• Title/Summary/Keyword: Soil Temperature

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Closed chamber를 이용한 토양 N2O 배출량과 주요 토양 인자들과의 상관성 (The Relevance of Soil N2O Emissions Measured by a Closed Chamber Technique on the Physico-chemical Soil Parameters)

  • 김득수;오진만
    • 한국대기환경학회지
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    • 제20권6호
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    • pp.749-758
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    • 2004
  • Nitrous oxide ($N_2$O) has been known as an important trace gas due to the greenhouse gas and the major source of stratospheric oxide of nitrogen (NO). Soil is the major source of $N_2$O in nature. The physicochemical characteristics of soils affect the emission of $N_2$O from soil. These physicochemical parameters are soil moisture, soil temperature, and soil N content. Since these parameters are correlated to the flux of $N_2$O from soil individually and compositely, there still remain many unknowns in the mechanism to produce $N_2$O in soil and the roles of such physicochemical parameters which affect the soil $N_2$O emission. Soil $N_2$O fluxes were measured at different levels in water filled pore space (WFPS), soil temperature and soil N contents from the same amounts of soils which were sampled from agriculturally managed upland field in a depth of ~30 cm at Kunsan. The soil $N_2$O flux measurements were conducted in a laboratory with a closed flux chamber system. The optimum soil moisture and soil temperature were observed at 60% of WFPS and ~13$^{\circ}C$. The soil $N_2$O flux increased as soil N contents increases during the whole experimental hours (up to 48 hours). However, average $N_2$O flux decreased after ~30 hours when organic carbon was mixed with nitrogen in the sample soils. It is suggested that organic carbon could be important for the emission of $N_2$O, and that the ratio of N to C needs to be identified in the process of $N_2$O soil emission.

Possibility of Climate Change and Simulation of Soil Moisture Content on Mt. Hallasan National Park, Chejudo Island, Korea

  • Kim, Eun-Shik;Kim, Young-Sun
    • The Korean Journal of Ecology
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    • 제23권2호
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    • pp.117-123
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    • 2000
  • Changing patterns and the possibility of climate change in the area of Cheiudo island, the southernmost Island in Korea, were analyzed using daily temperature and Precipitation data observed at the Cheiu Regional Meteorological Office from May 1923 to December 1998. A hydrologic simulation model "BROOK" was used to simulate and analyze the dynamics of daily soil moisture content and soil moisture deficit by applying the daily weather data. During the period, significantly increasing pattern was observed in temperature data of both annual and monthly basis, while no significantly changing pattern was observed in precipitation data. During the last 76 years. mean annual temperature was observed to have risen about 1.4$^{\circ}C$, which may show the Possibility of the initiation of climate change on the island whose validity should be tested in future studies after long-term studies on temperature. Based on the simulation, due to increased temperature, significant increase was predicted in evapotranspiration. while no significant decrease was detected in simulated soil moisture content during the period. Changing pattern of annual soil moisture content was markedly different from those of precipitation. In some dominant trees, negative effects of the drought of the late season for the previous year were shown to be statistically significant to radial growth of the tree for the current year. As annual variation of radial growth of trees is mainly affected by the soil moisture content. the information on the dynamics of soil moisture deficit possibly provides us with useful information for the interpretation of tree growth decline on the mountain. mountain.

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강원도지역의 토양 동결심 및 상록식물의 함수량 추이에 관한 연구 (2) (Studies on the Soil Freezing Depth and Change of Moisture contents in evergreen Plants upon subzero Temperature in Kangwon area.(2))

