• Title/Summary/Keyword: Wet Fractionation

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Size Fractionation of Cellulose Nanofibers by Settling Method and Their Morphology (셀룰로오스 나노섬유의 중력침강법에 의한 치수분획 및 형태학적 성질)

  • Park, Chan-Woo;Han, Song-Yi;Lee, Seung-Hwan
    • Journal of the Korean Wood Science and Technology
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    • v.44 no.3
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    • pp.398-405
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    • 2016
  • The cellulose nanofibers (CNFs) were prepared by wet disk-milling (WDM) and fractionated by settling method into supernatant, middle and sediment fractions. The diameter and its distribution of the fractionated CNFs were investigated. With increasing WDM passing number, precipitation became delayed. Weight fraction at sediment fraction was decreased, whereas those at supernatant and middle fractions were increased with increasing WDM passing number. Diameter distribution of CNFs at supernatant fraction was narrowest and became broaden at middle and sediment fraction. Filtration time was longer in order of supernatant, middle and sediment fraction.

Studies on the Lipid and Fatty Acid Compositions of Ark-Shell, Anadara broughtonii (피조개 지질 및 지방산 조성에 관한 연구)

  • 문숙임
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.21 no.4
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    • pp.436-442
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    • 1992
  • The present study was designed to analyze the lipid and fatty acid compositions of ark shell, Anadara broughtonii. The crude lipid was extracted by Bligh and Dyer's method, and then fractionated by TLC and quantitatively analyzed by TLC scanner. Lipid extracted from ark shell was fractionated into neutral and polar lipid by column chromatography with silicic acid. The fatty acid composition of lipid fractions were determined by gas liquid chromatography. Total lipid content of ark shell was 0.83% base on wet weight. The content of unsaponifiable matter was 20.19%, and iodine value was 156.13. The main components of total lipids were triglyceride, diglyceride, hydrocarbon, and sterol ester. The fatty acid composition of total lipid chiefly consisted of $C_{17 : 0}$, $C_{16 : 0}$, $C_{18 : 1}$ and $CT_{16 : 1}$. The main fatty acids of neutral lipid were $C_{16 : 0}$, $C_{18 : 1}$, $C_{22 : 1}$, $C_{18 : 0}$ and $C_{16 : 1}$. The major fatty acids of polar lipid were $C_{16 : 0}$, $C_{18 : 2}$, $C_{20 : 5}$ and $C_{22 : 6}$. In total lipid fractionation, saturated acid contents were high in all (SA>MA> PA), in neutral lipid fractionation, menoenoic acid contents were high in all (MA > SA> PA), and in polar lipid fractionation, saturated acid con-tents were high in all (SA> PA> MA).

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Purification and Characterization of Hpa I endonuclease (Hpa I endonuclease의 정제와 특성)

  • Yoon, Ho Sup;Kang, Sun Chul;Yoo, Ouk Joon
    • Microbiology and Biotechnology Letters
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    • v.13 no.1
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    • pp.87-91
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    • 1985
  • Hpa I endonuclease from Haemophilus parainfluenzae has been purified of homogeneity and its physical and ezymatic properties have been studied. For the purification of the enzyme, Heparin agarose, SP-sephadex C-25, DEAE-sephadex A-50 and phosphocellulose chromatography columns were used. The denatured and reduced form of the enzyme is a monomer of molecular weight of $30,000{\pm}1,000$ as judged by 10% polyacrylamide gel electrophoresis containing 0.1% sodium dodesyl sulfate. Hpa I endonuclease was maximally active at neutral pH (7.0 to 7.5) in the presence of 50 mM NaCl.

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Recycling of Wastepaper(V): -Calcium Hardness Control of Process Water for Zero-Discharge System- (고지재상연구 (제5보) -공정수 폐쇄화를 위한 칼슘경도 조절-)

  • 지경락;류정용;신종호;송봉근;오세균
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.31 no.2
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    • pp.15-24
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    • 1999
  • A new technique for recycling of white water was developed in order to reduce the calcium hardness in a closed OCC recycling system. Calcium ions present in the white water were precipitated as calcium carbonate by reacting with sodium carbonate, and the precipitated $CaCO_3$ was removed from the system using a flotation fractionation method, which has been commonly used in deinking process. In the flotation stage, a mixed gas of $CO_2$-air was purged into the flotation cell because the pH of $Na_2CO_3$-treated white water was reduced to neutral by $CO_2$ gas. Since $CaCO_3$ precipitate tends to stick onto fine fiber surface and then selectively removed from the white water, a proper amount of suspended solid in white water acts as an important factor for deciding the removal efficiency. By the application of $Na_2CO_3$ addition-$CO_2$ flotation to the short circulated white water, the calcium hardness was significantly reduced by 87% and more. Removal of calcium ions with fine fibers led to a drainage improvement, reduction of fresh water consumption, and enhanced efficiency of wet-end chemicals.

