• 제목/요약/키워드: excessive soil-water

검색결과 148건 처리시간 0.022초

토양성분이 콩의 잎 수분포텐셜 및 광합성에 미치는 영향 (Effects of Soil Moisture Content on Leaf Water Potential and Photosynthesis in Soybean Plants)

  • 류용환;이석하;김석동
    • 한국작물학회지
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    • 제41권2호
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    • pp.168-172
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    • 1996
  • 콩품종 타치나가하(Tachinagaha)를 공시하여 토양수분조건에 따른 식물체내의 수분상태 즉 잎의 수분 potential, 광합성 및 생육에 미치는 영향을 검토하고자 실험을 수행한 결과를 요약하면 다음과 같다. 1. 광량자밀도가 1,000$\mu$mol m$^{-2}$ s$^{-1}$ 이하로 낮아질 때 광합성 속도는 점차 저하하였고, 토양수분 조건에 따른 광합성 속도는 건조구와 과습구는 적습구보다 떨어졌다. 2. 생육시기에 관계없이 광합성 속도와 기공 conductance와는 정의 상관 관계가 인정되었다. 3. 광합성 속도와 기공 conductance는 토양수분 부족에 매우 민감하게 반응하였다. 4. 잎의 수분 potential은 적습구가 과습구 또는 건조구보다 높았으며, 광합성 속도와도 밀접한 관련이 있었다. 5. 잎의 신장은 토양수분에 민감한 반응을 보여 건조구에서 엽면적이 가장 낮았으나 엽록소 함량은 높았다. 6.식물체의 총 건물중은 적습구 > 과습구 > 건조구 순이었으나 건물중에 대한 뿌리의 비율은 건조구에서 높게 나타났다

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RUSLE 모델을 이용한 금강 유역의 토지 이용별 토사유출량 추정 (Estimation of Soil Loss by Land Use in the Geum River Basin using RUSLE Model)

  • 박지상;김건하
    • 한국물환경학회지
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    • 제22권4호
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    • pp.619-625
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    • 2006
  • Amount of soil loss is important information for the proper water quality management, In this research, annual average soil loss of the Geum River basin was estimated using RUSLE (Revised Universal Soil Loss Equation) and GIS (Geographic Information System). Input data were manipulated using ArcGIS ver. 8.3. From crop field which constitute 8.2% of the Geum River Basin, annual average soil loss was estimated as 53.6 ton/ha/year. From the rice paddy field which constitutes 20% of the Geum River Basin, soil loss was estimated as 33.5 ton/ha/year, In comparison, forestry area which constitutes 61.8% of the basin discharged 2.8 ton/ha/year, It could be known from this research that appropriate measures should be implemented to prevent excessive soil loss from the agricultural areas.

Impact of Salt Intake on Red and Fallow Deer Production in Australia - Review -

  • Ru, Y.J.;Glatz, P.C.;Miao, Z.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권12호
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    • pp.1779-1787
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    • 2000
  • Southern and south-western Australia is a typical mediterranean environment, characterised by wet, cold winters and dry, hot summers. The evaporation rate varies significantly in summer, resulting in a high salinity of drinking water for grazing animals. In addition, a large amount of land in the cropping areas is affected by salt. Puccinellia, tall wheat grass and saltbushes have been planted to improve the soil condition and to supply feed for grazing animals. Animals grazing these areas often ingest an excessive amount of salt from soil, forage and drinking water which can reduce feed intake, increase the water requirement, depress growth and affect body composition as demonstrated in sheep. While the deer industry has been successfully developed in these regions, the potential impact of excessive salt intake on deer production is unknown. The salt tolerance has been well defined for sheep, cattle and other livestock species, but the variation between animal species, breeds within species, maturity status and grazing environments makes it impossible to apply these values directly to deer. To optimise deer production and effectively use natural resources, it is essential to understand the salt status of grazing deer and the impact of excessive salt intake on growth and reproduction of deer.

