N allocation patterns, it showed different C and N dynamics depending on stand density. The results of the current study will be useful for elucidating the effects of stand density on C and N storage and fluxes, which are important issues in managing natural mature forest ecosystems.</P>

      • KCI등재

        과정기반 모형을 활용한 산림의 순일차생산성 평가: 남북한 소나무 및 참나무 임분을 중심으로

        송철호,최현아,손지원,고영진,Stephan A. Pietsch,이우균 한국환경생물학회 2023 환경생물 : 환경생물학회지 Vol.41 No.4

        본 연구에서는 과정기반 생지화학모형 중 하나인 BGCMAN (Biogeochemistry Management) 모형을 남북한에 적용하여 산림생태계의 생산성을 나타내는 지표인 순일차생산성 (Net Primary Productivity, NPP)을 평가하였다. 기상자료의 경우에는 우리나라 기상청 기후정보포털의 실측 및 동아시아 시나리오 자료를 병행하여 활용하였다. 식생정보로는 소나무 (Pinus densiflora) 및 참나무 (Quercus spp.) 임분을 대상으로 우리나라의 광릉 및 설마천 유역과 북한 내 양묘장이 있는 것으로 알려져 있는 사리원, 서흥, 해주, 정주, 원산을 대상지로 선정하였다. 생물리적 정보 중 경위도, 고도, 사면 방향 등의 지형정보는 SRTM (Shuttle Radar Topography Mission)의 수치표고모델을 활용하였으며, 토양정보 등의 경우에는 HWSD (Harmonized World Soil Database)의 정보를 활용하였다. 관리 요인의 경우에는 1950년의 한국전쟁으로 인한 남북한 산림파괴와 이후 산림의 재조림 과정을 고려하였다. 1991년부터 2100년까지 모의된 NPP의 전체 평균 값은 5.17 Mg C ha-1이었으며, 범위는 3.30~8.19Mg C ha-1로 도출되었다. 또한 기후 시나리오의 변동성이 커짐에 따라서 산림 생산성의 교란이 커졌으며, 소나무 임분의 생장 둔화가 두드러지게 나타났다. 기후변화에 따라 생태계 과정기반 모형의 중요성이 커지는 시점에서 BGC-MAN 모형의 한반도 적용성이 검토되었다. 본 연구의 제한된 자료를 통해서 기후변화에 대한 교란이 산림생태계에 미치는 여러 요인들이 분석된 만큼, 향후 모델링 방법의 보완을 통해 보다 한반도 전역의 정밀한 생태계 변화를 과정기반 모형을 통해 모의할 수 있도록 해야 할 것이다. In this study, the biogeochemistry management (BGC-MAN) model was applied to North and South Korea pine and oak forest stands to evaluate the Net Primary Productivity (NPP), an indicator of forest ecosystem productivity. For meteorological information, historical records and East Asian climate scenario data of Shared Socioeconomic Pathways (SSPs) were used. For vegetation information, pine (Pinus densiflora) and oak (Quercus spp.) forest stands were selected at the Gwangneung and Seolmacheon in South Korea and Sariwon, Sohung, Haeju, Jongju, and Wonsan, which are known to have tree nurseries in North Korea. Among the biophysical information, we used the elevation model for topographic data such as longitude, altitude, and slope direction, and the global soil database for soil data. For management factors, we considered the destruction of forests in North and South Korea due to the Korean War in 1950 and the subsequent reforestation process. The overall mean value of simulated NPP from 1991 to 2100 was 5.17 Mg C ha-1, with a range of 3.30-8.19 Mg C ha-1. In addition, increased variability in climate scenarios resulted in variations in forest productivity, with a notable decline in the growth of pine forests. The applicability of the BGC-MAN model to the Korean Peninsula was examined at a time when the ecosystem process-based models were becoming increasingly important due to climate change. In this study, the data on the effects of climate change disturbances on forest ecosystems that was analyzed was limited; therefore, future modeling methods should be improved to simulate more precise ecosystem changes across the Korean Peninsula through process-based models.