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Comminution-Classification of Clay-type Minerals by Fluid Energy Mill (Fluid Energy Mill에 의한 점토성 무기소재 미립화 분급기술 소고)

  • 김태욱;김만영;정필조;이주완
    • Journal of the Korean Ceramic Society
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    • v.22 no.5
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    • pp.47-53
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    • 1985
  • In view of innovated utilization of Korean clay resources conventional techniques for pulverization are reviewed in comparison with fluid energy milling processes of fluidized-bed type. Throughout experiment indigenous halloysite ores (white grade) after usual pretreatment are employed as typical sample. It is evidenced that grinding by means of porcelain ball mills has limitation in reducing clay particles to less than 10${\mu}{\textrm}{m}$ in diameter regardless of whether it is processed in dry or wet. Upon use of tungsten carbide bull mill particulation to submicron sizes could be effected with relative ease but severe coloration in grey is attended indicating metallic contamination possibly from friction of the grinding apparatus itself. In contrast the modified fluid en ergy milling enables particulation to $\leq$10${\mu}{\textrm}{m}$ in diameter with simultaneous classification int olimited ranges of particle size distributions. Since this technique is in principle based on the interparticle collisions rather than on the frictions between particles and mill surfaces minimum impurity attendance would be an additional advantage. Evidence leads to the conclusion that the fluidized-bed type milling is regarded as highly effective in puverization as well as fractionation of the clay minerals under examination. This is especially so in contemplating high-value and/or high-purity clay products.

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The Changes in Drying Efficiency and Paper Properties of Linerboard by the Application of the Fractions of Wood Powder as a Bulking Agent (목질 벌크향상제 분획별 적용에 따른 라이너지의 건조효율 및 물성변화)

  • Kim, Dong-Seop;Yoon, Do-Hyun;Sung, Yong Joo
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.46 no.5
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    • pp.61-68
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    • 2014
  • The energy efficiency of papermaking process becomes more significant because of various new regulation of the energy consumption and the green house gas emission. In this study, the effects of wood powder addition on the drainage and the drying efficiency of the OCC based paper products, linerboard, were deeply investigated for improving energy efficiency. The fractionation of wood powder depending on the size were conducted. The bigger size of wood powder resulted in the higher bulk and the higher drainage efficiency, but the lower paper strength. The drying efficiency were in detail evaluated depending on the drying process level. In the first section of drying process until the 80% solid level, there were no significant changes in the drying efficiency by the addition of wood powder. However, after the 80 % solid level, the drying efficiency was greatly improved by the addition of wood powder. Those results showed the addition of wood powder could greatly affect not only the drainage in forming and wet pressing but also the drying process.

A Study on the Konjak Mannan-hydrolyzing Enzymes from Aspergillus awamori (Aspergillus awamori 가 생산하는 konjak mannan 분해효소에 관한 연구)

  • Chang, Kyung-Jung;Lee, Su-Rae
    • Applied Biological Chemistry
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    • v.15 no.3
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    • pp.199-206
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    • 1972
  • As a study on the konjak mannan-hydrolyzing enzymes from Aspergillus awamori, the culture conditions for enzyme formation, purification and properties of the enzymes and the effect of gamma-irradiation on the enzymatic hydrolysis were investigated. The results are summarized as follows: 1) A strain of A. awamori was selected as having the highest productivity of mannanase among 81 species of molds. 2) The optimum conditions for solid culture on wheat bran were 3 days of culture period, pH 4 of spraying water and 100% addition of tap water. 3) The optimum conditions for shaking culture were 6 days of culture period, addition of 0.1% xylose plus 0.5% konjak mannan and of 0.04% peptone. 4) Konjak mannan-hydrolyzing enzymes were separated into fraction I and fraction II by ammonium sulfate fractionation and DEAE-Sephadex column chromatography. 5) Fractions I and II showed pH optima of 4, pH stability of $3.5{\sim}5$ and $3{\sim}6$ and the extent of hydrolyzing konjak mannan 9% and 50%, respectively. 6) Hydrolysis of konjak mannan by a crude enzyme preparation was partially accerelated by gamma-irradiation of substrate above 0.5 Mrad and the effect was more remarkable by irradiating in wet state than in dry state. 7) Gamma-irradiation of konjak mannan brought about the increase in reducing power and decrease in viscosity and the effect was more remarkable in wet state than in dry state.

