• Title/Summary/Keyword: 글루코오스

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Characteristics of Acid-hydrolysis and Ethanol Fermentation of Laminaria japonica (다시마의 산 가수분해와 에탄올 발효 특성)

  • Na, Choon-Ki;Song, Myoung-Ki
    • Korean Chemical Engineering Research
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    • v.50 no.1
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    • pp.141-148
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    • 2012
  • In order to study the utilization of brown seaweed Laminaria japonica as an alternative renewable feedstock for bioethanol production, the properties of acid hydrolysis and ethanol fermentation were investigated. The acid hydrolysis enhanced the final yield of fermentable sugars, which led great increase of ethanol productivity. The maximum yield of reducing sugars reached 135 mg/g-dry Laminaria japonica after 1.0N sulfuric acid-hydrolysis at $130^{\circ}C$ for 6 h. The Saccharomyces cerevisiae (ATCC 24858) could ferment $C_6$-sugars like glucose, galactose and mannose into ethanol, but not $C_5$-sugars like arabinose and xylose. Optimal fermentation time varied with sugars; 48 h for glucose, 72 h for galactose, and 96 h for mannose. Nevertheless, the ethanol yield from the hydrolysate reached 242 mg/g-dry Laminaria japonica after fermentation by the S. cerevisiae at $35^{\circ}C$ for 96 h, which corresponds to approximately 4 times more than the theoretical yield from total reducing sugars in the hydrolysates. It indicates that the non-reducing sugars or oligosaccharides dissolved in the hydrolysate played an important role in producing bioethanol. The ethanol concentration linearly increased from 2.4 to 9.2 g/L, while the ethanol yield per dry weight of biomass decreased from 242 to 185 mg/g, with increasing the ratio of biomass to acid solution from 1 to 5% (w/v). The bioethanol yield estimated was approximately 7,400~9,600 kg/ha/year, and indicated that Laminaria japonica is a promissing feedstock for bioethanol production.

Thermal and Optical Properties of Cellobiose Octa(cholesteryloxycarbonyl)alkanoates (셀로비오스 옥타(콜레스테릴옥시카보닐)알카노에이트의 열 및 광학 특성)

  • Jeong, Seung-Yong;Ma, Yung-Dae
    • Polymer(Korea)
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    • v.32 no.3
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    • pp.230-238
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    • 2008
  • The thermal and optical properties of cellobiose octa(cholestryloxycarbonyl)alkanoates CCCBn, $n=2{\sim}8$,10, the number of methylene units in the spacer) were investigated. All the samples formed monotropic cholesteric phases with left-handed helical structures. CCBn with n=2 or 10, in contrast with CCBn with $3{\leq}n{\leq}8$, did not display reflection colors over the full cholesteric range, suggesting that the helical twisting power of the cholesteryl group highly depends on the length of the spacer connecting the cholesteryl group to the cellobiose chain. The isotropic-cholestropic transition ($T_{ic}$) and glass transition temperatures decreased with increasing n and showed no odd-even effect. The transition entropy at $T_{ic}$ increased with increasing n from 2 up 6, but at n=7 it drops significantly and then increased again with increasing n from 8 to 10. The sharp change at n=7 may be attributed to a difference in arrangement of the side groups. The thermal stability and degree of order in the mesophase and the temperature dependence of the optical pitch observed for CCBn were significantly different from those reported for the cellulose tri(cholesteryloxycarbonyl)alkanoates and glucose penta(cholesteryloxycarbonyl)alkanoates. The results were discussed in terms of the differences in the degree of polymerization, the number of the mesogenic units per mole-glucose unit, and the conformation of the molecules.

The fabrication of bolometric IR detector for glucose concentration detection (글루코오스 농도 측정을 위한 볼로미터 타입의 적외선 센서 제작)

  • Choi, Ju-Chan;Jung, Ho;Park, Kun-Sik;Park, Jong-Moon;Koo, Jin-Gun;Kang, Jin-Yeong;Kong, Seong-Ho
    • Journal of Sensor Science and Technology
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    • v.17 no.4
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    • pp.250-255
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    • 2008
  • A vanadium pentoxide ($V_2O_5$)-based bolometric infrared (IR) sensor has been designed and fabricated using micro electro mechanical systems (MEMS) technology for glucose detection and its resistive characteristics has been illustrated. The proposed bolometric infrared sensor is composed of the vanadium pentoxide array that shows superior temperature coefficient of resistance (TCR) and standard silicon micromachining compatibility. In order to achieve the best performance, deposited $V_2O_5$ thin film is optimized by adequate rapid thermal annealing (RTA) process. Annealed vanadium oxide thin film has demonstrated a linear characteristic and relatively high TCR value (${-4}%/^{\circ}C$). The resistance of vanadium oxide is changed by IR intensity based on glucose concentration.

