• 제목/요약/키워드: Soil temperature

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고추와 콩 재배에서 토양온도, 토양수분과 무기태질소 변화에 따른 아산화질소 배출 평가 (Evaluation of $N_2O$ Emissions with Changes of Soil Temperature, Soil Water Content and Mineral N in Red Pepper and Soybean Field)

  • 김건엽;소규호;정현철;심교문;이슬비;이덕배
    • 한국토양비료학회지
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    • 제43권6호
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    • pp.880-885
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    • 2010
  • 밭에서 $N_2O$ 배출에 영향을 주는 요인들의 특성을 파악하고, 이러한 요인들이 $N_2O$ 배출에 얼마나 영향을 주는지를 정량적으로 밝히고자, 수원시에 위치한 국립농업과학원 기후변화생태과 시험포장에서 $N_2O$ 배출 시험을 수행하였다. 고추와 콩에서 NPK+돈분퇴비를 처리하여 $N_2O$ 배출에 미치는 요인들과 배출에 미치는 영향을 조사한 결과는 다음과 같다. (1) $N_2O$ 배출량과 토양온도, 토양수분함량 및 무기태질소의 상관 분석한 결과, 고추에서 $0.528^{**}$, $0790^{***}$ 그리고 $0.937^{***}$, 콩은 $0.658^{***}$, $0.710^{***}$ 그리고 $0.865^{***}$으로 고도로 유의하여 $N_2O$ 배출량에 큰 영향을 주는 것으로 나타났다. (2) $N_2O$ 배출에 영향을 미치는 요인은 고추에서는 무기태질소 (71.9%), 토양수분 (23.6%), 토양온도 (4.5%), 그리고 콩은 무기태질소 (65.5%), 토양수분 (19.2%), 토양온도 (15.2%) 순으로 나타났다.

보강 흙벽의 열전도 특성 (Property of Thermal Conduction of Reinforced Soil Wall)

  • 장병욱;서동욱;박영곤
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1999년도 Proceedings of the 1999 Annual Conference The Korean Society of Agricutural Engineers
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    • pp.638-644
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    • 1999
  • The objectives of the study are to investigate thermal conductivity(TC) and coefficient of thermal transmission (CTT) according to the type of soils, the presence of reinforceemnt, temperature, relative humidity and to analyze experimentally the characteristics of thermal transfer of reinforced soil wall. Results are summarized as follows ; 1) Clayey soil has high value of TC and CTT than sandy soil. 2) TC and CTT of reinforced soil wall is about 6∼17% higher than those of reinforced one, 3) It is founded that the effect of relative humidity on the soil wall is important at the same temperature and 4) As the temperature is high, it is appeared that TC and CTT are high.

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Seasonal Soil Temperature and Moisture Regimes in a Ginseng Garden

  • Bailey, W.G.;Stathers, R.J.;Dobud, A.G.
    • Journal of Ginseng Research
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    • 제12권1호
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    • pp.53-62
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    • 1988
  • A field experiment was conducted in the arid interior of British Columbia, Canada to assess the seasonal soil temperature and moisture regimes in an American ginseng garden. As a consequence of the man-modified microclimate (elevated shade canopy and surface covering of mulch), the growing environment of the crop was fundamentally altered when compared to adjacent agricultural growing environments. In the ginseng garden, soil temperatures were found to remain low throughout the growing season whereas soil moisture remained high when compared with the outside garden environment. These results indicate that even in the hot, arid environment of the interior of British Columbia, the growing of ginseng is undertaken in sub-optimal conditions for the major part of the growing season. This poses challenges for the producers of the crop to modify the architecture of the gardens to enhance the soil regime without creating a deleterious aerial environment.

