• Title/Summary/Keyword: Soil moisture level

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Effects of Ectomycorrhizae and Soil Condition on Growth of Pinus rigida Seedlings (외생균근(外生菌根) 및 토양조건(土壤條件)이 리기다소나무 균목생장(菌木生長)에 미치는 영향(影響))

  • Kim, Myung Hee;Lee, Soo Wook
    • Journal of Korean Society of Forest Science
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    • v.70 no.1
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    • pp.45-54
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    • 1985
  • The experiment was conducted to test the effects of ectomycorrhizal inoculation and soil moisture regime on growth and nutrient uptake of Pinus rigida seedlings. Two-year-old seedlings inoculated with either Pisolithus tinctorius or Thelephora terrestris were used for this experiment. There were two moisture treatments and four phosphate treatment levels with three replications. Height and root collar diameter growth and dry weight increase were measured and nitrogen, phosphorous, and potassium in the tissue were analyzed three months after the initiation of phosphate and moisture regime treatment. Results are as follows; 1) Height growth of seedlings was not affected in all treatments. (mycorrhizae, fertility, moisture). 2) High moisture regime increased root collar diameter growth 2.7 times as large as low moisture regime. 3) In low moisture regime, net production increased 26% in seedlings inoculated with Pisolithus tinctorius and increased 72% control seedlings. 4) In high moisture regime, net production of inoculated seedlings with Pisolithus tinctorius increased four times as much as that of control seedlings but increased $P_2O_5$ in fertility level did not affect net production. 5) In uptake of nitrogen, phosphate, and potassium, Pisolithus tinctorius - inoculated seedlings increased uptake by 1.9, 1.8, and 1.5 times, respectively, as much as control seedlings. 6) Increase in $P_2O_5$ fertility level enhanced the uptake of $P_2O_5$ in Pisolithus tinctorius - inoculated seedlings, but not affected the uptake of $P_2O_5$ in control seedlings. 7) Increase in $P_2O_5$ fertility levels enhanced the uptake of $K_2O$ in Pisolirhus rinctorius - inoculated seedlings.

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Effects of Soil Moisture, Seasons, Harvesting Period and Fertilizer Application on the Nitrate Content of Radish(Raphanus sativus L. var. niger(Mill.) S. Kerner) (토양수분(土壤水分), 재배시기(栽培時期), 수확기(收穫期) 및 시비(施肥)가 무우의 질산염함량(含量)에 미치는 영향)

  • Park, Kuen-Woo;Fritz, D.
    • Korean Journal of Environmental Agriculture
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    • v.1 no.1
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    • pp.59-64
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    • 1982
  • Studies on the effect of soil moisture, different seasons, harvesting periods and nitrogen application on the nitrate content of radish(Raphanus sativus L. var. niger(Mill.) S. Kerner) were carried out in pot and green house. The results are as follows; The low level of soil moisture leads to an increased nitrate accumulation in radish root. The nitrate content was found to be higher in spring crops and lower in summer ones. It was decreased during harvesting period. The application of nitrogen fertilizer increased the nitrate content in radish root. We found the highest content in petioles with lesser content in roots and leaf blades in that order. The multiple regression analysis and the nutritional value of nitrate content in radish were discussed.

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Comparison of Spatial Interpolation Processing Environments for Numerical Model Rainfall and Soil Moisture Data (수치모델 강우 및 토양수분 자료의 공간보간 처리환경의 비교)

  • Seung-Min, Lee;Sung-Won, Choi;Seung-Jae, Lee;Man-Il, Kim
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.24 no.4
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    • pp.337-345
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    • 2022
  • For data such as rainfall and soil moisture, it is important to obtain the values of all points required as geostatistical data. Spatial interpolation is generally performed in this process, and commercial software such as ArcGIS is often used. However, commercial software has fatal drawbacks due to its high expertise and cost. In this study, R, an open source-based environment with ArcGIS, a commercial software, was used to compare the differences according to the processing environment when performing spatial interpolation. The data for spatial interpolation was weather forecast data calculated through Land-Atmosphere Modeling Package (LAMP)-WRF model, and soil moisture data calculated for each cumulative rainfall scenario. There was no difference in the output value in the two environments, but there was a difference in user interface and calculation time. The results of spatial interpolation work in the test bed showed that the average time required for R was 5 hours and 1 minute, and for ArcGIS, the average time required was 4 hours and 40 minutes, respectively, showing a difference of 7.5%. The results of this study are meaningful in that researchers can derive the same results in a commercial software environment and an open source-based environment, and can choose according to the researcher's environment and level.