Studies on Sikhye Wine -1. Rice Sikhye Wine- (식혜주에 관한 연구 -1보. 멥쌀식혜 올리고당주-)

  • 안용근;김승겸;신철승
    • The Korean Journal of Food And Nutrition
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    • v.10 no.3
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    • pp.360-364
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    • 1997
  • Rice Sikhye was fermented by Saccharomyces cerevisiae for 10 day at 29$^{\circ}C$. Fermentable sugars such as glucose, maltose and maltotriose in rice Sikhye were converted into ethanol by the yeast, but limit dextrin was remained after the fermentation. Rice Sikhye wine was found to contain 5.3% of limit dextrin, 6.5% of ethanol, 2.9 $\mu$mol/ml of amino acid, 457$\mu\textrm{g}$/ml of protein, and the acidity of the Sikhye showed 3.1, respectively, and its pH was 3.67. Limit dextrin in rice Sikhye wine showed both signal of $\alpha$-1,4- and $\alpha$-1,6-glucosidic linkage wit its estimation ratio of 5.6:1 by 1H-NMR analysis. The taste of rice Sikhye wine was similar that of wine.

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Dongchimi Fermentation for Nangmyeon - Changes of Chemical Property during Fermentation - (냉면육수용 동치미 제조-발효과정 중 화학적 성질의 변화-)

  • 안용근
    • The Korean Journal of Food And Nutrition
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    • v.14 no.2
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    • pp.145-149
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    • 2001
  • One percent starch-added Dongchimi, and Dongchimi which 1% starch was not added. each using, 70% radish cut in 2cm size were fermented at 4$^{\circ}C$ for 30 days. HPLC and TLC analyses showed that the no starch-added Dongchimi had glucose, fructose, sucrose. The starch-added Dongchimi produced, mal-tose. maitotriose and maltotetraose by the hydrolysis reaction of amalyse. And the sugar contents were reduced in the process of fermentation. No starch-added Dongchimi showed 361 ${\mu}$g/ml of reducing sugar, 0.012 unit /ml of amylase activity, 3.82 of pH, 3.0 of acidity. The 1% starch-added Dongchimi showed 329 ${\mu}$g/ml of reducing sugar, 0.04 unit/ml of amylase acidity, 3.8 of pH. 3.15 of acidity.

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Permeation Properties of Insulin through Chitosan-g-Poly(4-vinyl pyridine ) Membrane (Chitosan-g-Poly(4-vinyl pyridine) 공중합체막을 통한 인슐린의 투과 특성)

  • Kim, Kong Soo;Kang, Seog Ho;Kim, Soo Jong;Lim, Jeong Kyu
    • Applied Chemistry for Engineering
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    • v.5 no.4
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    • pp.624-629
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    • 1994
  • Chitosan-g-poly(4-vinyl pyridine)membranes were prepared by crosslinking reaction using glutaraldehyde and glucose oxidase immobilized chitosan/acrylamide composite membranes were fabricated by chitosan-g-poly(4-vinyl-pyridine) copolymer and acrylamine. Water content and permeability of insulin through chitosan-g-poly(4-vinyl pyridine )membranes increased with decreasing the pH of the medium. Permeability of insulin through chitosan/acrylamide composite membranes increased with increasing the concentration of glucose.