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배추 밭에서의 N2O, CH4, CO2 토양배출량 측정 및 특성 연구: 주요온실가스 배출량 측정 및 지표생태변화에 따른 특성 연구 (Soil Emission Measurements of N2O, CH4 and CO2 from Intensively Managed Upland Cabbage Field)

  • 김득수;나운성
    • 한국대기환경학회지
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    • 제27권3호
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    • pp.313-325
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    • 2011
  • From October 2009 to June 2010, major greenhouse gases (GHG: $N_2O$, $CH_4$, $CO_2$) soil emission were measured from upland cabbage field at Kunsan ($35^{\circ}$56'23"N, $126^{\circ}$43'14"E), Korea by using closed static chamber method. The measurements were conducted mostly from 10:00 to 18:00LST during field experiment days (total 28 days). After analyzing GHG concentrations inside of flux chamber by using a GC equipped with a methanizer (Varian CP3800), the GHG fluxes were calculated from a linear regression of the changes in the concentrations with time. Soil parameters (e.g. soil moisture, temperature, pH, organic C, soil N) were also measured at the sampling site. The average soil pH and soil moisture were ~pH $5.42{\pm}0.03$ and $70.0{\pm}1.8$ %WFPS (water filled pore space), respectively. The ranges of GHG flux during the experimental period were $0.08\sim8.40\;mg/m^2{\cdot}hr$ for $N_2O$, $-92.96\sim139.38mg/m^2{\cdot}hr$ for $CO_2$, and $-0.09\sim0.05mg/m^2{\cdot}hr$ for $CH_4$, respectively. It revealed that monthly means of $CO_2$ and $CH_4$ flux during October (fall) were positive and significantly higher than those (negative value) during January (winter) when subsoil have low temperature and relatively high moisture due to snow during the winter measurement period. Soil mean temperature and moisture during these months were $17.5{\pm}1.2^{\circ}C$, $45.7{\pm}8.2$%WFPS for October; and $1.4{\pm}1.3^{\circ}C$, $89.9{\pm}8.8$ %WFPS for January. It may indicate that soil temperature and moisture have significant role in determining whether the $CO_2$ and $CH_4$ emission or uptake take place. Low temperature and high moisture above a certain optimum level during winter could weaken microbial activity and the gas diffusion in soil matrix, and then make soil GHG emission to the atmosphere decrease. Other soil parameters were also discussed with respect to GHG emissions. Both positive and negative gas fluxes in $CH_4$ and $CO_2$ were observed during these measurements, but not for $N_2O$. It is likely that $CH_4$ and $CO_2$ gases emanated from soil surface or up taken by the soil depending on other factors such as background concentrations and physicochemical soil conditions.

MODIS 이미지를 이용한 지표특성에 따른 토양수분의 시·공간적 분포 특성 (Characteristics of Soil Moisture Distributions at the Spatio-Temporal Scales Based on the Land Surface Features Using MODIS Images)

  • 김상우;신용철;이태화;이상호;최경숙;박윤식;임경재;김종건
    • 한국농공학회논문집
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    • 제59권6호
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    • pp.29-37
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    • 2017
  • In this study, we analyzed the impacts of land surface characteristics on spatially and temporally distributed soil moisture values at the Yongdam and Soyang-river dam watersheds in 2014 and 2015. The soil moisture, NDVI (Normalized Difference Vegetation Index) and temperature values at the spatio-temporal scales were estimated using satellite-based MODIS (MODerate Resolution Imaging Spectroradiometer) products. Then the Pearson correlations between soil moisture and land surface characteristics (NDVI, temperature and DEM-digital elevation model) were estimated and analyzed, respectively. Overall, the monthly soil moisture values at the time step were highly influenced by the precipitation amounts. Also, the results showed that the soil moisture has the strong correlation with DEM while the temperature was inversely correlated with the soil moisture. However the monthly correlations between NDVI and soil moisture were highly varied along the time step. These findings indicated that water loss near the land surface are highly occurred by soil and plant activities as evapotranspiration and infiltration during the no/less precipitation period. But the high precipitation amounts reduce the impacts of land surface characteristics because of saturated condition of land surface. Thus these results demonstrated that soil moisture values are highly correlated with land surface characteristics. Our findings can be useful for water resources/environmental management, agricultural drought, etc.

