• Title/Summary/Keyword: Nutrient concentration

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Nutrient Concentration and Stoichiometry in Plant Organs of Four Warm-temperate Forests in Southern Korea

  • Choonsig Kim
    • Journal of Korean Society of Forest Science
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    • v.113 no.1
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    • pp.66-72
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    • 2024
  • Determining the nutrient stoichiometry in plant organs is critical for understanding nutrient uptake and cycling in forest ecosystems. This study evaluated nutrient concentrations and stoichiometry in various plant organs (stem, bark, branches, and foliage) of species found in four warm-temperate forests in southern Korea. Cryptomeria japonica D. Don (CJ), Quercus serrata Thunb. (QS), evergreen broadleaved tree species (EB), and bamboo spp. (BB) were destructively sampled to measure nutrient (C, N, and P) concentrations in the plant organs. The mean C concentration in the stem was significantly higher in CJ than in QS, BB, or EB, whereas the C concentration in the foliage was the lowest in BB. The mean foliar N and P concentrations were higher in BB than in EB or CJ. The mean stem C:N and C:P ratios were highest in CJ but were lowest in the foliage of BB. Overall, stems of all species showed a strong positive correlation between C concentration and dry weight, but a negative correlation between N and dry weight. The N and P concentrations of foliage and bark were strongly correlated, whereas those of the stem and branches were poorly correlated. Positive correlations were detected between the C:N and C:P ratios in bark and foliage. These results indicate the existence of intraspecific differences in nutrient requirements in warm-temperate forest species and add to the understanding of nutrient uptake and storage patterns in the organs of species growing in warm-temperate forests.

Effects of the Different Concentration of the Nutrient Solution on the Growth and the Inorganic Matter Contents of Three Kinds of Fall Planting Namul Resources in Water Culture (양액농도가 추식 수경재배 나물자원 3종의 생장과 무기물 함량에 미치는 영향)

  • Cho, Ja-Yong;Kim, Hong-Gi;Yang, Seung-Yul;Park, Yun-Jum;Kim, Hyun-Ju;Heo, Buk-Gu
    • Journal of Bio-Environment Control
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    • v.16 no.1
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    • pp.7-12
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    • 2007
  • This study was conducted to clarify the effects of the different concentration of the nutrient solution on the early growth and the nutritional contents of hydroponically grown Aster koraiensis, Hemerocallis fulva and Plantago asiatica at 70 days after transplanting in perlite culture. Balanced nutrient solution formulated by Japanese Horticultural Experiment Station was used as the standard concentration of the nutrient solution. Overall plant growth of Aster koraiensis and Hemerocallis fulva such as plant height, stem diameter, number of loaves, fresh and dry shoot and root weight were significantly increased in 1.5 times concentration of nutrient solution. Shoot and root fresh and dry weight of hydroponically grown Plantago asiatica were significantly increased in the higher concentration of the nutrient solution, however, number of loaves and root length were significantly increased in the standard and the lower concentration of the nutrient solution. The highest contents of calcium, magnesium and sodium in plants were shown in Aster koraienxis which were grown in the 1.5 times concentration of nutrient solution, and Hemerocallis fulva and Plantago asiatica in 0.25 times of that. The contents of potassium in Aster koraiensis and Hemerocallis fulva were significantly increased when the plants were grown in the 0.5 times concentration of the nutrient solution, and that in Plantago asiatica in the 1.5 times concentration of the nutrient solution. The contents of phosphoric acid in plants as affected by the different species of Namul and the different concentration of the nutrient solution were not significant.