Comparison of Growth Characteristics and Ginsenosides Content of 6-Year-Old Ginseng (Panax ginseng C. A. Meyer) by Drainage Class in Paddy Field (논토양에서 배수등급별 6년근 인삼의 생육특성 및 진세노사이드 함량 비교)

  • Lee, Sung-Woo;Park, Jin-Myeon;Kim, Geum-Soog;Park, Kee-Choon;Jang, In-Bok;Lee, Seung-Ho;Kang, Seung-Won;Cha, Seon-Woo
    • Korean Journal of Medicinal Crop Science
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    • v.20 no.3
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    • pp.177-183
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    • 2012
  • To develop the practical cultivation for paddy field, we investigated the properties of paddy soil, growth characteristics and ginsenoside content of 6-year-old ginseng, Cheonpung variety between poor drainage class (PDC) and imperfect drainage class (IDC). Groundwater level in PDC showed monthly small changes of 20~30 cm, while IDC showed monthly great changes of 28~71 cm depending on rainfall. Soil moisture content in PDC and IDC was 17.2%, 22.5%, respectively. Air temperature in IDC was lower than $0.3^{\circ}C$, while soil temperature was higher than $0.8^{\circ}C$ compare to PDC, respectively. Main soil color of PDC was grayish olive, while IDC was brownish olive. PDC showed yellowish mottles only at underground of 20~40 cm, while IDC showed that at underground of 30~90 cm. IDC showed lower pH, EC, potassium, calcium and magnesium content, but higher organic matter, phosphate, and iron content than that of PDC, respectively. All of EC, organic matter, potassium, calcium, and magnesium content were decreased, but iron content was increased at the subsoil layers of PDC. All of EC, organic matter, phosphorus, and potassium content were decreased, but calcium and magnesium content were increased at the subsoil layers of IDC. Root yield in IDC was more increased by 33% than that of PDC. The moisture content and rusty ratio of ginseng root in IDC were lower than that of PDC. Ginsenoside content in IDC was higher than that of PDC because the ratio of lateral and fine root showing relatively high content of ginsenoside was higher in IDC than that of PDC.

Drought Assessment of Upland Crops using Soil Moisture, SPI, SGI (토양수분, 표준강수지수, 표준지하수위지수를 활용한 밭가뭄 평가)

  • Jeon, Min-Gi;Nam, Won-Ho;Ok, Jung-Heun;Hwang, Seon-Ah;Hur, Seung-Oh
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.313-313
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    • 2022
  • 일반적으로 가뭄은 특정지역에서 평균 이하의 강수량이 발생되는 현상으로, 강수량이 감소되면 토양수분, 하천수 수위, 저수지 수위, 지하수위 등이 순차적으로 감소한다. 수문학적 가뭄은 기상학적 가뭄 및 농업 가뭄에 비해 늦게 발현되는데, 이는 강수량의 부족이 토양수분, 하천수량, 지하수 및 저수지 수위 등과 같은 수문학적 시스템에 전이되는 시간이 소요되기 때문이다. 따라서, 가뭄 피해를 경감하기 위해 지하수위 변동성을 이용하여 지하수 함양량을 추정함으로써 효율적인 수자원 관리의 필요성이 증대되고 있다. 지하수위는 농촌 지하수 개발, 가뭄 및 홍수 예측 등 다양한 분야에 활용되며, 강수량에 의한 변화가 지표수에 비해 느리게 나타나고 토양을 통과하는 특성으로 인해 단기 및 장기간의 변화 경향이 나타난다. 미국 지질조사국 (United States Geological Survey)에서는 지하수위를 월 단위로 보통 이하 (Below-normal), 보통 (Normal), 보통 이상 (Above-normal) 3단계로 구분하여 분포도를 작성하고 전체 관측기간 중 25% 이상에서 보통 이하 (Below-normal)로 나타나면 가뭄으로 판단한다. 우리나라의 경우 지형, 유역을 고려한 지하수 수위 및 수질 현황과 변동성을 파악하기 위하여 전국 지하수위 관측망 688개소를 설치하고 운영 중에 있다. 또한, 농촌진흥청에서는 전국 농업기상대와 연계하여 토양수분관측망 (soil moisture monitoring network)을 구축하였으며, 표토 10 cm에 토양수분센서를 전국 168 지점에 설치하여 운영하고 있다. 본 연구에서는 강수량을 기반으로 산정한 표준강수지수 (Standardized Precipitation Index, SPI)와 지하수위를 기반으로 산정한 표준지하수위지수 (Standardized Groundwater Level Index, SGI), 토양수분관측망의 토양수분의 상관 분석을 수행하고자 한다. 밭작물 가뭄의 중요 요소인 토양수분 함량은 강수에 즉각적으로 반응하는 반면 지표수 및 지하수는 상대적으로 장기간의 강수에 영향을 받기 때문에, 본 연구의 결과는 향후 밭작물 지역의 가뭄 취약성을 관리하는 지표로 활용이 가능할 것으로 사료된다.