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Aqueous Glucose Solution Measurement by Three Types NIR Spectrometer (세 가지 방식의 근적외선 분광분석기를 이용한 글루코오스 수용액의 측정)

  • 백주현;강나루;우영아;김효진
    • YAKHAK HOEJI
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    • v.47 no.6
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    • pp.461-468
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    • 2003
  • A method is described for measuring clinically relevant levels of glucose in a pH 7.4 phosphate buffer by nearinfrared (NIR) absorption spectroscopy. Three types of NIR spectrometer, dispersive type, photo-diode array (PDA) type, and fourier transform (FT) type spectrometer were used and the performance was compared. Spectra were collected with a cuvette cell or quartz liquid fiber of 1 mm or 2 mm optical pathlength as transmittance method. Glucose absorption band appeared at second overtone, first overtone, and combination region for all systems. By use of the multivariate technigue of partial least squares (PLS) regression, glucose concentrations can be determined with a 16, 44, and 9.1 mg/d l standard error of prediction for dispersive type, photo-diode array type, and fourier transform type system, respectively. Sensitivity of spectrometer was evaluated by absorbance for the difference of 10 mg/d l glucose. Three absorption bands, second overtone, first overtone, and combination region were suited to three types systems, dispersive type, photo-diode array type, and fourier transform type systems, respectively. This investigation showed that three types NIR spectrometer were proper method for identification and quantitative analysis of glucose and possible for noninvasive blood glucose monitoring.

Isolation and Characterization of Major Glycosphingolipid from Rice Bran Extract (쌀겨 추출물로부터 스핑고당지질의 분리와 구조결정)

  • Mitsutake, Susumu;Okada, Tadashi;Kang, Byoung-Won
    • Applied Biological Chemistry
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    • v.50 no.1
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    • pp.72-76
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    • 2007
  • In order to examine the biofunctions of glycosylceramide which is representative of sphingolipid, monoglycosylceramide (cerebroside) was isolated from rice bran extract. Crude glycosylceramides were isolated in large quantities and promptly by flash system column chromatography from rice bran extract, and purified by normal-phase HPLC using an evaporative light-scattering detector. One major cerebroside was obtained by HPLC used as an eluent consisting of chloroform, methanol and water (99:11:1, v/v/v), and the constituents were analyzed by MALDI/TOF-MS, FAB-MS, GC and 600 MHz $^1$H-NMR. The component sugar was estimated to be glucose. In the ceramide, the fatty acid component consist was 2-hydroxy arachidic acid. The long-chain base component was sphinga-4,8-dienine.

Carboxylic Acids Produced from Hydrothermal Treatment of Organic Wastes (유기성 폐기물의 고온고압수 반응에 의한 카르복시산 생성)

  • 강길윤;오창섭;김용하
    • Journal of Energy Engineering
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    • v.13 no.3
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    • pp.228-233
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    • 2004
  • This paper reports production of low-molecular weight carboxylic acids from the hydrothermal treatment of representative organic wastes and compounds with or without oxidant (H$_2$O$_2$). Organic acids such as acetic, formic, succinic and lactic acids were obtained. This result increased to 42mg/g dry waste fish entrails in the presence of H$_2$O$_2$. Experiments on glucose representing cellulosic wastes were also carried out, getting acetic acid of about 29mg/g glucose. Studies on temperature dependance of formation of organic acids showed thermal stability of acetic acid, whereas, formic acid decomposed readily under hydrothermal conditions. In general. results demonstrated that the presence of oxidants favored formation of organic acids with acetic acid being the major product.

Production of Levulinic Acid Using Glucose Derived from Office Waste Paper (사무용 폐지에서 유래된 글루코오스를 이용한 레불린산 생산)

  • Ban, Se-Eun;Park, Yoon;Yi, Sung-Cho;Lim, Ye-Eun;Lee, Jae-Won
    • New & Renewable Energy
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    • v.17 no.2
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    • pp.32-39
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    • 2021
  • The optimal conditions for producing levulinic acid from office waste paper were investigated. Glucose was produced by enzymatic hydrolysis and its yield maximized by varying the soaking time of the substrate and amounts of enzyme and substrate. The optimal conditions to produce levulinic acid using the hydrolysate were determined by response surface methodology, with reaction temperature and catalyst (sulfuric acid) concentration as independent variables. The production model was assessed with an ANOVA regression analysis, and the results indicate its suitability for levulinic acid production (p, F, and lack-of-fit values were 0.003, 20.1, and 0.058, respectively). The optimal conditions were a reaction time of 56.27 min and catalyst concentration of 5.9% with a predicted yield of 2.588 g/L. We verified the findings under the same conditions and obtained 2.323 g/L of levulinic acid.