      • KCI등재

        Budget and distribution of organic carbon in Quercus serrata Thunb. ex Murray forest in Mt. Worak

        이승혁,장래하,조규태,유영한 한국생태학회 2015 Journal of Ecology and Environment Vol.38 No.4

        The carbon cycle came into the spotlight due to the climate change and forests are well-known for their capacity to store carbon amongst other terrestrial ecosystems. The annual organic carbon of litter production, forest floor litter layer, soil, aboveground and belowground part of plant, standing biomass, net primary production, uptake of organic carbon, soil respiration, etc. were measured in Mt. Worak in order to understand the production and carbon budget of Quercus serrata forest that are widely spread in the central and southern part of the Korean Peninsula. The total amount of organic carbon of Q. serrata forest during the study period (2010-2013) was 130.745 ton C ha-1. The aboveground part of plant, belowground part of plant, forest floor litter layer, and organic carbon in soil was 50.041, 12.510, 4.075, and 64.119 ton C ha-1, respectively. The total average of carbon fixation in plants from photosynthesis was 4.935 ton C ha-1 yr-1 and organic carbon released from soil respiration to microbial respiration was 3.972 ton C ha-1 yr-1. As a result, the net ecosystem production of Q. serrata forest estimated from carbon fixation and soil respiration was 0.963 ton C ha-1 yr-1. Therefore, it seems that Q. serrata forest can act as a sink that absorbs carbon from the atmosphere. The carbon uptake of Q. serrata forest was highest in stem of the plant and the research site had young forest which had many trees with small diameter at breast height (DBH). Consequentially, it seems that active matter production and vigorous carbon dioxide assimilation occurred in Q. serrata forest and these results have proven to be effective for Q. serrata forest to play a role as carbon storage and NEP. carbon of Q. serrata forest during the study period (2010-2013) was 130.745 ton C ha-1. The aboveground part of plant, belowground part of plant, forest floor litter layer, and organic carbon in soil was 50.041, 12.510, 4.075, and 64.119 ton C ha-1, respectively. The total average of carbon fixation in plants from photosynthesis was 4.935 ton C ha-1 yr-1 and organic carbon released from soil respiration to microbial respiration was 3.972 ton C ha-1 yr-1. As a result, the net ecosystem production of Q. serrata forest estimated from carbon fixation and soil respiration was 0.963 ton C ha-1 yr-1. Therefore, it seems that Q. serrata forest can act as a sink that absorbs carbon from the atmosphere. The carbon uptake of Q. serrata forest was highest in stem of the plant and the research site had young forest which had many trees with small diameter at breast height (DBH). Consequentially, it seems that active matter production and vigorous carbon dioxide assimilation occurred in Q. serrata forest and these results have proven to be effective for Q. serrata forest to play a role as carbon storage and NEP.

      • SCOPUSKCI등재

        Budget and distribution of organic carbon in Quercus serrata Thunb. ex Murray forest in Mt. Worak

        Lee, Seung-Hyuk,Jang, Rae-Ha,Cho, Kyu-Tae,You, Young-Han The Ecological Society of Korea 2015 Journal of Ecology and Environment Vol.38 No.4

        The carbon cycle came into the spotlight due to the climate change and forests are well-known for their capacity to store carbon amongst other terrestrial ecosystems. The annual organic carbon of litter production, forest floor litter layer, soil, aboveground and belowground part of plant, standing biomass, net primary production, uptake of organic carbon, soil respiration, etc. were measured in Mt. Worak in order to understand the production and carbon budget of Quercus serrata forest that are widely spread in the central and southern part of the Korean Peninsula. The total amount of organic carbon of Q. serrata forest during the study period (2010-2013) was 130.745 ton C ha<sup>-1</sup>. The aboveground part of plant, belowground part of plant, forest floor litter layer, and organic carbon in soil was 50.041, 12.510, 4.075, and 64.119 ton C ha<sup>-1</sup>, respectively. The total average of carbon fixation in plants from photosynthesis was 4.935 ton C ha<sup>-1</sup> yr<sup>-1</sup> and organic carbon released from soil respiration to microbial respiration was 3.972 ton C ha<sup>-1</sup> yr<sup>-1</sup>. As a result, the net ecosystem production of Q. serrata forest estimated from carbon fixation and soil respiration was 0.963 ton C ha<sup>-1</sup> yr<sup>-1</sup>. Therefore, it seems that Q. serrata forest can act as a sink that absorbs carbon from the atmosphere. The carbon uptake of Q. serrata forest was highest in stem of the plant and the research site had young forest which had many trees with small diameter at breast height (DBH). Consequentially, it seems that active matter production and vigorous carbon dioxide assimilation occurred in Q. serrata forest and these results have proven to be effective for Q. serrata forest to play a role as carbon storage and NEP.

