• Title/Summary/Keyword: 양분함량

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Effect of Subsurface Drip Pipes Spacing on the Yield of Lettuce, Irrigation Efficiency, and Soil Chemical Properties in Greenhouse Cultivation (지중 점적관수 호스 설치 간격이 상추 수량, 관수량 및 토양 화학성에 미치는 영향)

  • Park, Jin Myeon;Lim, Tae Jun;Lee, Seong Eun
    • Korean Journal of Soil Science and Fertilizer
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    • v.45 no.5
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    • pp.683-689
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    • 2012
  • This research was carried out to investigate the effect of installation spacing of subsurface drip irrigation pipe on the mineral content, nutrient uptake, yield of lettuce, water requirement for irrigation, and soil chemical properties in greenhouse cultivation. Semi-forcing and retarding culture were implemented in this experiment, with four treatments containing overhead spray irrigation and three subsurface irrigation lateral spacing intervals of 30, 40, 50 cm at a depth of 30 cm from soil surface, respectively. Each mineral content of lettuce grown under subirrigation system did not show significant difference between treatments, however the uptake of nutrients was lower at 50 cm-distance. The yield was largest in 30 cm-subirrigation (SI), followed by 40 cm-SI, overhead spray, and 50 cm-treatment. Water requirement for irrigation was highest in overhead spray, and it was in reverse proportion to the distance of irrigation pipes. $NO_3$-N content in the soil, at a depth of 10 cm, showed a higher value in 50 cm-SI, followed by 40 cm-SI, overhead spray and 30 cm-SI. Exchangeable K content was highest in 50 cm-SI, Mg was highest in 40 cm-SI, and Ca was lowest in 30 cm-SI. In conclusion, the lettuce yield was not different between 30 and 40 cm-SI, but water requirement for irrigation was lower as the distance of irrigation pipes was further. And it seems to be needed more precise research on this theme, because crop yield and the dynamics of soil minerals in subsurface irrigation can vary with the depth and distance of irrigation pipes, dripper, water flow depending on the soil texture, and plant response to soil minerals.

Changes in Nutrient Distribution, Cycling, and Availability in Aspen Stands after an Intensive Harvesting (집약적(集約的)인 벌채(伐採)로 인한 미국(美國)사시나무림내 양분(養分)의 분포(分布), 순환 (循環) 및 가용성(可溶性)의 변화(變化))

  • Kim, Dong Yeob
    • Journal of Korean Society of Forest Science
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    • v.85 no.4
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    • pp.656-666
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    • 1996
  • Aspen demand has increased recently in the Great Lakes region in the United States. Since aspen has moved into the region in late 1800's, its growing stock has increased so as to change forestry industry of the Lake States. Intensive timber harvesting and biomass removal may cause nutrient depletion, especially on nutrient-poor sites. Forest nutrients and nutrient cycling were investigated in aspen stands of 7-10, 27-33, and 41-42 year-old growing on sandy soils in Minnesota. Nutrients added to the aspen stands by atmospheric deposition and soil weathering were efficiently absorbed and stored in the tree biomass. Aboveground biomass increased from $24.4t{\cdot}ha^{-1}$ at young stands to $139.2t{\cdot}ha^{-1}$ at mature stands. Nutrients accumulated in the tree biomass showed same magnitude of difference. Nutrients added to the site through atmospheric deposition were in the order of Ca, N, K, Mg, and P. Annual litterfall was greater in older stands. However, the amount of nutrients returned by litterfall was not significantly different among stand ages due to the greater nutrient contents in the litterfall of young stands. Litter decomposition and nutrient release rates were greater at young stands than at older stands. Likewise, nutrient availability was higher in young aspen stands and became lower as the stands grew older. Nutrient leaching loss was minimal at all stand ages. Soil N mineralization was greater at young stands than at older stands. Nutrient cycling process was facilitated in young aspen stands with an increased level of available nutrients, Based on the estimations of nutrient balance and nutrient removal by harvesting, Ca was the most critical element which was likely to be depleted if aspen stands are intensively harvested with short rotations.

