• Title/Summary/Keyword: Nutrient Accumulation

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Chemical Budgets in Intensive Carp Ponds

  • Peng Lei;Oh Sung-Yong;Jo Jae-Yoon
    • Fisheries and Aquatic Sciences
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    • v.6 no.4
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    • pp.194-202
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    • 2003
  • Budgets for water, nitrogen, and chemical oxygen demand (COD) were determined in two 0.012 ha earthy-bottom ponds stocked with Israeli strain common carp at an initial stocking density of $20\;fish/m^3$. Total ammonia nitrogen (TAN) concentrations increased continuously but later decreased in pond A as a consequence of high nitrification. COD concentrations increased during the experimental period due to the accumulation of feed input. Nutrient budgets showed that feed represented $94-95\%$ of nitrogen input and about 99% of organic matter input. Fish harvest accounted for $40\%$ of nitrogen and organic matter input. Seepage and water exchange removed $15-17\%$ of nitrogen input but only $1-2\%$ of organic matter. Draining of the ponds removed $20-26\%$ of input nitrogen, mostly in inorganic forms, but removed only minus organic matter. Fish and water column respiration accounted for $39\%$ of organic matter input, and benthic respiration accounted for $7-12\%$ of organic matter input. No significant change of nitrogen and organic matter in both pond bottoms were found during the three-month growth period. The unrecovered input nitrogen, about $6.3-13\%$, was lost through denitrification and ammonia volatilization. On a dry matter basis, fish growth removed $31\%$ of total feed input and left $69\%$ as metabolic wastes.

Role of litter production and its decomposition, and factors affecting the processes in a tropical forest ecosystem: a review

  • Giweta, Mekonnen
    • Journal of Ecology and Environment
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    • v.44 no.2
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    • pp.81-89
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    • 2020
  • In the forest ecosystems, litterfall is an important component of the nutrient cycle that regulates the accumulation of soil organic matter (SOM), the input and output of the nutrients, nutrient replenishment, biodiversity conservation, and other ecosystem functions. Therefore, a profound understanding of the major processes (litterfall production and its decomposition rate) in the cycle is vital for sustainable forest management (SFM). Despite these facts, there is still a limited knowledge in tropical forest ecosystems, and further researches are highly needed. This shortfall of research-based knowledge, especially in tropical forest ecosystems, may be a contributing factor to the lack of understanding of the role of plant litter in the forest ecosystem function for sustainable forest management, particularly in the tropical forest landscapes. Therefore, in this paper, I review the role of plant litter in tropical forest ecosystems with the aims of assessing the importance of plant litter in forest ecosystems for the biogeochemical cycle. Then, the major factors that affect the plant litter production and decomposition were identified, which could direct and contribute to future research. The small set of studies reviewed in this paper demonstrated the potential of plant litter to improve the biogeochemical cycle and nutrients in the forest ecosystems. However, further researches are needed particularly on the effect of species, forest structures, seasons, and climate factors on the plant litter production and decomposition in various types of forest ecosystems.

An Experimental Study on Wastewater Treatment by Modified Activated Sludge Process (변형된 활성슬러지공법의 폐수처리에 관한 실험적 연구)

  • 채수권;연기석
    • Water for future
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    • v.22 no.1
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    • pp.117-125
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    • 1989
  • This study deals with the performance of an acivated sludge system which is modified by the researcher to function without any additional chemical or internal recyle in removing organics, nitrogen, and phosphorus from synthetic wastewater. To improve the nutrient removal efficiency, the researcher utilized the anoxic, anaerobic, and aerobic reactor sequences with a single sludge return, whiched to nitrification/denitrification and phosphorus release/overplus accumulation. A bench scale system was operated with a view to investigating the reaction characteristics of each reactor, and to measuring the biological kinetic coefficients(Y, $K_d$, k, $K_s$) for theremoval of COD in relation to the mean cell residence time at five different MLSS concentrations, 5000, 4200, 3300, 2600, and 1900 mg/l. The results of the research showed that organic substance and nutrient were removed simultaneously by this modified activated sludge process. And the process kad 66%-99% ortho-p removal efficiency.