      • KCI등재

        Net Ecosystem Productivity Determined by Continuous Measurement Using Automatic Sliding Canopy Chamber

        Gun-Yeob Kim,Seul-Bi Lee,Jong-Sik Lee,Eun-Jung Choi 한국토양비료학회 2012 한국토양비료학회지 Vol.45 No.6

        For better understanding of carbon cycle dynamics of an agro-ecosystem, an accurate assessment of seasonal and daily CO<sub>2</sub> flux is essential to understand the relationship between various environmental factors and crop productivity. We developed the automatic sliding canopy chamber (ASCC) system that measured continuous net ecosystem productivity (NEP) over whole growing season under the natural meteorological rhythm. The ASCC was composed of two main parts which were sliding part for measuring NEP, and automatic opening and closing chamber (AOCC) for measuring soil respiration (SR) on the soil surface. The ASCC was developed by using open flow method for measuring soil CO<sub>2</sub> efflux. The disturbance of natural meteorological condition was minimized by opening the base frames. In the field test with barley (Hordeum vulgare L.), NEP was calculated at 140 mg CO<sub>2</sub> m<sup>-2</sup> h<sup>-1</sup> on a clear day using continuous data and eliminated the possibility of overestimate about 16% using one hour data during the day time. Unlike other small scale chamber system, installation on cropping-field made it possible to take any modifications which might be caused by natural environmental condition.

      • KCI등재

        Net Ecosystem Productivity Determined by Continuous Measurement Using Automatic Sliding Canopy Chamber

        Kim, Gun-Yeob,Lee, Seul-Bi,Lee, Jong-Sik,Choi, Eun-Jung Korean Society of Soil Science and Fertilizer 2012 한국토양비료학회지 Vol.45 No.6

        For better understanding of carbon cycle dynamics of an agro-ecosystem, an accurate assessment of seasonal and daily $CO_2$ flux is essential to understand the relationship between various environmental factors and crop productivity. We developed the automatic sliding canopy chamber (ASCC) system that measured continuous net ecosystem productivity (NEP) over whole growing season under the natural meteorological rhythm. The ASCC was composed of two main parts which were sliding part for measuring NEP, and automatic opening and closing chamber (AOCC) for measuring soil respiration (SR) on the soil surface. The ASCC was developed by using open flow method for measuring soil $CO_2$ efflux. The disturbance of natural meteorological condition was minimized by opening the base frames. In the field test with barley (Hordeum vulgare L.), NEP was calculated at $140mg\;CO_2\;m^{-2}h^{-1}$ on a clear day using continuous data and eliminated the possibility of overestimate about 16% using one hour data during the day time. Unlike other small scale chamber system, installation on cropping-field made it possible to take any modifications which might be caused by natural environmental condition.

      • KCI등재

        Net Ecosystem Productivity Determined by Continuous Measurement Using Automatic Sliding Canopy Chamber

        김건엽,이슬비,이종식,최은정 한국토양비료학회 2012 한국토양비료학회지 Vol.45 No.6

        For better understanding of carbon cycle dynamics of an agro-ecosystem, an accurate assessment of seasonal and daily CO2 flux is essential to understand the relationship between various environmental factors and crop productivity. We developed the automatic sliding canopy chamber (ASCC) system that measured continuous net ecosystem productivity (NEP) over whole growing season under the natural meteorological rhythm. The ASCC was composed of two main parts which were sliding part for measuring NEP, and automatic opening and closing chamber (AOCC) for measuring soil respiration (SR) on the soil surface. The ASCC was developed by using open flow method for measuring soil CO2 efflux. The disturbance of natural meteorological condition was minimized by opening the base frames. In the field test with barley (Hordeum vulgare L.), NEP was calculated at 140 mg CO2 m-2 h-1 on a clear day using continuous data and eliminated the possibility of overestimate about 16% using one hour data during the day time. Unlike other small scale chamber system,installation on cropping-field made it possible to take any modifications which might be caused by natural environmental condition.

      • SCOPUSKCI등재

        Assessment of absorption ability of air pollutant on forest in Gongju-city

        Eom, Ji-Young,Jeong, Seok-Hee,Lee, Jae-Seok The Ecological Society of Korea 2017 Journal of Ecology and Environment Vol.41 No.12