Development of Nutrient Solution Control System for Water Culture (수경재배(水耕栽培)의 양액관리(養液管理) 자동화(自動化) 시스템 개발(開發))

  • Lee, K.M.;Lee, J.S.;Sun, C.H.;Jang, I.J.;Song, J.G.;Koo, G.H.
    • Journal of Biosystems Engineering
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    • v.15 no.4
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    • pp.328-338
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    • 1990
  • The objective of this study was to develop automatic systems of nutrient solution management for optimal nutrient solution environment and labor saving in water culture which enables factory crop production. In this study, an automatic control system and its driving program are developed to prepare, supply, and recover nutrient solution and to keep the optimal solution concentration level using microcomputers. Based on this study, the following conclusions are obtained: 1. The concentration measured by the system using oscillating circuit designed and built in this study, gave good agreements with the actual nutrient solution. 2. In water culture, the period of 12 hours for measuring concentration, pH, and temperature of the nutrient solution was optimum. Addition of control solution due to the decrease of the nutrient solution concentration is required in every 3 to 5 days. 3. It is estimated that the period of the whole solution change is 15 days, however, further research is needed to assure it. In addition, this period must be shortened in the future. 4. Both the hardware and software of the developed optimal nutrient solution control system in the water culture are working very well, however, it is necessary to develop a more economical one-chip micro controller to substitute for the microcomputer.

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Optimum Concentration of Supply Nutrient Solution in Hydroponics of Sweet Pepper using Coir Substrates (코이어 배지를 이용한 착색단고추 수경재배 시 적정 급액농도)

  • Kim, Ho-Cheol;Cha, Seung-Hoon;Kim, Chul-Soo;Lee, Hye-Jin;Lee, Yong-Beom;Bae, Jong-Hyang
    • Journal of Bio-Environment Control
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    • v.17 no.3
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    • pp.210-214
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    • 2008
  • This experiment was carried out investigation of optimum concentration of supply nutrient solution in hydroponics of sweet pepper using coir substrates (coconut dust fiber=70% : 30%, v/v). During the growing period, it was found out that the electric conductivity (EC) would increase in proportion to the supply nutrient concentration but it was in inverse proportion to the moisture content. The pH of drainage was stable, while EC was high showing EC $7.3\;dS{\cdot}m^{-1}$ in EC $4.0\;dS{\cdot}m^{-1}$ of supply nutrient concentration. Also, standard deviation and coefficient of variation were high. Plant length was no difference by the supply nutrient concentration. Photosynthesis rate was generally high in supply nutrient concentration EC$4.0\;dS{\cdot}m^{-1}$. Fruit weight was heavy in supply nutrient concentration EC $4.0\;dS{\cdot}m^{-1}$, fruit shape was close to a regular square in supply nutrient concentration EC $3.5dS{\cdot}m^{-1}$.

Effect of Nutrient Solution Concentration on Growth, Yield and Fruit Quality of Fig Plant (Ficus carica L.) (배양액의 농도가 무화과(Ficus carica L.)의 생육, 수량 및 과실의 품질에 미치는 영향)

  • Jun Ha-Joon;Hwang Jin-Gyu;Son Mi-Ja;Kim Min;Kim Jeong-Pil
    • Journal of Bio-Environment Control
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    • v.15 no.3
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    • pp.264-269
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    • 2006
  • This experiment has investigated the effect of growth, yield and fruit quality of fig plant by different concentration of nutrient solution. Nutrient solution for pig plant were three concentrations of the balanced nutrient formula development by Japanese Horticultural Experiment Station. Plant height, number of leaves, stem diameter and number of fruit per plant were the best at 1/2 concentration. However, leaf length and leaf width did not show any difference in other treatment. Fruit length, fruit diameter and soluble solids did not differ from the different concentration of nutrient solutions. However, the fruit weight of fig plant was heavier by hydroponics than by soil culture in 2nd experiment. Early stage growth of fig plant was better at low concentration of nutrient solution and yield was better at high concentration. The result of this experiment will be utilized in the new application for fig plant hydroponics.