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Behaviors of nitrogen, iron and sulfur compounds in contaminated marine sediment

  • Khirul, Md Akhte;Cho, Daechul;Kwon, Sung-Hyun
    • Environmental Engineering Research
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    • v.25 no.3
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    • pp.274-280
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    • 2020
  • The marine sediment sustains from the anoxic condition due to increased nutrients of external sources. The nutrients are liberated from the sediment, which acts as an internal source. In hypoxic environments, anaerobic respiration results in the formation of several reduced matters, such as N2 and NH4+, N2O, Fe2+, H2S, etc. The experimental results have shown that nitrogen and sulfur played an influential, notable role in this biogeochemical cycle with expected chemical reductions and a 'diffusive' release of present nutrient components trapped in pore water inside sediment toward the bulk water. Nitate/ammonium, sulfate/sulfides, and ferrous/ferric irons are found to be the key players in these sediment-waters mutual interactions. Organonitrogen and nitrate in the sediment were likely to be converted to a form of ammonium. Reductive nitrogen is called dissimilatory nitrate reduction to ammonium and denitrification. The steady accumulation in the sediment and surplus increases in the overlying waters of ammonium strongly support this hypothesis as well as a diffusive action of the involved chemical species. Sulfate would serve as an essential electron acceptor so as to form acid volatile sulfides in present of Fe3+, which ended up as the Fe2+ positively with an aid of the residential microbial community.

effects of Sand Mulching on Forage Production in Newly Reclaimed Tidal Lands II. Studies on growth , dry matter accumulation and nutrient quality of selected forage crops grown on saline soils (간척지 사료작물 재배에 있어서 모래를 이용한 토양 mulching의 효과 II. 간척지 재배목초의 생육 및 건물축적형태와 사료가치에 관한 연구)

  • 김정갑;한민수
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.10 no.2
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    • pp.77-83
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    • 1990
  • A three year's field experiment was carried out on newly reclaimed tidal saline soils to evaluate the salt tolerance and growht characteristics, and their relationship to dry matter production and nutrient quality of main selected pasture species. Nine temperate grasses (14 varieties) and two forage crops (sorghum and pearl millet) were grown under different mulching treatments with medium sand and red-yellow soils (fine loamy materials of Typic Hapludults) from 1986 to 1988. Tall wheatgrass, tall fescue, reed canarygrass and alfalfa showed a good tolerance to soil salinity, especially tall wheatgrass (cv. Alkar) produced 19.6 ton/ha dry matter yield annualy under mulching treatment with medium sand depth in lcm. Pearl millet (cv. Gahi-3) was also evaluated as a salt tolerable forage species. Under salt stress in newly reclaimed tidal lands, plant showed a decrease in the assimirable leaf area (LA) as well as specific leaf area (SP. LA) and a low leaf weight ratio(LWR), and it resulted in a low concentration of crude protein and low digestible dry matter contents. Absorption of macro and micro elements in the plant on tidal lands was increased markedly.

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Effect of Selenium on Storability of Basil (Ocimum basilicum) in Hydroponics (양액재배 시 selenium의 첨가가 basil의 저장에 미치는 영향)

  • Kim, Min-Soon;Park, Kuen-Woo
    • Horticultural Science & Technology
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    • v.19 no.1
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    • pp.87-91
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    • 2001
  • The aim of this study was to select the proper temperature for MA storage and to study the effect of sodium selenate ($Na_2SeO_4$) on storability of hydroponically grown sweet basil. Sweet basil was cultured with 1 fold using the nutrient solution developed by European Vegetable R & D Center in Belgium. Three-weeks before harvest, sodium selenate ($Na_2SeO_4$) was treated 2, 4, 6 and $8mg{\cdot}L^{-1}$ in the nutrient solution. Although electrolyte leakage of sweet basil was remarkably increased because of chilling injury at $5^{\circ}C$ MA storage, storage life was extended for three more days by selenium supplement. The weight loss was lower at $10^{\circ}C$ than at $5^{\circ}C$ and vitamin C content was higher at $10^{\circ}C$ than $5^{\circ}C$ storage treatment. Se treatment increased vitamin C content and decreased ion leakage in the plant. Accumulation of Se in the leaves of basil was increased with Se concentration of the nutrient solution. Se accumulation was $66{\mu}g{\cdot}g^{-1}$ dry mass at $2mg{\cdot}L^{-1}$ treatment and $422{\mu}g{\cdot}g^{-1}$ dry mass at $8mg{\cdot}L^{-1}$ treatment. The results suggest that storage at $10^{\circ}C$ is good for reduction of chilling injury and maintain marketability of basil. Less than $2mg{\cdot}L^{-1}$ sodium selenate treatment is acceptable for human health.