  • 홍종운;허범양;원경열;임병춘;이기철;하상건
    • 아시안잔디학회지
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    • 제4권1호
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    • pp.49-55
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    • 1990
  • Experiments were conducted to investigate the relationships between the soil freezing depth and the accumulated degree-day of temperature below $0^{\circ}C$ at 17 locations during 1989-1990 winter season in kangwon province. The observed results are as follows : 1.When accumulated degree-day of temperature below at was 141t at late January soil freezing depth of sunny place was 46.5cm, that of shaded lot was 59 cm, and that of marginal place sunny or shaded area was 55cm, in Chun cheon. 2.Accumulated degree-day of temperature below at of Dae gwangryong area was more than that of Un-du, whereas soil freezing depth of Dae gwangryong was lower that of Un-du. It was considered that snow covering worked as heat insulator. 3.Soil freezing depth of vinyl mulching on Zoysia turf was less by around 2Ocm than that of non-vinyl mulching. Rice hulls covering of 4Ocm showed the great heat insulation effects with the soil freezing depth of 1.5cm at sunny place and 6.5cm at shaded lot compared to that of 47cm at sunny and 59.5 cm at shaded place bare ground. 4.Among investingated areas, Dunae, Honeg seong gun was the deepest soil freezing, 89cm with $569^{\circ}C$ of accumulated degree-day of temperature below $0^{\circ}C$ at late February. 5.dehydration of Juniperus C. var. Kaizuca, Euonymus japonica, and Chamaecyparis pisifira at winter season was around 5 %, however dehydration of Vinca minor was more than 10 %. A Studies on the Soil Freezing Depth and Change of Moisture contents in evergreen Plants upon subzero Temperature in Kangwon area.(2)

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Effect of high temperature on mineral uptake, Soluble carbohydrates partitioning and cucumber yield

  • Sung, Jwakyung;Lee, Suyeon;Lee, Yejin;Ha, Sangkeun;Sonn, Yeonkyu
    • 농업과학연구
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    • 제41권4호
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    • pp.291-298
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    • 2014
  • Plastic film houses are directly associated with increases in plant growth and yield of vegetable crops through a year round cultivation, however, at the same time temperature stresses are one of fates which are difficult to avoid during crop growth. The objective of this study was to examine the translocation and distribution of minerals (N, P, K) and carbohydrates as well as seasonal fluctuation of mineral uptake and carbohydrate production in cucumber plant grown under moderately high temperature. The temperature treatments consisted of 2-layers film houses (optimal temp.) and 3-layers (high temp.). Shoot growth of cucumber plants were linearly increased until 14 weeks after transplanting (WAT) without any significant difference between both temperatures, and the slowdown was observed from 16 WAT. The level of soluble sugar and starch was slightly greater in optimal temperature compared to the high. Cumulative accumulation of soluble sugar was significantly different before and after 12 WAT in both treatments, whereas starch level represented a constant increase. Monthly production of soluble sugar reached the peak between 12 to 16 WAT, and starch peaked between 4 to 8 WAT and 12 to 16 WAT. Total uptake of N, P and K in optimal and high temperature conditions was $18.4g\;plant^{-1}$ and 17.6 for N, 4.7 and 5.1 for P, and 37.7 and 36.2 for K, respectively, and the pattern of monthly N uptake between optimal and high temperatures was greater in early growth stage, whereas was greater in mid growth stage in both P and K. Thus, this study suggests that moderately high temperature influences much greater to photosynthesis and carbohydrate production than plant biomass and mineral uptake. On the basis of the present result, it is required to indentify analysis of respiration rates from plant and soil by constantly increasing temperature conditions and field studies where elevated temperatures are monitored and manipulated.

1 묘포의 광도및 토양함수량이 인삼의 생육에 미치는 영향 (Effect of Light Intensity and Soil Water Regimes on the Growth of Ginseng (Panax ginseng C. A. Meyer) Seedling.)

  • 이성식;이종화;박훈
    • Journal of Ginseng Research
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    • 제8권1호
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    • pp.65-74
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    • 1984
  • This experiment was carried out to study the effects of light intensity and soil water regimes on the growth of ginseng seedling. The results were as follows: 1. The maximum light intensity and optimum temperature in 1,le photosynthesis of ginseng seedling were 10,000 lux and 23 $^{\circ}C$. Respiration rate was increased at high temperature. 2. Air and soil temperature under the shading were increased as the increase of light intensity but soil water contents were decreased as the increase of light intensity, whereas air and soil temperature were decreased as the increase of precipitation under the shade b5: soil water contents were increased as the increase of precipitation under the shade. 3. The higher the transmittance of the shade, the greater the specific leaf weight (S.L.W.) and stomatal density. In contrast, however, the contents of total chlorophyll, chlorophyll a and b, and stomatal length was decreased. There was no any significant difference light intensity of the a/b ratio of chlorophyll. 4. The highest photosynthesis was occurred in ginseng leaves grown under the shade 5% L.T.R. and net photosynthesis rates increased with increasing soil water contents. 5. Optimum condition for usable seedling yield were 5% L.T.R. and 3.3% precipitation under the shade. Useless seedling increased with increasing precipitation under the shade.