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Influence of Drying Temperature and Duration on the Quantification of Particulate Organic Matter

  • Lee, Jin-Ho;Doolittle, James J.;Lee, Do-Kyoung;Malo, Douglas D.
    • Korean Journal of Environmental Agriculture
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    • v.25 no.4
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    • pp.289-296
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    • 2006
  • Various drying conditions, temperatures (40 to $80^{\circ}C$) and durations (overnight to 72 hrs), for the particulate organic matter (POM) fraction after wet-sieving size fractionation have been applied for determination of POM contents in the weight loss-on-ignition method. In this study, we investigated the optimum drying condition for POM fraction in quantification of POM and/or mineral-associated organic matter (MOM; usually indirectly estimated). The influence of the drying conditions on quantifying POM was dependent upon soil properties, especially the amount of soil organic components. In relatively high organic soils (total carbon > 40 g/kg in this study), the POM values were significantly higher (overestimated) with drying at $55^{\circ}C$ than those values at $105^{\circ}C$, which were, for example, 173.2 and 137.3 mg/kg, respectively, in a soil studied. However, drying at $55^{\circ}C$ for longer than 48 hrs of periods produced consistent POM values even though the values were much higher than those at $105^{\circ}C$. Thus, indirect estimates of MOM (MOM = SOM-POM) also tended to be significantly impacted by the dry conditions. Therefore, we suggest POM fractions should be dried at $105^{\circ}C$ for 24 hrs as determining POM and MOM contents. If the POM traction is needed to be dried at a lower temperature (e.g. $55^{\circ}C$) with a specific reason, at least 48 hrs of drying period is necessary to obtain consistent POM values, and a moisture correction factor should be determined to adjust the values back to a $105^{\circ}C$ weight basis.

Carbohydrate and lipid spectroscopic molecular structures of different alfalfa hay and their relationship with nutrient availability in ruminants

  • Yari, Mojtaba;Valizadeh, Reza;Nnaserian, Abbas Ali;Jonker, Arjan;Yu, Peiqiang
    • Asian-Australasian Journal of Animal Sciences
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    • v.30 no.11
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    • pp.1575-1589
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    • 2017
  • Objective: This study was conducted to determine molecular structures related to carbohydrates and lipid in alfalfa hay cut at early bud, late bud and early flower and in the afternoon and next morning using Fourier transform infrared spectroscopy (FT/IR) and to determine their relationship with alfalfa hay nutrient profile and availability in ruminants. Methods: Chemical composition analysis, carbohydrate fractionation, in situ ruminal degradability, and DVE/OEB model were used to measure nutrient profile and availability of alfalfa hay. Univariate analysis, hierarchical cluster analysis (CLA) and principal components analysis (PCA) were conducted to identify FT/IR spectra differences. Results: The FT/IR non-structural carbohydrate (NSCHO) to total carbohydrates and NSCHO to structural carbohydrate ratios decreased (p<0.05), while lignin to NSCHO and lipid CH3 symmetric to CH2 symmetric ratios increased with advancing maturity (p<0.05). The FT/IR spectra related to structural carbohydrates, lignin and lipids were distinguished for alfalfa hay at three maturities by PCA and CLA, while FT/IR molecular structures related to carbohydrates and lipids were similar between alfalfa hay cut in the morning and afternoon when analyzed by PCA and CLA analysis. Positive correlations were found for FT/IR NSCHO to total carbohydrate and NSCHO to structural carbohydrate ratios with non-fiber carbohydrate (by wet chemistry), ruminal fast and intermediately degradable carbohydrate fractions and total ruminal degradability of carbohydrates and predicted intestinal nutrient availability in dairy cows ($r{\geq}0.60$; p<0.05) whereas FT/IR lignin to NSCHO and CH3 to CH2 symmetric stretching ratio had negative correlation with predicted ruminal and intestinal nutrient availability of alfalfa hay in dairy cows ($r{\geq}-0.60$; p<0.05). Conclusion: FT/IR carbohydrate and lipid molecular structures in alfalfa hay changed with advancing maturity from early bud to early flower, but not during the day, and these molecular structures correlated with predicted nutrient supply of alfalfa hay in ruminants.