• Title/Summary/Keyword: Change of nutrient contents

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Effect of Moisture Content and Storage Periods on Nutrient Composition and Organic Acids Change in Triticale Round Bale Silage

  • Ilavenil Soundharrajan;Jeong-Sung Jung;Hyung Soo Park;Hyun Jeong Lee;Ouk‐Kyu Han;Ki-Choon Choi
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.42 no.4
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    • pp.270-275
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    • 2022
  • Livestock production costs are heavily influenced by the cost of feed, The use of domestically grown forages is more desirable for livestock feed production. As part of this study, triticale, which is an extremely palatable and easily cultivable crop in Korea, was used to produce low moisture silage bales with lactic acid bacteria (LAB) and then stored for different periods. We examined the nutrient content of silage, such as crude protein (CP), acid detergent fiber (ADF) and neutral detergent fiber (NDF), as well as their organic acids, including lactic acid, acetic acid, butyric acid, at different storage periods. The nutrient content of silages, such as crude protein, ADF, and NDF, did not change significantly throughout storage periods. Organic acid data indicated that lactic acid concentrations increased with increasing moisture contents and storage periods up to nine months. However, further extending storage to 12 months resulted in a reduction in the lactic acid content of all silages as well as an increase in their pH. Based on the present results, it suggested that the production of low moisture silage with the LAB may be able to preserve and maintain its quality without altering its nutritional composition. Also, the lactate content of the silage remained significant for at least nine months.

Macro and Micro Nutrient Contents in Leaves of Greenhouse-grown Cucumber by Growth Stages (시설재배 오이의 생육시기별 엽 중 다량요소와 미량요소 함량)

  • Lee, Ju-Young;Sung, Jwa-Kyung;Lee, Su-Yeon;Jang, Byoung-Choon;Kim, Rog-Young;Kang, Seong-Soo
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.2
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    • pp.215-220
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    • 2011
  • In order to estimate the inorganic nutrient content in cucumber leaves at respective growth stages under greenhouse conditions, we investigated five cucumber farms practicing a forcing cultivation system with nine-month growth period and another five cucumber farms practicing a semiforcing cultivation system with six-month growth period. The cucumber yield in forcing and semiforcing cultivation systems amounted to 14.8 ton $10a^{-1}$ and 10.7 ton $10a^{-1}$, respectively. Soils between two different cultivation systems showed no significant differences in pH, organic matter contents and exchangeable cation contents during early growth stage, whereas EC, $NO_3$-N and available $P_2O_5$ contents were higher in soils of semiforcing cultivation systems. Suitable soil temperature was well provided by forcing cultivation. The highest NPK contents in leaves were observed in 60~80 days after planting for forcing systems and in 100 days after planting for semiforcing systems. Thereby forcing cultivation systems showed somewhat higher NPK contents. Ca and Mg contents in cucumber leaves did not significantly change during the growth period in forcing systems, while semiforcing systems showed the highest contents of Ca and Mg in 80~100 days after planting. Fe, Mn and Zn contents in leaves also did not significantly change during the growth period, whereas Mn contents were slightly higher in forcing systems due to lower soil pH. B contents in leaves were higher in semiforcing systems because of higher available B contents in soil.

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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Investigation of Water Quality in the Laver Bed at Yongwon Ri, Changwon Gun During the Spring and Neap Tide in March 1970 (경남 창원군 능동면 용원리 김밭의 수질에 대하여)

  • Won, Chong Hun
    • 한국해양학회지
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    • v.5 no.1
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    • pp.30-36
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    • 1970
  • The water quality of the laver bed at Yongwon Ri, Changwon Gun was investigated during the spring and neap tide in March 1970. The effect of tide on the contents of various chemical constituents was irregular and the variation ranges of the contents were narrow. The pH value during flood and ebb tide was a constant of 8.2. The chlorosity range varied from 19.15 to 19.33g/l, the difference of 0.18g/l being comparatively small for coastal waters. The nutrient salts contents varied irregulary with the change in tide, but nitrite and soluble iron were not detected. In local distribution, chlorosity and silicate- silicon contents were found to be more at Sts. 1, 2 and 3 in the eastern area than at Sts. 4, 5 and 6 in the western area, wheras nitrate and ammonia contents were found to be more at Sts. 4, 5 and 6. The nitrate content was especially high, being twice as much as that at Sts. 1, 2 and 3 in the eastern area. In the spring tide, chlorosity was found, on the average, to be as much as 0.06g/l higher than in the neap tide, but the contents of nutrient salts were higher in the neap tide, especially the nitrate content was twice as much. When compared with other selected local laver beds, i.e., the tidal flats of the Nackdong and Somjin rivers, and of Wan Do Gun, the chlorosity level was highest but the nutrient salts contents level was, in general, slightly lower and the variation ranges narrow in the laver bed at Yongwon ri. The nitrate content, in particular was one tenth smaller than the others.