지하수위에 따른 콩 품종의 생육특성 및 수량반응 (Soybean Yield Performance and Growth Characteristics in Response to Underground Water Table Depth)

  • 윤광일;이홍석
    • 한국작물학회지
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    • 제42권3호
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    • pp.367-372
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    • 1997
  • 토성 및 지하수위에 따른 콩 품종의 생육 및 수량반응을 알아보기 위하여 라이시미터에 식양토와 사양토를 채운 후 표면으로부터 10, 30, 50cm로 지하수위를 조절하고 전 생육기간에 걸쳐 처리하여 조사한 결과는 다음과 같다. 1. 토성에 따라 지상부 건물중과 지하부 건물중, 뿌리혹수는 유의적인 차이를 보이고 있으나 엽면적과 엽녹소함량은 차이를 보이지 않았다. 토성, 지하수위, 품종의 각 상호작용에 있어서는 개화기에 조사된 생육형질들 모두 유의적인 차이를 보였다. 2. 수량은 품종과 지하수위에 따라 유의적인 차이를 보이고 있으나 토성에 따라서는 유의적인 차이를 보이지 않았다. 3. 수량안정도 계수는 소백나물콩이 $b_i=1.09$로 지하수위 처리 조건에서 가장 수량 안정성이 높은 품종으로 나타났으며 화엄풋콩은 $b_i=0.38$로 비교적 안정성이 낮은 품종으로 나타났다. 4. 유망도지수는 초다근류계통인 nts1116이 D_i=228$로 가장 높은 값으로 조사되었으며 큰올콩은 $D_i=77$로 가장 낮은 값을 나타냈다. 5. 생육과 수량과의 다중회귀분석에 의하면 지상부 건물중과 지하부 건물중, 뿌리혹수가 수량에 영향을 미치는 주요요인으로 나타났으며 지상부 건물중과 지하부 건물중은 사양토에서, 지상부 건물중과 뿌리혹수는 식양토에서 수량에 유의적인 영향을 미쳤다.

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실내의 저광도하에서 토양수분이 단풍나무의 생육에 미치는 영향 (Effects of Soil Moisture on the Growth of Acer Palmatum under Indoor Low Light Intensity)

  • 윤지영;김민수
    • 한국조경학회지
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    • 제28권4호
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    • pp.21-28
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    • 2000
  • This study is conducted to analyze effects of soil moisture on the growth of maple(Acer palmatum) under indoor low light intensity. Maples grew under three different light intensities such as sunny place(average 353.2W/$m^2$), half shade(average 7.7 W/$m^2$) and shade/(average 1.9W/$m^2$).Under half shady and shady condition, each 24 planters(2 maples planted in each planter) were used and divided into 3 groups treated with different watering points. Three levels of soil water potential were set for watering points, such as -200mbar, -300mbar or -500mbar. Under sunny condition, there were only group of 8 planters, as comparison. Watering was applied when soil water potentials reached -500maber. The results of plant growth experiment are as followed. 1. Under the shady condition, 32 maples died among 48 maples for 7 months. 9 maples survived, watered at soil water potential -200mbar, 5maples at -300mbar and 2maples at -500mbar. 2. Leaf water content ratios were higher under lower light intensity. For the cell wall became thinner under lower light intensity. 3. Maples in shady were easy to die due to having thin cell wall, therefore they were easy to loss the turgor pressure. 4. In case of half shady condition, the group, watered at soil water potential -200mbar, had much smaller amount of rootlet than -300mbar, because there were excessive soil water. The group, watered at soil water potential -500mbar, had smaller amount of rootlet than -300mbar and there was a remarkable difference in leaf water potential in spite of nearly same soil water potential, because leaves received the water stress under lower soil water potential. 5. When maples grew soundly, the leaf water potential was largely influenced by the soil water potential.