토양 매설 배관의 음극방식과 환경인자 간의 상관관계 (Relationship between the Cathodic Protection of Pipe Buried in Soil and Environmental Factors)

  • 최승헌;원석연;유영란;김영식
    • Corrosion Science and Technology
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    • 제21권5호
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    • pp.372-380
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    • 2022
  • The external corrosion control of buried pipes can be achieved by a combination of coatings and cathodic protection to maximize effectiveness. One of the factors affecting cathodic protection is the environmental soil conditions. Because soil is a kind of electrolyte, the environmental conditions of soil may be changed by the atmospheric environment. Therefore, in this study, changes in environmental soil factors by atmospheric environmental factors were monitored. In cathodic protection, on-potential and off-potential were measured from December 2021 to July 2022. The effects of external environmental factors and soil environmental factors on cathodic protection were analyzed. Changes in outdoor temperature affected soil temperature, and soil conductivity had a proportional relationship with soil humidity, but outdoor humidity and precipitation did not significantly affect humidity and conductivity of the soil. In contrast, in cathodic protection, the on-potential was affected by temperature, humidity, the conductivity of the soil, and the anode used, but the off-potential was little affected by these factors.

온도 변화에 따른 산지습지 토양의 $N_2O$ 배출 양상 ($N_2O$ Emissions on the Soil of Alpine Wetland by Temperature Change)

  • 김상훈;임성환;추연식
    • 생태와환경
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    • 제46권3호
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    • pp.409-418
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    • 2013
  • 최근 기후변화에 따른 지구온난화는 전세계적으로 매우 큰 문제로 인식되고 있다. 이산화탄소의 농도, 온난화정도, 토양 온도, 강우량, 토양수분함량, 탈질작용 등과 같은 요인들은 토양으로부터 아산화질소 ($N_2O$)의 방출에 영향을 미치는 것으로 알려져 있다. 본 연구에서는 산지습지인 오대산 질뫼늪과 정족산 무체치늪 토양으로부터 온도변화에 따른 $N_2O$ 발생을 조사하였다. 7월 채취한 질뫼늪 토양은 온도가 증가함에 따라 $N_2O$ 발생이 증가하였으나 $10^{\circ}C$에서는 유의한 차이를 보이지 않았다. $15^{\circ}C$$20^{\circ}C$ 토양은 24시간까지는 증가하는 $N_2O$ 발생양상을 보였으나 그 이후 발생량의 뚜렷한 차이를 보이지 않았다, 전반적으로 온도처리에 따른 유의한 차이만을 보였다. 무제치늪 토양 또한 질뫼늪 토양과 유사한 경향을 보였다. 부가적인 질소원 처리에 대해 두 습지 토양은 다소 증가하는 양상을 보였으나 질소부가나 질소원에 따른 유의한 차이를 보이지 않았다. 결론적으로 이탄토양으로부터 배출하는 $N_2O$의 양은 온도가 상승함에 따라 증가되는 양상을 보였으나 질소원의 종류와 부가량은 $N_2O$ 배출 양상에 큰 차이를 보이지 않은 것으로 조사되었다. 향후 산지 이탄습지 토양의 $N_2O$ 배출양상을 보다 명확히 규명하기 위해서는 질소원의 차이, 질소의 시비, 토양효소 활성이나 질화세균의 활동성을 포함하여 다양한 요인에 대한 복합적인 연구가 진행될 필요가 있을 것이다.