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Chemical Properties of the Greenhouse Soil and Nutrient Contents in Leaves and Stems of Carnation, Lily, and Rose. (카네이션, 백합, 장미 시설재배지 토양중 양분함량 과 품종별 경엽중 양분함량)

  • Hwang, Ki-Sung;Ho, Qyo-Soon
    • Korean Journal of Environmental Agriculture
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    • v.19 no.3
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    • pp.247-251
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    • 2000
  • This study was conducted to investigate tissue nutrient contents and salt accumulation in plastic house soils cultivating lily, rose and carnation. The soil tested had high total salts, available phosphate and exchangeable potassium. The soil cultivating rose had highest salt concentvation followed by chose of carnation and lily. Tissue nutrient contents of lily were higher than chose of carnation and rose. In comparison among cultivars, the nutrient contents were as follows; 'Snow Qeen'>'Le Reve'>'Casa Blanca' in lily; 'Marina'>'Super star'>'Mary Devor'>'Madelon' in carnation; and 'Cocktail'> 'Marina'>'Maderon' in rose. The range of the nutrient contents were: T-N: $1.66\;{\sim}2.35%$, K: $1.73{\sim}2.23%$, Zn: $2.13{\sim}6.43\;mg/kg$, Cu: $3.79{\sim}13.89\;mg/kg$ in carnation; T-N: $0.79{\sim}1.65%$, P: $0.18{\sim}0.44%$, Ca: $0.59{\sim}1.26%$, Mg: $0.21{\sim}0.46%$, Zn: $23.65{\sim}90.30\;mg/kg$, Cu: $0.99{\sim}4.62\;mg/kg$ in lily; and T-N: $0.75{\sim}1.62%$, P: $0.17{\sim}0.30%$, K: $1.60{\sim}2.91%$, Ca: $0.64{\sim}0.94%$, Zn: $24.57{\sim}48.31\;mg/kg$, Cu: $3.10{\sim}9.08\;mg/kg$ in rose. The amount of nutrients uptake per plant was high in order of: K > T-N > Ca > Mg in lily; and T-N > K > Ca > P > Mg in rose.

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Nutrient Dynamics and Water Quantity of Throughfall and Stemflow in Natural Oak Stands in Korea (우리나라 참나무 천연림에 있어서 임내우의 수량변화 및 양분동태)

  • Jin, Hyun-O;Son, Yo-Whan
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.9 no.1
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    • pp.61-70
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    • 2007
  • This study was conducted to investigate nutrient dynamics and water quantity of throughfall and stemflow in natural oak stands in Korea. The ratio of the total throughfnll and stemflow to the amount of precipitation varied with locations. It was considered that the ratio was affected not only by the characteristics of tree species but also by regional, weather and other environmental conditions. It was, therefore, necessary to set up a water control system to launch a tending project for natural oak stands. Comparisons of nutrient amount in throughfall among regions reflected regional characteristics. $Ca^{2+},\;Mg^{2+}$ and $K^+$ ions were leached from the canopy and yellow sand accumulation. $Na^+$ and $Cl^-$ were marine-borne. $NO_3^-$ and $SO_4^{2-}$ resulted from dry deposition of air pollutants. Nutrient amount in the stemflow was as low as about 10% of that in the total throughfall and stemflow. The pH of stemflow in natural oak stands in urban areas ranged from 3 to 5. Influx of the acidic stemflow to soil could, in the long term, affect pH in soil solution and nutrient dynamics around root zones.