        Background: Some researchers have attempted to evaluate the ecological function of various additional services, away from the main point of view on the timber production of Korean forests. However, basic data, evaluation models, or studies on the absorption of air pollutants related to major plant communities in Korea are very rare. Therefore, we evaluated the functional value of the forest ecosystem in Gongju-city. Plantation manual for air purification, supplied from the Ministry of Environment in Japan, was referred to process and method for assessment of air pollutant absorption. Results: Gross primary production was calculated about average 18.2 t/ha/year. It was a relatively low value in forests mixed with deciduous broad and evergreen coniferous compared to pure coniferous forest. Net primary production was the highest value in deciduous coniferous and was the lowest value in mixed forest with deciduous broad and evergreen broad. And the mean sequestration amount of each air pollutant per unit area per year assessed from gross primary production and concentration of gas was the highest with 75.81 kg/ha/year in $O_3$ and was 16.87 and 6.04 kg/ha/year in $NO_2$ and $SO_2$, respectively. In addition, total amounts of $CO_2$ absorption and $O_2$ production were 716,045 t $CO_2$/year and 520,760 t $O_2$/year in all forest vegetation in Gongju-city. Conclusions: In this study, we evaluated the absorption ability of air pollutant in 2014 on forest in Gongju-city area. Gongju-city has the broad mountain area about 70.3%, and area of deciduous broad leaves forest was established the broadest with 47.4% of genus Quercus. Pg was calculated about average 18.2 t/ha/year. The mean sequestration amount of each air pollutant per unit area per year assessed from Pg and $C_{gas}$ was the highest with 75.81 kg/ha/year in $O_3$ and were 16.87 and 6.04 kg/ha/year in $NO_2$ and $SO_2$, respectively. Absorption rates of $O_3$, $NO_2$, and $SO_2$ were the highest in evergreen coniferous forest about $14.87kgO_3/ha/year$, $3.30kgNO_2/ha/year$, $1.18kgSO_2/ha/year$, and the lowest were $5.95kgO_3/ha/year$, $1.32kgNO_2/ha/year$, and $0.47kgSO_2/ha/year$ in deciduous broad forest. In conclusion, it was evaluated that Japanese model is suitable for estimating air pollutants in Japan to Korean vegetation. However, in Korea, there is a very limited basic data needed to assess the ability of forests to absorption of air pollutants. In this study, the accuracy of a calculated value is not high because the basic data of trees with similar life form are used in evaluation.

      • KCI등재

        Assessment of absorption ability of air pollutant on forest in Gongju-city

        엄지영,정석희,이재석 한국생태학회 2017 Journal of Ecology and Environment Vol.41 No.12

        Background: Some researchers have attempted to evaluate the ecological function of various additional services, away from the main point of view on the timber production of Korean forests. However, basic data, evaluation models, or studies on the absorption of air pollutants related to major plant communities in Korea are very rare. Therefore, we evaluated the functional value of the forest ecosystem in Gongju-city. Plantation manual for air purification, supplied from the Ministry of Environment in Japan, was referred to process and method for assessment of air pollutant absorption. Results: Gross primary production was calculated about average 18.2 t/ha/year. It was a relatively low value in forests mixed with deciduous broad and evergreen coniferous compared to pure coniferous forest. Net primary production was the highest value in deciduous coniferous and was the lowest value in mixed forest with deciduous broad and evergreen broad. And the mean sequestration amount of each air pollutant per unit area per year assessed from gross primary production and concentration of gas was the highest with 75.81 kg/ha/year in O3 and was 16.87 and 6.04 kg/ ha/year in NO2 and SO2, respectively. In addition, total amounts of CO2 absorption and O2 production were 716,045 t CO2/year and 520,760 t O2/year in all forest vegetation in Gongju-city. Conclusions: In this study, we evaluated the absorption ability of air pollutant in 2014 on forest in Gongju-city area. Gongju-city has the broad mountain area about 70.3%, and area of deciduous broad leaves forest was established the broadest with 47.4% of genus Quercus. Pg was calculated about average 18.2 t/ha/year. The mean sequestration amount of each air pollutant per unit area per year assessed from Pg and Cgas was the highest with 75.81 kg/ha/year in O3 and were 16.87 and 6.04 kg/ha/year in NO2 and SO2, respectively. Absorption rates of O3, NO2, and SO2 were the highest in evergreen coniferous forest about 14.87 kgO3/ha/year, 3.30 kgNO2/ha/year, 1.18 kgSO2/ha/year, and the lowest were 5. 95 kgO3/ha/year, 1.32 kgNO2/ha/year, and 0.47 kgSO2/ha/year in deciduous broad forest. In conclusion, it was evaluated that Japanese model is suitable for estimating air pollutants in Japan to Korean vegetation. However, in Korea, there is a very limited basic data needed to assess the ability of forests to absorption of air pollutants. In this study, the accuracy of a calculated value is not high because the basic data of trees with similar life form are used in evaluation.

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