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가축분뇨 액비 살포가 새만금유역에서의 논토양과 수질에 미치는 영향 (Effect of Livestock Liquid Manure Released at a Rice Field on Quality of Soil and Water in the Saemangeum Watershed)

  • 김미숙;곽동희
    • 상하수도학회지
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    • 제30권1호
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    • pp.19-31
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    • 2016
  • The Saemangeum watershed is required to manage water pollution effectively but the effect of liquid manure (LM) on soil and water quality in the basin is not clearly identified as yet. This study aims at assessing the effect on soil of a rice field and water quality of water bodies near the rice field during rice-crop time period to find out the effect of LM, the effect of rainfall, and the effect of rice-crop environment on soil and water quality by analyzing data of nitrogen components. As a result of the LM distribution, $NO_3-N$ was much higher than other N components in the entire soil layers and it was accelerated by rainfall right after the LM distribution. Compared to chemical fertilizer (CF), LM was slightly affected but still influenced on the surface water quality. During weak rainfall, low nitrogen concentration in topsoil was resulted as NH3-N decreased and Org-N and $NO_3-N$ increased. $NO_3-N$ concentration in the water of irrigation canals increased with time. During intensive rainfall, $NO_3-N$ and Org-N of the soil were measured highly in the submerged condition, while the water quality of the rice field was lower due to flooding into the irrigation canal as well as the growth of the rice plants. Also, total nitrogen was increased more than 7 times and it showed serious water quality deterioration due to LM and excessive fertilizer distribution, and rainfall during all rice-crop processes. The effect of LM on water quality should be studied consistently to provide critical data while considering weather condition, cropping conditions, soil characteristics, and so on.

Soybean Growth and Yield as Affected by Spacing of Drainage Furrows in Paddy Field

  • Cho, Jin-Woong;Lee, Jung-June;Oh, Young-Jin;So, Jung-D.;Won, Jun-Yeon;Kim, Chang-Ho
    • 한국작물학회지
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    • 제51권1호
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    • pp.26-31
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    • 2006
  • This study was conducted to determine the optimum number of inter-rows according to distance of drainage furrow (DF) for running-off excessive-water stress (EWS) in paddy field. The most soil water potential was shown in high ridge (distance of DF by 70 cm) cultivation and the soil water potential showed increasing tendency in over four inter-rows cultivation by DF. The growth of soybean reduced by extended inter-row and its reducing level was high, especially, over four inter-rows (DF distance by 2.8 m) because of EWS. The photosynthetic rate decreased in the more extensive field by distance of DF at V5 and R2 stages, especially, in over four interrows cultivation. Also, root activity decreased at wider DF. The yield was reduced with wider distance of DF more extensively, the highest yield of 270 g per $m^2$ at the every row, but yield showed decreasing tendency at over the $4^{th}$ row (2.8 m) cultivation. Soybean cultivation in paddy field could be founded with DF of every other or $4^{th}$ row.

토지이용 제한인자를 활용한 농업적 토지이용 적합성 분석 - 경상남도 창녕군 이방면을 대상으로 - (An Analysis of Agricultural Landuse Suitability Using Landuse Limitation Factors - A Case Study of Ibang-myeon, Changnyeong-gun, Kyungsangnam-do -)

  • 장갑수;박인환
    • 환경영향평가
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    • 제15권6호
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    • pp.357-372
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    • 2006
  • The excessive land activities in farming can cause soil erosion, inundation by a flood, and fallow. So far land evaluation has been analyzed using the land use limitation derived from the excessive land activities. This study was done for evaluating the agricultural fields by using 3 land use limitations, inundation potential, soil erodibility potential, and fallow potential. The study area is Ibang-myeon, Changnyeong-gun, Gyeongnam-province, Korea. A logistic regression model was applied to recognize the inundation potential by a flood in the Nakdong river basin. And potential soil erodibility index (PSEI) was derived from USLE model to analyze the soil erodibility potential. And a probability model from a logistic regression model was applied to detect the fallow potential. Therefore, we found 220.7ha for the 4th grade and 86.1ha for the 5th grade was analyzed as water damage potential. Large area near Nakdong river have problem to grow the rice due to the damage by water inundation. And 213.6ha for the 3rd grade and 103.3ha for 4th grade was detected as a result of the analysis of soil erosion potential. The soil erosion potential was high when within-field integrity of soil was not stable, or the kinetic energy was high or the slope length was long due to a steep slope of a specific land. And 869.1ha for 3rd grade, 174.9ha for 4th grade, and 110.6ha for 5th grade was detected to be distributed having the fallow potential. Especially, a village, having a steep mountain, had 249.5ha for the 3rd grade, which was 28.7% of total area showing the 3rd grade. Finally, Three villages, including An-ri, Geonam-ri, Songgok-ri, showed they had largest area of the suitable land in the study area. These villages had similar topographic condition where they were far from Nakdong river, and they had relatively higher elevation and flat lands.