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비식생 갯벌 표층과 대기의 이산화탄소 플럭스 계절 변동 분석: 벌교 갯벌 (Seasonal Variation of Carbon Dioxide Flux between Soil Surface Layer and Atmosphere in Unvegetated Tidal Flat : Beolgyo Tidal Flat)

  • 박경덕;강동환;소윤환;조원기;김병우
    • 한국환경과학회지
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    • 제32권4호
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    • pp.267-276
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    • 2023
  • In this study, we analyzed seasonal variations in carbon dioxide fluxes, concentrations, and soil temperatures over three years in unvegetated tidal flats in the Beolgyo area. We also investigated the correlations between carbon dioxide fluxes and influencing factors. The average carbon dioxide flux was positive in summer and autumn but negative in winter and spring. A positive correlation was observed between carbon dioxide flux and soil temperature in spring whereas a negative correlation was noted in summer. In summer and autumn, as the soil temperature increased, the carbon dioxide flux decreased. In contrast, in spring and winter, as the soil temperature decreased, the carbon dioxide flux increased. Overall, this study reveals the significant influence of soil temperatures on carbon dioxide fluxes between the surface layer of the tidal flat and atmosphere.

Changes in Nitrogen Mineralization as Affected by Soil Temperature and Moisture

  • Wang, Xin-Lei;Park, Sang-Hyun;Lee, Bok-Rye;Jeong, Kwang-Hwa;Kim, Tae-Hwan
    • 한국초지조사료학회지
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    • 제38권3호
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    • pp.196-201
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    • 2018
  • Soil is the main nitrogen (N) provider for plants but N in soil is not all available to advanced plants. Mineralization is a critical biological process for transferring organic N to inorganic N that can be used by plants directly. To investigate the effect of different levels of soil temperature and water content to soil mineralization, a field experiment was established on three different sites (A, B and C). We measured soil temperature, moisture and electrical conductivity once daily after swine slurry application. Average soil moisture and temperature in site A is the highest among three sites (40.9% and $9.7^{\circ}C$, respectively). Following is in site C (37.3% and $9.6^{\circ}C$) and the lowest is in site B (28.0% and $9.0^{\circ}C$). Ammonium N (NH4+-N) and nitrate N (NO3--N) were determined on the first and fifth day after treatment. Compared with site B and C, site A always had the highest soil total N content (1.54 g N kg-1 on day one; 1.22 g N kg-1 on day five) and highest NO3-- N content (93.18 mg N kg-1 on day one; 16.22 mg N kg-1 on day five) and a significant decrease on day five. Content of NH4+-N in site B and C reduced while in site A, it increased by 6.7%. Results revealed that net N mineralization positively correlated with soil temperature (P<0.5, $r=0.675^*$) and moisture (P<0.01, $r=0.770^{**}$), suggesting that to some extent, higher soil moisture and temperature contribute more to inorganic N that can be used by plants.

하절기 한지형 잔디 재배 시 침수 및 고온으로 인한 잔디의 생육 불량 현상 (Effect of High-Humidity and High Temperature at Kentucky Bluegrass Growth in Summer)