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Effects of Completed Mineral Fertilizer on Barley (보리에 대한 종합무기성분 거름의 효과)

  • Jeong, Young Ho
    • Korean Journal of Soil Science and Fertilizer
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    • v.5 no.1
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    • pp.17-23
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    • 1972
  • The effect of completed mineral fertilizer on barley was investigated on ordinary upland and newly recrimed soil derived from granite, basalt and shale. 1. Yield of barley grains with application of completed meneral fertilizer 1 level varied from 100.8% to 233.1% on various soils in different parents rock, and 2 levels of the fertilizer varied from 250.1% to 309.5% on ordinary upland and newly recrimed soil derived from granite compared with control plot. But no effect on newly recrimed soil derived from basalt and shale. 2. $P_2O_5$, MgO and B contents in straw were increased, but Mn contents was decreased on all of soil. N contents in straw was decreased on the soil derived from granite, but $K_2O$ contents was increased on the soil derived from basalt and shale. 3. Relation between the yield and absorbed nutrient had related with positive correlection of 1-5%. 4. N and Mn contents in soil were decreased by application of completed mineral fertilizer, but soil pH, C.E.C. $Av-P_2O_5$, Ex-CaO, Ex-MgO and B contents were increased. Especially soil pH and C.E.C. were increased remarkably. 5. Relation between the yield and Ex-CaO and Ex-MgO contents in soil had related with positive correlation, but Mn contents had related with negative correlation.

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Nutrient Distribution and Requirements of Jinok, Hongisul Grapevine Bred in Korea (국내 신품종 포도 품종 진옥, 홍이슬의 수체양분분포 및 양분요구도)

  • Jung, Sung Min;Chang, Eun Ha;Kim, Jin Guk;Park, Seo Jun;Nam, Jong Chul;Roh, Jeong Ho;Hur, Youn Young;Park, Kyo Sun
    • Journal of Bio-Environment Control
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    • v.21 no.4
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    • pp.327-335
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    • 2012
  • Nutrient uptake of each part of grapevine in the new grapevine cultivars (Jinok, Hongisul) was analyzed for making standard of annual fertilizations at four years. One year grown diploid cultivar 'Jinok' was showed more vigorous growth of root than other cultivar. Annually total nutrient of grapevine was absorbed with the same ratio of three major nutrients (Nitrogen, Phosphate, and Potassium). However about 30% of total absorbed nutrient of 3~4 year grown grapevine was distributed bunches. Potassium was measured as major nutrient in the bunch, accumulated in the peel and flesh (about 1% of D.W.). Magnesium was mainly accumulated in the petiole (about 1% of D.W.). Calcium has accumulated in the leaf (about 0.95% of D.W.), that concentration in this part was similar concentration of nitrogen (about 1.25% of D.W.). Nutrient requirement of four year grown 'Jinok' (N; 55.5 g, P; 7.7 g, K; 42.0 g, Ca; 34.6 g, Mg; 11.1 g) required less fertilizers than 'Campbell Early' (N; 57.4 g, P; 7.9 g, K; 44.4 g, Ca; 37.3 g, Mg; 12.2 g) needed. 'Hongisul' required less fertilizers compared to other grapevine cultivars, but cultural practice system for production of grape should be develop to improve their poor bud burst and fruit set.

Effects of Growing Density and Cavity Volume of Containers on the Nitrogen Status of Three Deciduous Hardwood Species in the Nursery Stage (용기의 생육밀도와 용적이 활엽수 3수종의 질소 양분 특성에 미치는 영향)

  • Cho, Min Seok;Yang, A-Ram;Hwang, Jaehong;Park, Byung Bae;Park, Gwan Soo
    • Journal of Korean Society of Forest Science
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    • v.110 no.2
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    • pp.198-209
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    • 2021
  • This study evaluated the effects of the dimensional characteristics of containers on the nitrogen status of Quercus serrata, Fraxinus rhynchophylla, and Zelkova serrata in the container nursery stage. Seedlings were grown using 16 container types [four growing densities (100, 144, 196, and 256 seedlings/m2) × four cavity volumes (220, 300, 380, and 460 cm3/cavity)]. Two-way ANOVA was performed to test the differences in nitrogen concentration and seedling content among container types. Additionally, we performed multiple regression analyses to correlate container dimensions and nitrogen content. Container types had a strong influence on nitrogen concentration and the content of the seedling species, with a significant interaction effect between growing density and cavity volume. Cavity volumes were positively correlated with the nitrogen content of the three seedling species, whereas growing density negatively affected those of F. rhynchophylla. Further, nutrient vector analysis revealed that the seedling nutrient loading capacities of the three species, such as efficiency and accumulation, were altered because of the different fertilization effects by container types. The optimal ranges of container dimension by each tree species, obtained multiple regression analysis with nitrogen content, were found to be approximately 180-210 seedlings/m2 and 410-460 cm3/cavity for Q. serrata, 100-120 seedlings/m2 and 350-420 cm3/cavity for F. rhynchophylla, and 190-220 seedlings/m2 and 380-430 cm3/cavity for Z. serrata. This study suggests that an adequate type of container will improve seedling quality with higher nutrient loading capacity production in nursery stages and increase seedling growth in plantation stages.