Nutrient Absorption by Citrus unshiu Marc. Grown in Out-Door Solution Culture (양액재배에서 감귤나무의 무기양분 흡수)

  • Anh, Nguyen Than;Kang, Tae-Woo;Song, Sung-Jun;Park, Won-Pyo;Nong, Nguyen Ngoc;U., Zang-Kual
    • Korean Journal of Soil Science and Fertilizer
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    • v.36 no.4
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    • pp.225-232
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    • 2003
  • Nutrients and water absorption by Citrus unshiu Marc. cv. Miyagawa Wase were examined using spray type of out-door hydroponics system. Three different concentration levels of nutrient solution were treated to citrus trees to examine nutrient uptake. To do so, concentration and the volume change of nutrient solution was measured for each treatment. By weighing the volume of solution and citrus trees, amounts of water uptake and fresh weight increase were observed periodically. Water uptake by trees increased as tree grew and time elapsed, but was lower at high level of nutrient concentration than the rest, due partly to the reduction in hydraulic conductance and to the sustained high salt concentration. Rapid increase in fresh weight and nutrient uptake occurred from May to July and from August to September. The amounts of nutrient uptake were significantly different among nutrient levels: the higher concentration, the greater uptake by citrus tree. The absorbed amounts of $NO_3$, K and Ca were much higher than those of $NH_4$, S, P, Mg, and Fe. Most mineral contents in leaves were proportional to the concentration of supplied nutrient solutions. From the results of nutrient absorption and contents in leaves at different levels of nutrient solutions, the composition of major elements for citrus nutrient solution can be modified as follows: 27.1, 16.5, 66.0, 80.0, and $24.0mg\;L^{-1}$ for N, P, K, Ca, and Mg, respectively.

Effect of Nutrient Concentration and Plant Growth Regulators on Rooting in Coleus Stem Cuttings (코레우스의 삽목시 배양액과 생장조절제처리가 발근에 미치는 영향)

  • 조은희;장매희
    • Journal of Bio-Environment Control
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    • v.6 no.4
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    • pp.277-283
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    • 1997
  • The effect of nutrient concentration and plant growth regulators on rooting of Coleus stem cuttings were investigated. In contrast to sand cutting, the nutrient solution or plant growth regulator treatment increased the root numbers and root length. The concentration of nutrient solution were 1, l/2 and 1/4 strength of the balanced nutrient solution developed by Japanese Horticultural Experimental Station and the highest root growth was obtained from 1/4 strength nutrient concentration. NAA or IBA treatment in culture solution stimulated the rooting and 0.01mg/l of NAA or IBA was effective in root development. Furthermore, days for rooting were shortened and root growth were promoted by mixing nutrient solutions with plant growth regulators and by using cutting with leaves. The rooting of Coleus was observed under microscope and the adventitious root formation initiated at 3 days after cutting with nutrient and auxin mixture.

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Effect of EC Levels in Nutrient Solution on the Growth of Juvenile Rose in Hydroponics Using Coir Substrate (코이어 배지 이용한 절화장미 수경재배 시 급액농도가 유묘기 생육에 미치는 영향)

  • Choi, Gyeong Lee;Cho, Myeong Whan;Cheong, Jae Woan;Rhee, Han Cheol;Kim, Young Cheol;Roh, Mi Young;Kang, Yun Im
    • Journal of Bio-Environment Control
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    • v.21 no.4
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    • pp.317-321
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    • 2012
  • This study was carried out to investigate the effect of EC levels in nutrient solution on the growth of rose in coir substrate during the juvenile. Nutrient concentration were EC 0.6, 1.0, 1.4, and $1.8dS{\cdot}m^{-1}$. In spite of high concentration of nutrient solution was supplied, EC and inorganic ions content in the extract of substrate was no difference by 22 days after planting. After that, they was rapidly increased with higher concentration of nutrient solution. Number of shoot was highest in EC $1.8dS{\cdot}m^{-1}$ at 2nd growth cycle, 90 days after planting, after that was showed a tendency to increase with increasing nutrient concentration, but was no significant difference among treatment except EC $0.6dS{\cdot}m^{-1}$. Judging by results of growth of rose and contents of inorganic ion in extracts of media, our experiment suggests that the suitable nutrient concentration is EC $1.8dS{\cdot}m^{-1}$ until 90 days and then EC $1.4dS{\cdot}m^{-1}$ until 165 days after planting that is more higher than conventional nutrient concentration for absorption by coir.