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Effect of Nutrient Solution Composition Modification on the Internal Quality of Some Leaf Vegetables in Hydroponics (수경재배시 양액 조성 처리가 몇가지 엽채류의 내적 품질에 미치는 영향)

  • Kang, Ho-Min;Kim, Il-Seop
    • Journal of Bio-Environment Control
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    • v.16 no.4
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    • pp.348-351
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    • 2007
  • This study was conducted to find out the change of infernal quality, such as vitamin C and nitrate contents in some leaf vegetables grown hydropoincally in different nutrient conditions. Pak-choi (Brassica camperistis L. spp. chinesis Jusl.), chungchima (Lactuca sativa L. var. crispa cv. Chungchima) and romaine (Lactuca sativa L. var. longifolia Lam.) lettuces were cultivated for 2 weeks in 4 different nutrient solutions, such as tap water; no-nutrient, added $NH_4$, discarded $NO_3$, and supplied Yamazaki' solution for lettuce as a control. The growth of leaf vegetables was not different among nutrient solution treatments except tap water. The nitrate content showed the highest in control, and followed by $+NH_4$ treatment, $-NO_3$ and tap water treatment, regardless of kind of vegetables. The vitamin C content in 3 different vegetables showed the opposite result against nitrate content so that the treatment that showing the highest vitamin C content was tap water in romaine and chungchima lettuces, and $-NO_3$ treatment in pak-choi. The vitamin C and the nitrate content showed high correlations; $r=-0.614^*$ in pak-choi, $-0.651^*$ in romaine lettuce, and $-0.804^{**}$ in chungchima lettuce.

Growth Rate and Nutrient Content Changes of Humulus japonicus

  • Ju, Eun-Jeong;Kim, Jae-Geun;Lee, Yang-Woo;Lee, Bo-Ah;Kim, Heung-Tae;Nam, Jong-Min;Kang, Ho-Jeong
    • Journal of Ecology and Environment
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    • v.29 no.5
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    • pp.461-467
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    • 2006
  • The growth pattern and the seasonal changes in nutrient contents of Humulus japonicus were investigated. Stem length of H. japonicus reached the maximum from 240 to 260 Julian date and the median value was found at 255 Julian date. The maximum leaf area was observed from 235 to 248 Julian date and the median value was at 240 Julian date. The maximum growth rate of the stem length ranged from 205 to 227 Julian date. The leaf area showed the maximum growth rate from 196 to 214 Julian date. The median date in the growth rate of the stem length and leaf area was 212 and 205 Julian date, respectively. The growth rate of H. japonicus was related to rainy season and precipitation. Phosphorus and sodium contents of H. japonicus were correlated with maximum potential rate of relative growth. Although stem biomass of H. japonicus was $ 1.5{\sim}3.5$ times larger than that of leaf, N content of the leaf ($4.48{\sim}5.27%$) was about 2 times higher than that of the stem ($2.00{\sim}3.62%$). High content of N might be responsible for the high growth rate of H. japonicus in summer. This result provides valuable information for appropriate timing for the removal of H. japonicus.

Effects of Nutrient Concentrations for Each Growing Stages on Beet(Beta vulgaris L. cv. Detroit) Growth (생육단계별 배양액농도가 비트(Beta vulgaris L. cv. Detroit)의 생육에 미치는 영향)

  • 박권우;강호민;박용건
    • Journal of Bio-Environment Control
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    • v.5 no.2
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    • pp.138-144
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    • 1996
  • This experiment was conducted to decide appropriate nutrient concentration for beet soilless culture by different nutrient concentration treatment between before and after root enlargement. Yamazaki's solution for head lettuce was used 0.5, 1, 2, 4 strength for before root enlargement and 0.5, 1, 2, 4 strength was treated after root enlargement. Root weight was good in 0.5, 1, 2 strength treatment before, then change treatment to 4 strength after root enlargement. But 4 strength treatment after root enlargement increase pithiness and root cracking. Vitamin C contents was low in 0.5 and 4 strength treatments after root enlargement. Betaxanthin and betacyanin were involved high concentration in lower nutrient concentration after root enlargement despite the treatments of before root enlargement. Therefore 1, 2 strength before root enlargement and 2 strength after root enlargement treatments is recommendable for nutrient culture of beet.