Dependence of Nutrient Supplying Capacity on Chemical reactions of Paddy Soil (논토양 화학특성 변화와 양분공급력과의 관계)

  • Kim, Yoo-Hak;Kim, Myung-Sook;Kang, Seong-Soo;Jun, Hee-Joong
    • Korean Journal of Soil Science and Fertilizer
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    • v.42 no.spc
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    • pp.33-39
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    • 2009
  • The practice of supplying nutrients for paddy soil with sustaining human health and ecological soundness is to utilize indicators considering soil chemical reactions. The long-term basis experiment of fertilizer and amendment of paddy soil and an experiment of yield response of soil types on nitrogen level from 2000 till 2002were used to search indicators of nutrient supplying capacity related to soil chemical reactions. Chemical reactions of paddy soil was composed of dissociating and/or adsorbing nutrients and of decomposing soil organic matter (SOM) into $H^+$, $e^-$, $CO_2$ in paddy soil. The indicators of nutrient supplying capacity, which were established by considering soil chemical reactions, were SOM or soil protein for nitrogen and available phosphate for phosphorus and cation exchangeable capacity (CEC) and exchangeable potassium for potassium. Korea has used fertilizer recommendation equations established with the indicators of nutrient supplying capacity for paddy soil.

Changes in Organic and Inorganic Nutrients in Terminal Shoots of 'Fuyu' Persimmon during Spring Growth (감나무 정단신초의 봄 생장 동안 유기 및 무기 양분의 변화)

  • Yoon, Young-Whang;Choi, Seong-Tae;Park, Doo-Sang;Rho, Chi-Woong;Kim, Dae-Ho;Kang, Seong-Mo
    • Horticultural Science & Technology
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    • v.32 no.3
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    • pp.279-288
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    • 2014
  • To understand changes in composition and distribution of nutrients during early shoot growth of persimmon, organic compounds and inorganic elements of terminal shoots were analyzed for about 40 days from the time of foliation. Sample shoots were collected from mature 'Fuyu' trees for this three-year experiment and they were divided to stem, leaves, and the fruits including flower buds at the earliest stage. During shoot growth, concentration of soluble sugars increased in both leaves and fruits, but that of starch increased only in leaves. Those of amino acids tended to decrease in all the parts but there was no consistent change in proteins. As shoots grew, contents of all the organic compounds in a shoot increased, and they were especially higher in May leaves accounting for more than 60% of the shoot total for each nutrient. Along with shoot growth, concentrations of N and P gradually decreased in all three parts, while K decreased only in stem. However, those of Ca and Mg did not show notable changes in all the parts with wide variations depending on the year. Due to the quantitative increase in growth, contents of inorganic elements in a shoot increased in all the parts and the leaves accounted for 54-82% of the shoot total. At the cessation time of extension growth, a shoot contained 526-768 mg of soluble sugars, 245-844 mg of starch, 26-31 mg of amino acids, and 66-103 mg of proteins for three years. On the other hand, a shoot contained 203-388 mg of K, the greatest among the inorganic elements, followed by 132-159 mg of N. Changes of the nutrients in a shoot were much greater during the earlier stage of growth after foliation than during the later stage toward growth cessation, suggesting the importance of mobilizing reserve nutrients for the early growth of the shoots. The results of this study also suggested that the rate of nutrient changes, especially during the earlier stage of shoot growth, could be affected by environmental and cultural conditions.