  • 이정호;최준용;이성호;주영규
    • 아시안잔디학회지
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    • 제22권2호
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    • pp.133-140
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    • 2008
  • 한지형 잔디는 하절기 온도가 $30^{\circ}C$ 이상까지 올라가는 우리나라에서 뿌리와 줄기의 성장이 급격히 저하되고 심하면 고사하게 된다. 기온의 상승으로 인한 지온 상승은 잔디뿌리에 스트레스가 되며 그 스트레스는 호르몬의 불균형적인 형성으로 지상부 생장 및 광합성, 증산작용 등의 여러 매카니즘에 많은 영향을 미치게 된다. 이러한 문제를 해결하기 위해 토양내 수분함량을 조절하기도 하고 유기물 함량을 조절하여 지온의 상승을 제한함으로서 잔디의 생육부진을 해소하는 연구도 수행되었다. 본 실험은 토양 수분의 변화에 따른 토양 온도의 변화 양상을 분석하고, 잔디 재배지에서의 토양 깊이와 수분 함량에 따른 열 전도 기작과 열 환경 변화에 따른 직접적인 잔디 생육(생산량, 녹도, 건조피해, 고온피해 등)에 미치는 영향을 연구하였다. 공시 초종으로 Kentucky bluegrass(Poa pratensis L.)를 선정하였고 각각의 실험구는 수분함량에 따라 25%, 33%, 40%의 3가지로 구분하여 처리하였다. 토양온도측정 센서를 각 실험구에 깊이 12cm 지점과 2cm 지점에 각각 2개씩 즉, 한 실험구당 4개의 토양온도측정 센서를 설치하여 매 5분마다 온도변화를 측정하였다. 수분함량에 따른 온도변화는 수분함량이 33% 일 때 가장 낮게 측정되었다. 잔디의 생육상태를 비교하여 볼 때 수분 함량이 33% 일 때 생육이 가장 양호하였으며 40% 일 때 가장 생육이 불량하였다. 하절기 고온 환경에서 한지형 잔디인 Kentucky bluegrass의 생육은 토양 수분함량에 따라 큰 영향을 받지만, 장마기에 잔디가 침수된 환경에서 토양 수분 함량을 최소한 33%까지 감소시켰을 경우에는 잔디 생육에 큰 영향을 받지 않을 것으로 사료된다.

디젤오염토양 마이크로파 처리 시 TPH의 제거 특성 (The Characteristics of TPH Removals by Microwave Radiation for Diesel Contaminated Soil)

  • 정승우;이태진
    • 대한환경공학회지
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    • 제35권11호
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    • pp.776-780
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    • 2013
  • 본 연구에서는 마이크로파 조사를 통하여 디젤오염토양의 TPH (Total Petroleum Hydrocarbon) 제거양상을 살펴보고자 하였다. 건조토양을 마이크로파로 조사하였을 때 토양 내 온도의 상승은 완만하였으나 수분이 공급된 상태에서 온도 상승이 급격하게 나타났다. 함수량이 20% 이내 범위에서는 수분함량이 증가할수록 온도가 상승하였으나 20% 이상에서는 오히려 온도가 저하되었다. 100~700 W의 전력량으로 마이크로파를 조사한 후 각각의 TPH의 제거량을 확인하였을 때 300 W 이상의 범위에서는 전력량이 높아짐에도 TPH 제거량에 차이가 많지 않았다. 초기 수분량 20%에서 마이크로 조사 시 최종 TPH 제거량은 60%로 나타났으나 추가적으로 수분을 공급하여 토양 내 함수량을 일정하게 유지하였을 때 약 25%의 TPH 제거 증대효과가 나타났다. 이는 마이크로파를 이용할 때 반응이 지속됨에 따라 수분손실과 더불어 온도가 감소하므로 토양 내 함수량을 유지하는 것이 효율적인 TPH제거를 위해 중요한 요인이 될 수 있다는 것을 나타낸다.

비닐멀칭 색상이 토양온도 변화와 가을배추 수량에 미치는 영향 (Effect of Different Colored Polyethylene Mulch on the Change of Soil Temperature and Yield of Chinese Cabbage in Autumn Season)

  • 윤홍배;이종식;이예진;김명숙;이용복
    • 한국토양비료학회지
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    • 제45권4호
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    • pp.511-514
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    • 2012
  • 색상이 다른 흑색, 녹색, 투명비닐 3종의 멀칭 재료가 지온상승과 가을배추 수량에 미치는 영향을 비교 검토하였다. 비닐멀칭에 따른 지온상승은 녹색>투명>흑색> 순으로 높았으며, 녹색비닐 멀칭의 경우 비멀칭에 비해 일평균 $1.98^{\circ}C$ 높았다. 비닐색상별 야간의 지온 차이는 없었지만 비멀칭에 비해 평균 $2.4^{\circ}C$ 높았다. 그러나 주간에는 녹색, 흑색 및 투명 비닐멀칭은 비멀칭에 비해 각각 평균 3.9, 3.1, 및 $2.1^{\circ}C$가 높았다. 가을배추 생산량은 비멀칭 대비 흑색비닐 멀칭구가 25.5%로 증수 효과가 가장 컸다. 반면, 지온상승효과가 가장 컸던 녹색비닐 멀칭의 경우 생산량 증가율이 6.1%로 가장 적었다. 시비질소 이용율을 분석한 결과 흑색비닐 멀칭재배가 55.4%로 가장 높았다.