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Characteristics of inorganic nutrient absorption of potato (Solanum tuberosum L.) plants grown under drought condition

  • Bak, Gyeryeong;Lee, Gyejun;Kim, Taeyoung;Lee, Yonggyu;Kim, Juil;Ji, Samnyeo
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.181-181
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    • 2017
  • Global warming and climate change have been one of the most important problems last 2 decades. Global warming is known to cause abnormal climate and influence ecology, food production and human health. According to climate change model global warming is causing expansion of drought and increase of evaporation. Therefore, securing water in agriculture has been an important issue for crop cultivation. As potato is susceptible to drought, water shortage generally results in decrease of yield and decrease of biomass. In this research, we investigated characteristics of inorganic nutrient absorption and growth of plants grown under drought condition. Plants were sampled in sites of Cheong-ju and Gangneung, where the severity of drought stress were different. During the growth period in Gangneung, total rainfall in 2016 decreased by 50% compared with those in last 5 years average. Especially, there was almost no rain in tuber enlargement period (from mid-May to mid-June). On the other hand, the total rainfall in of Cheong-ju was is similar to those in last 5 years average. Inorganic components including K, Ca and Mg and plant growth factors such as plant length, stem length, leaf area index and plant biomass were investigated. Tuber yields in both areas were investigated at harvest. Growth period of plants was is longer in Cheong-ju than that in Gangneung. Contents of all inorganic components were higher in plants grown in Cheong-ju than in Gangneung. The results were attributed to higher production of plant biomass in Cheong-ju. Considering the results, severe drought stress conditions in Gangneung accelerated plant aging and resulted in low plant growth. Although total yield was greatly reduced under drought stress the rate of commercial yield was is not significantly different with non-drought conditions.

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Studies on the Growth and Change of Mineral Nutrient Contents in Ginseng (Panax ginseng) Plant During the Growing Process (인삼의 생육과 무기양분의 계절적 변화)

  • 이종철;안대진;변정수
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.32 no.4
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    • pp.471-475
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    • 1987
  • Some physiological analysis and the trend of a change in mineral nutrient contents in 2 years old ginseng plants were investigated for 10 times at 15 to 25 days interval from April 25th to October 10. The growth of leaf in size was completed by the beginning of June and that of stem in height by the late of June. The trend of a seasonal change in root weight showed a form of V letter, that is, the weight was de-creased until late of May and increased continuously thereafter up to September. However, the duration of root growth might be dependent on the defoliation. The growth of root in length begins from the beginning of June and stops in the beginning of August. Relative growth rate, net assimilation rate and crop growth rate were all negative values in just after shoot-emergence. The values showed a peak in May and decreased gradually thereafter. The leaf area ratio showed a peak of 76$\textrm{cm}^2$/g in May, and down to 30$\textrm{cm}^2$ /g in the beginning of October. The contents of nitrogen and potassium in aerial part of ginseng plants decreased at the late growing season, but increased on lime. No seasonal changes on phosphate and magnesium were observed. The contents of nitrogen, phosphate and potassium in root decreased rapidly at the maximum growing season for the aerial part and increased gradually thereafter. Whereas no changes on lime and magesium were observed during the growing season.

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Seasonal biomass and carbon, nitrogen contents change of Schoenoplectus trigueter in Nakdong river estuary (낙동강 하구 갯벌에 생육하는 세모고랭이(Schoenoplectus triqueter)의 생체량 및 탄소, 질소 함량의 계절 변화)

  • An, Soonmo;Lee, Jiyoung;Jeong, Sinjae
    • Journal of Wetlands Research
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    • v.8 no.3
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    • pp.39-49
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    • 2006
  • Seasonal biomass and carbon, nitrogen contents change of marsh club-rush (Schoenoplectus trigueter) was investigated in Nakdong river estuary, located near Busan, Korea. New shoot of S. trigueter sprouted from tuber in April and fast growth season was followed until mature in August. Mature lengths of shoot and root were 60 and 9.4 cm, respectively. The increase of biomass showed similar seasonal trends with length. Mature biomass were $3.5gind^{-1}$ in wet weight and $0.6gind^{-1}$ in dry weight. The biomass of S. trigueter in areal basis was also highest during July and August ($186gDWm^{-2}$). The shoot of S. trigueter was disappeared in October from the ground but the biomass of shoot was maintained as a form of detritus in sediment. The amount of S. trigueter detritus was about 30~50% of the biomass in August. During winter, the amount of detritus decreased with time but the biomass of root+tuber remained same, implying the root+tuber part is alive. The net productivity of S. trigueter estimated from biomass change were $538gDWm^{-2}yr^{-1}$, $240g-Cm^{-2}yr^{-1}$, $8.2g-Nm^{-2}yr^{-1}$ in dry weight, carbon and nitrogen equivalent respectively. During winter, carbon to nitrogen ratio in detritus increased implying the preferred remineralization of nitrogen during microbial degradation.

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