Effects of Organic Fertilizer Applications on Soil Properties and the Development of Chinese Cabbage (Braccica campestris) in the Alpine Regions of Korea (강원도 고랭지 채소 재배지에 시비한 유기물이 토양과 배추의 성장에 미치는 영향)

  • Kim, Su-Jung;Yang, Jae-E.;Shin, Young-Oh
    • Korean Journal of Organic Agriculture
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    • v.15 no.1
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    • pp.85-91
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    • 2007
  • 광범위하게 집중적으로 채소 재배에 이용되고 있는 강원도 태백산맥 지역의 고랭지를 대상으로 유기물 시용이 토양의 비옥도를 비롯한 화학적 성질에 미치는 영향을 조사했다. 또한 이런 조건에서 재배되는 배추의 생장과 수확량, 그리고 품질을 평가했다. 토양에 첨가한 많은 양의 돈분과 톱밥, 계분과 톱밥, 계분, 퇴비 등의 유기물질과 화학비료가 토양 유기물 함량에는 결과적으로 거의 영향을 미치지 못했다. 토양의 pH에도 마찬가지로 별 영향이 없었다. 그러나 K와 함께 Fe와 Mn의 함량은 감소한 반면 Ca와 Mg의 함량은 증가했으며 특히 유효 $P_2O_5$는 대단히 많은 양이 축적되는 것을 발견하였다. 배추의 양분함량을 내엽과 외엽으로 구분하여 분석한 결과 일반적으로 외엽의 영양소 함량이 내엽보다 많았으며 토양에 첨가한 유기물질의 종류간에는 별 차이가 없었다. 수확량에도 첨가한 유기물질의 종류가 뚜렷한 차이를 나타내게 하지 않았으며 병충해에 의한 피해는 관찰되지 않았다.

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Soil and Leaf Nutrient Properties by Establishment Periods of Chesnut (Castanea crenata Sieb. et. Zucc.) Orchards in Sancheong-gun (경상남도 산청군 밤나무 재배지의 조성 기간에 따른 토양 및 잎 양분 특성)

  • Kim, Choon-Sig;An, Hyun-Chul;Cho, Hyun-Seo;Lim, Jong-Taek;Byun, Jae-Kyeong
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.6
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    • pp.1137-1143
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    • 2011
  • Optimum soil management of chestnut orchards is important to ensure high quality and yields of chestnut. This study was conducted to evaluate soil and green leaf characteristics by establishment periods of chestnut (Castanea crenata Sieb. et. Zucc.) orchards in Sancheong-gun, Gyeongsangnam-do. Total 30 plots with the criteria of similar cultivation practices were chosen and classified into two establishment periods by over 20-year-old orchards (17 plots) and below 19-year-old orchards (13 plots). Soil bulk density was significantly higher (p<0.05) in over 20-year-old ($1.16g\;cm^{-3}$) than in below 19-year-old ($1.03g\;cm^{-3}$) plots. Soils in over 20-year-old plots were severely acidified with pH 4.56 compared to pH 4.73 in below 19-year-old plots. However, soil organic matter, total nitrogen, available phosphorus, and potassium were not significantly different (p>0.05) between both establishment periods. Leaf area, leaf mass, and nutrient (N, P, K, Ca, Mg) concentration of green leaves were also not significantly different (p>0.05) between both establishment periods. The results indicate that soil bulk density in chestnut orchards is dependent on the establishment periods, while soil chemical property and leaf nutrient concentration may be little influenced by the establishment periods.

Supplement Method of Drained Solution in Tomato Cultivation Using Recycling Systems (순환식시스템을 이용한 토마토 양액재배에서 배액의 재순환 방법)

  • 강경희;권기범;최영하;김회태;이한철
    • Journal of Bio-Environment Control
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    • v.12 no.2
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    • pp.89-94
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    • 2003
  • This study was conducted to identify the effect of recycling method of drained solution on the concentration of drained solution, and growth and yield of tomato in the recycling system. The recycling methods of drained solution were composed of control, MEC (measurement of EC) and ANS (analysis of nutrient solution). The plant height in the early growth stage was not different among the treatments, but plant fresh weight and dry weight were higher in the MEC or the ANS than in the control. The growth including fruit number, fruit weight, and yield of tomato in the ANS as compared with the control was favorable. The EC of drained solution tended to decrease in the early growth stage, but that of drained solution increased in the late growth stage. It was low in the MEC and the ANS as compared with the control. The pH of drained solution was maintained by 6.2 to 6.5 throughout the growth period in the MEC and the ANS, but the pH of the control increased up to 7.2 at the late growth stage. The N and K concentrations of drained solution tended to decrease in the early growth stage, while those of P, Ca and Mg increased. In the late growth stage, concentrations of N, P, Ca and Mg tended to decrease, but that of K in the ANS was very low. Concentrations of N, P, K, Ca and Mg were lower in the MEC and the ANS than in the control.