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Characteristics of Soybean Growth and Yield Using Precise Water Management System in Jeollanam-do

  • JinSil Choi;Dong-Kwan Kim;Shin-Young Park;Juhyun Im;Eunbyul Go;Hyunjeong Shim
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2023.04a
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    • pp.79-79
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    • 2023
  • With the development of digital technology, the size of the smart agriculture market at home and abroad is rapidly expanding. It is necessary to establish a foundation for sustainable precision agriculture in order to respond to the aging of rural areas and labor shortages. This study was conducted to establish an automated digital agricultural test bed for soybean production management using data suitable for agricultural environmental conditions in Korea and to demonstrate the field of leading complexes. In order to manage water smartly, we installed a subsurface drip irrigation system in the upland field and an underground water level control system in the paddy field. Based on data collected from sensors, water management was controlled by utilizing an integrated control system. Irrigation was carried out when the soil moisture was less than 20%. For effective water management, soil moisture was measured at the surface, 15cm, and 30cm depth. The main growth characteristics and yield, such as stem length, number of branches, and number of nodes of the main stem, were investigated during the main growth period. During the operation of the test bed, drought appeared during the early vegetative growth period and maturity period, but in the open field smart agriculture test bed, water was automatically supplied, reducing labor by 53% and increasing yield by 2%. A test bed was installed for each field digital farming element technology, and it is planned to verify it once more this year. In the future, we plan to expand the field digital farming technology developed for leading farmers to the field.

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Long-term drought modifies carbon allocation and abscisic acid levels in five forest tree species

  • Umashankar Chandrasekaran;Kunhyo Kim;Siyeon Byeon;Woojin Huh;Ah Reum Han;Young-Sang Lee;Hyun Seok Kim
    • Journal of Ecology and Environment
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    • v.47 no.4
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    • pp.241-249
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    • 2023
  • Background: This study analyzed the drought responses of five forest tree species grown in Korean peninsula, Korean fir Abies koreana (Ak), eastern white pine Pinus strobus (Ps), keyaki Zelkova serrata (Zs), tulip tree Liriodendron tulipifera (Lt), and Japanese elm Ulmus japonica (Uj). Physiological (chlorophyll, root collar diameter [RCD]) and biochemical responses (non-structural carbohydrates, proline, lipid peroxidase and abscisic acid [ABA]) of the plants grown under mild (MD) and severe drought (SD) were compared. Results: In this study, three soil moisture regimes: control (100% precipitation), MD (60% reduction in precipitation) and SD (20% reduction in precipitation) were applied. Soil moisture content showed high water content in control site compared to MD and SD. A decline in RCD was found for Korean fir, keyaki, and tulip plants, with eastern white pine and Japanese elm showing no significant decline to the prolonged drought exposure (both MD and SD). Total chlorophyll showed a significant decline in Korean fir and tulip, with the sugar levels indicating a significant increase in Korean fir and keyaki species under SD compared to control plants. Non-significant decline in sugar level was noted for eastern white pine and Japanese elm. High accumulation of ABA, malondealdehyde and proline was noted in Korean fir, tulip, and keyaki under SD compared to control. Signs of tree mortality was only observed in Korean fir under MD (38%) and SD (43%). Conclusions: The observed findings indicate the drought responses of five tree species. The majority of the morpho-physiological (especially mortality) and biochemical variables assessed in our study indicate superior long-term drought resistance of Ps and Uj compared to the highly sensitive Ak, and moderately sensitive Lt and Zs. The results provided will help species selection for afforestation programs and establishment of sustainable forests, especially of drought-tolerant species, under increased frequency and intensity of spring and summer droughts.

The Effect of Highland Weather and Soil Information on the Prediction of Chinese Cabbage Weight (기상 및 토양정보가 고랭지배추 단수예측에 미치는 영향)

  • Kwon, Taeyong;Kim, Rae Yong;Yoon, Sanghoo
    • Journal of Environmental Science International
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    • v.28 no.8
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    • pp.701-707
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    • 2019
  • Highland farming is agriculture that takes place 400 m above sea level and typically involves both low temperatures and long sunshine hours. Most highland Chinese cabbages are harvested in the Gangwon province. The Ubiquitous Sensor Network (USN) has been deployed to observe Chinese cabbages growth because of the lack of installed weather stations in the highlands. Five representative Chinese cabbage cultivation spots were selected for USN and meteorological data collection between 2015 and 2017. The purpose of this study is to develop a weight prediction model for Chinese cabbages using the meteorological and growth data that were collected one week prior. Both a regression and random forest model were considered for this study, with the regression assumptions being satisfied. The Root Mean Square Error (RMSE) was used to evaluate the predictive performance of the models. The variables influencing the weight of cabbage were the number of cabbage leaves, wind speed, precipitation and soil electrical conductivity in the regression model. In the random forest model, cabbage width, the number of cabbage leaves, soil temperature, precipitation, temperature, soil moisture at a depth of 30 cm, cabbage leaf width, soil electrical conductivity, humidity, and cabbage leaf length were screened. The RMSE of the random forest model was 265.478, a value that was relatively lower than that of the regression model (404.493); this is because the random forest model could explain nonlinearity.