축산분뇨 농지환원을 위한 적정관리방안 (Development of Guidelines for Animal Waste Land Application to Minimize Water Quality Impacts)

  • 홍성구
    • 한국농공학회지
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    • 제44권5호
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    • pp.136-146
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    • 2002
  • Land application of manure compost is considered one of the widely-used animal waste management practices. Many livestock farms adopt composting for their animal waste disposal and apply the compost to crop fields. While standard rates have been established based on researches with respect to land application of manure compost recently, there have been few discussions on water quality impact of the application. Water quality impact should be taken into account in land applications of manure compost. In this study, management practices were proposed based on the investigation of water quality of leachate from manure compost under rainfall simulation, field studies, and monitoring runoff water quality from farm fields after land application of animal waste. The concentrations of major water quality parameters of the leachate were significantly high, whereas those of runoff from soils after tillage for soil incorporation, were not affected by the application based on a series of experiments. Runoff water from farm fields after land application also showed high concentrations of pollutants. Appropriate management practices should be employed to minimize pollutant loading from manure applied fields. Proposed major management practices include 1) application of recommended amounts, 2) proper tillage for complete soil and manure incorporation, 3) field management to prevent excessive soil erosion, 4) complete diversion of inflow into the field from outside, 5) implementation of vegetative buffer strips near boundaries, and 6) prevention of direct discharge of runoff water front fields Into streams.

소성 점토다공체 및 코코넛 피트를 혼합한 인공토양의 물리화학적 특성과 식물생육에 미치는 영향 (Physicochemical Properties of Artificial Soil Formulated by Blending Calcined Clay and Coconut Peat and its Effect on Plant Growth)

  • 허근영;강호철;김인혜;심경구
    • 한국조경학회지
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    • 제30권5호
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    • pp.107-115
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    • 2002
  • This study was carried out to compare artificial soil formulated by blending calcined clay and coconut peat with perlite, then to evaluate this soil as a perlite substitute for use as an artificial planting medium. To achieve this, a determination of the physico-chemical properties and it's effect on plant growth were conducted by comparing those with large perlite grains and small grains. The results are summarized as follows: 1) The bulk density was 0.41g/㎤. This density was lower than that of field soil, but higher than that of large perlite grain(0.23g/㎤) and small grain(0.25g/㎤). The porosity, field capacity, and saturated hydraulic conductivity were 71.3%, 49.2%, and 3.8$\times$10-2cm/s, respectively. The air-permeability, water holding capacity, and drainage were better than or equal to that both large and small perlite grain. 2) It was near-neutral in reaction(pH=6.6). It had a high organic carbon content(65.8g/kg) and a low available phosphoric acid content(84.7mg/kg). It was similar to crop soil in cation exchange capacity(11.4cmol/kg). It had a low exchangeable calcium content(0.71cmol/kg), a low exchangeable magnesium content(0.68cmol/kg), a high exchangeable potassium content(2.54cmol/kg), and a high exchangeable sodium content(1.12cmol/kg). Except for the exchangeable potassium and sodium content, the chemical properties were better than or equal to both large and small grain perlite. The excessive exchangeable potassium or sodium content will inhibit plant growth. 3) In Experiment 1, the plant growth tended to be higher compared to that of large and small perlite gains. But in Experiment 2, it tended to be lower. This might be linked to the excessive exchangeable potassium or sodium content. 4) It could be considered as a renewable perlite substitute for greening of artificial soil. But, it would be necessary to leach the excessive exchangeable potassium or sodium to avoid the risk of inhibiting plant growth.