배추무사마귀병 뿌리혹의 형성에 미치는 온도, 토양수분, 토양 pH, 광의 영향 (Effects of Temperature, Soil Moisture, Soil pH and Light on Root Gall Development of Chinese Cabbage by Plasmodiophora brassicae)

  • 김충회
    • 식물병과 농업
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    • 제5권2호
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    • pp.84-89
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    • 1999
  • Development of root galls of clubroot disease on Chinese cabbage seedlings was first observed 17days after inoculation of Plasmodiophora brassicae at $25^{\circ}C$ 4-11days earlier than at 5, 20, 3$0^{\circ}C$ and 35$^{\circ}C$. Subsequent enlargement of root galls was also fastest at $25^{\circ}C$ and 2$0^{\circ}C$ but delayed at 15$^{\circ}C$ and 3$0^{\circ}C$ or above. Chinese cabbage seedlings with root gall formation showed reduction in number of leaves above ground fresh weight and amount of root hairs but increase in root weight, Root galls development was highest at soil moisture level of 80% of maximum soil moisture capacity than at 60% and 100%. Optimum soil pH for root gall development was pH 6 although root galls were formed at a range of pH 5 to 8. Period of light illumination also affected root gall development with the greatest gall development at 12hr/12hr in light/dark period and the least at 8hr/16hr. Site of root gall formation and gall shape did not differ greatly among treatments of temperature soil moisture pH and light experiments.

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무우 배추 포장내의 병원성 토양미생물 소장 (The fluctuation of soil pathogenic microbes population in radish and chinese cabbage fields)

  • 이왕휴;소인영
    • 미생물학회지
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    • 제21권1호
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    • pp.7-14
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    • 1983
  • In order to study the effects of cropping system and fungicide (Dachigaren) on soil microbes, the seasonal fluctuations of soil microbes in the fields of radish and Chinese cabbage including soil pH, Soil moisture content and soil temperature were investigated on every 15 day interval from the begining of March to late October in 1981. The population of total fungus peaked at the begining of July, while that of total bacteria, at the begining of August. They were affected by soil temperature, however pathogenic microbes seemed to be more related with host plants than the soil temperature, because pathogens showed high density through the whole cultivation period. The pathogenic microbes showed the density of order ; Xanthomonas, Erwinia, Pseudomonas, Agrobacterium and Corynebacterium. Xanthomonas, Erwinia and Pseudomonas, which induced radish and Chinese cabbage diseases were higher than Agrobacterium and Corynebacterium in population densigy. Bacterial soft rot occured at the density of Erwinia $5.9{\sim}6.6{\times}10^5/dry$ soil 1 gram. The density of microbes on continuous fields were higher than that of rotating fields, but there were no significant difference between treated fungicide plot and non treated in the density of microbes, also no difference between Chinese cabbage and radish growing fields.

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Soil-Environmental Factors Involved in the Development of Root Rot/Vine on Cucurbits Caused by Monosporascus cannonballus

  • Kwon, Mi-Kyung;Hong, Jeong-Rae;Kim, Yong-Hwan;Kim, Ki-Chung
    • The Plant Pathology Journal
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    • 제17권1호
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    • pp.45-51
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    • 2001
  • A root rot/vine decline disease occurred naturally on bottle gourd-stocked watermelon, melon, oriental melon and squash grown in greenhouses, but not on these plants grown in fields. Self-rooted watermelon, cucumber, pumpkin and luffa were also proven to be hosts of the pathogen by artificial inoculation in this experiment. The pathogen was identified as Monosporascus cannonballus by comparing microscopic characteristics of fungal structures with those of previously identified fungal strains. Our field investigations showed that the temperature and electric conductivity of soil in infected greenhouses were higher and the soil moisture content was lower than in noninfected greenhouses. To investigate soil-environmental factors affecting disease development, greenhouse trials and inoculation experiments were conducted. The host plants inoculated and grown under conditions of high soil temperature and electrical conductivity ($35\pm2^{\circ}$, 3.2-3.5 mS) and with low soil moisture content (pF 3.0-4.5) were most severely damaged by the fungal disease. Since plants growing in greenhouses ae usually exposed to such environmental conditions, this may be the reason why the monosporascus root rot/vine decline disease has occurred only on cucurbits cultivated in greenhouses but not in field conditions.

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