Effect of Organic Fertilizer Ratios on the Growth of Spiraea × bumalda 'Gold Mound' in the Container Green Wall Systems with Rainwater Utilization (빗물활용 벽면녹화 용기 내 유기질비료 배합비에 따른 노랑조팝나무의 생육 반응)

  • Ju, Jin-Hee;Kim, Hya-Ran;Yoon, Yong-Han
    • Journal of Environmental Science International
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    • v.20 no.11
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    • pp.1417-1423
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    • 2011
  • For evaluating the effect of various organic fertilizer ratios on the Spiraea${\times}$bumalda 'Gold Mound' growth, a container green wall system experiment was conducted in a greenhouse at Konkuk university. The experimental planting grounds were prepared with different organic fertilizer ratios ($A_1L_0$, $A_8L_1$, $A_4L_1$ $A_2L_1$ and $A_1L_1$) and with drought tolerance and an ornamental value Spiraea${\times}$bumalda 'Gold Mound' was planted. The change in soil moisture contents, plant height, number of branches, number of dead leafs, number of leaf, number of shoots, length of node, length of leaf, width of leaf, root-collar caliper, chlorophyll contents and survival rate were investigated from April to Jun 2010. 1. The result of soil moisture contents was analyzed with weight unit in the container green wall system during the dry summer season. The soil moisture contents were significantly enhanced in the container green wall system in increasing order as the amount of fertilizer level increased $A_1L_1$ > $A_2L_1$ > $A_4L_1$ > $A_8L_1$ > $A_1L_0$. 2. Compared to the control treatment (amended soil with 100% + organic fertilizer 0%) application, the highest plant growth was observed in the treatment of $A_2L_1$(amended soil with 67% + organic fertilizer 13%) application. However, the differences between the organic fertilizer ratio treatments of $A_1L_1$, $A_4L_1$, $A_8L_1$, and the $A_1L_0$ organic fertilizer application were mostly not significant. 3. The survival rate increased with the increasing application of organic fertilizer, but in the control treatment (amended soil with 100% + organic fertilizer 0%) application all the plants died. Experimental results from the presented study clearly demonstrated that the organic fertilizer improved the survival rate more than the Spiraea${\times}$bumalda 'Gold Mound' growth at different levels of organic fertilizers. This strain can be utilized as a plant growth application in living wall systems during the dry summer season. Therefore, Spiraea${\times}$bumalda 'Gold Mound' is expected to be a highly valuable shrub for the green wall system if it should be considered in integration with stormwater retention or as a soil conditioner for increasing soil water contents in planting ground.

The Amount of Macro and Micro Elements Absorbed During Soil Cultivation of Cut-flower Roses (Rosa hybrida L.) (절화장미 토양재배시 미량 및 다량 원소의 양분 흡수량)

  • Lee, In-Bog;Lim, Jae-Hyun;Choi, Yong-Mun
    • Korean Journal of Soil Science and Fertilizer
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    • v.34 no.5
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    • pp.358-364
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    • 2001
  • To obtain information for the proper fertilization management of cut-flower roses, the amount of macro and micro elements absorbed by cut-flower roses from soil for a year was investigated. Three cut-flower rose cultivars which are called 'Grandgara', 'Nobless', and 'Centina' were transplanted to a sandy loam soil, N-P-K standard fertilization was applied to the soil, and drip irrigation was done at the level of 10 kPa soil moisture tension. There was not significantly different in the harvest amount of cut-flower rose between 'Grandgara' and 'Nobless', but the harvest yield of 'Centina' was about 63% level when compared to that of 'Grandgara'. Considering seasonal changes in the content of nutrients in plant, parts, the uptake of untrients was higher in winter season than that in spring and summer seasons. Except for 'Centina', the nutrient amount removed from plant parts of 'Grandgara' and 'Nobless' increased with the sequence of floral part < stem < leaf, indicating that it is more dependent on biomass yield than on the content of nutrients in each plant part. The ratio of N/K amount absorbed by 'Nobless' and 'Centina' was 1.13 and 1.28. respectively, lower than 1.68 of 'Grandgara', showing that the requirement for K is greater in 'Nobless' and 'Centina' than in 'Grandgara'. The use efficiency of nutrients by cut-flower roses ranged from 39 to 64% in nitrogen, 5 to 9% in phosphorus, and 37 to 67% in potassium. It suggests that the requirement for P in cut-flower roses is very low.

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