Litterfall and Nutrient Dynamics in Pine (Pinus rigida) and Larch (Larix leptolepis) Plantations

  • Kim, Choonsig;Koo, Kyo-Sang;Byun, Jae-Kyung
    • Journal of Korean Society of Forest Science
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    • v.94 no.5 s.162
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    • pp.302-306
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    • 2005
  • Litterfall and nutrient inputs were measured in even-aged coniferous plantations (a 31-year-old Pinus rigida and a 31-year-old Larix leptolepis) on a similar site condition in the Forest Practice Research Center, Gyeonggi Province. Litterfall was collected monthly from circular littertraps (collecting area: $0.50m^2$) for three years between April 1997 and February 2000. Average total annual litterfall was significantly higher for pine (5,802 kg/ha/yr) than for larch (4,562 kg/ha/yr) plantations. Needle litter in both plantations accounted for about 63% of total litterfall. Litterfall in the larch was distributed as follows: needle > other leaf > branch > miscellaneous > bark, while it was needle > miscellaneous > other leaf > branch > bark in the pine plantation. There was no temporal variation in needle litter, other leaf and bark during the 3 year study period. The concentrations of all nutrients (N, P, K, Ca, Mg) in needle litter were significantly higher in the larch than in the pine plantations. The annual nutrient concentration of needle litter in the larch varied among the years, whereas no year variation of needle litter was in the pine except for phosphorus (P). Nitrogen (N) and P inputs by needle litter were significantly higher for larch than for pine plantations established on a similar soil. The differences in N and P inputs were attributed to lower nutrient concentration in pine needle litter compared with larch needle litter, not to total needle litter mass. Annual inputs of nutrient in both plantations were not significantly different among years except for K of the larch although there was yearly different in needlefall mass and nutrient concentration during the 3-year observed period. The results indicate that the mechanisms of litterfall and nutrient inputs vary considerably between pine and larch plantations established on a similar site condition.

Effects of Nutrient Solution Strength on Growth and Nutrient Element Concentrations of Leaf Lettuce by Hydroponic Culture under Artificial Light (인공광을 이용한 수경재배에서 배양액 농도가 상추의 생장과 배양액 양분 농도에 미치는 영향)

  • Kim, D.E.;Lee, W.Y.;Heo, J.W.;Lee, G.I.;Kang, D.H.;Woo, Y.H.
    • Journal of Practical Agriculture & Fisheries Research
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    • v.19 no.1
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    • pp.5-14
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    • 2017
  • This study was conducted to investigate the effects of nutrient solution strength on growth and nutrient element concentrations in leaf lettuce (Lactuca sativa L. cv. 'Dduksum') by hydroponic culture under fluorescent lamp and LED. Leaf lettuce were grown in closed hydroponic cultivation systems supplied with 1/2, 1 and 2 strength of nutrient solution recommended by horticultural experiment station in Japan. The growth of 'Dduksum' was highest in the 2 strength of standard nutrient solution. The amount of nutrient element in the recycled nutrient solution was higher at 2, 1 and 1/2 strength of nutrient solution. The concentration of NO3-N, Ca2+, Mg2+ in the recycled nutrient solutions increased in 1 and 2 strength of nutrient solution but that of NH4-N decreased gradually in 1/2 and 1 strength of nutrient solution. The concentration of K, Ca, Mg in leaf lettuce was maintained in the normal range, whereas the concentration of phosphorous was 1.3 to 1.6%, which was higher than proper range. As the concentration of NH4-N decreases gradually in all the treatments, it is necessary to raise the rate of NH4-N or add it.