Influence of Total Abdominal Fat Accumulation on Serum Lipids and Lipoproteins in Korean middle-aged men (한국 중년 남성에서 복부지방 축적이 혈청 지질 및 지단백 농도에 미치는 영향)

  • 허갑범;이종호;백인경;안광진;정윤석;김명중;이현철;이영해;이양자
    • Journal of Nutrition and Health
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    • v.26 no.3
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    • pp.299-312
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    • 1993
  • Anthropometry, computed tomography(CT) at the umbilical level, nutrient intake, blood pressure, serum levels of lipids and lipoproteins and response of glucose, c-peptide, insulin, and free fatty acid(FFA) during oral glucose tolerance test(OGTT) were estimated on 11 normal-weight controls and 35 overweight and obese middle-agd men. The areas of total abdominal, subcutaneous and visceral were determined by CT scanning technique. Total abdominal fat area correlated the most significantly with the levels of serum lipids, lipoproteins and insulin among several obese indices. Compared with normal-weight controls, overweight and obese men with abdominal fat lower than 29000$\textrm{mm}^2$ showed an increase in waist-hip ratio, areas of total abdominal(35%), visceral and subcutaneous fat and C-peptide response area during OGTT, though age, percent ideal body weight, body mass index, % body fat, and all biochemical indices except C-peptide response area were not different between two groups. Overweight and obese men with abdominal fat greater than 29000$\textrm{mm}^2$ showed a higher values in total abdominal fat(85%), serum levels of triglyceride, total-and LDL-cholesterol, the ratio of LDL-to HDL-cholesterol, and response areas of FFA, insulin and C-peptide during OGTT than normal-weight controls. Overweight and obese men with great abdominal fat showed an increase in alcohol ingestion and percent calorie intake per total energy expenditure, compared with normal-weight controls. Our results indicate that obesity and a certain level of total abdominal fat accumulation is required to observe abnormal levels of serum lipids, lipoproteins and insulin in Korean middle-aged men. In addition, increased alcohol and calorie intake and decreased physical activity could partly explain total abdominal fat accumulation in men.

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t10,c12 Conjugated Linoleic Acid Upregulates Hepatic De Novo Lipogenesis and Triglyceride Synthesis via mTOR Pathway Activation

  • Go, Gwang-Woong;Oh, Sangnam;Park, Miri;Gang, Gyoungok;McLean, Danielle;Yang, Han-Sul;Song, Min-Ho;Kim, Younghoon
    • Journal of Microbiology and Biotechnology
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    • v.23 no.11
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    • pp.1569-1576
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    • 2013
  • In mice, supplementation of t10,c12 conjugated linoleic acid (CLA) increases liver mass and hepatic steatosis via increasing uptake of fatty acids released from adipose tissues. However, the effects of t10,c12 CLA on hepatic lipid synthesis and the associated mechanisms are largely unknown. Thus, we tested the hypothesis that gut microbiota-producing t10,c12 CLA would induce de novo lipogenesis and triglyceride (TG) synthesis in HepG2 cells, promoting lipid accumulation. It was found that treatment with t10,c12 CLA ($100{\mu}M$) for 72 h increased neutral lipid accumulation via enhanced incorporation of acetate, palmitate, oleate, and 2-deoxyglucose into TG. Furthermore, treatment with t10,c12 CLA led to increased mRNA expression and protein levels of lipogenic genes including SREBP1, ACC1, FASN, ELOVL6, GPAT1, and DGAT1, presenting potential mechanisms by which CLA may increase lipid deposition. Most strikingly, t10,c12 CLA treatment for 3 h increased phosphorylation of mTOR, S6K, and S6. Taken together, gut microbiota-producing t10,c12 CLA activates hepatic de novo lipogenesis and TG synthesis through activation of the mTOR/SREBP1 pathway, with consequent lipid accumulation in HepG2 cells.