• Title/Summary/Keyword: water-ethanol mixture

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A Transient Separation Behavior of PDMS/PSF Hollow Fiber Membrane Modules for Ethanol-Water Mixtures (PDMS/PSF 중공사 분리막의 시간 의존적 에탄올-물 분리 거동 연구)

  • Muhammad Junaid, Ammar;Arepalli, Devipriyanka;Kim, Min-Zy;Ha, Seong Yong;Cho, Churl Hee
    • Membrane Journal
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    • v.32 no.2
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    • pp.163-171
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    • 2022
  • Many studies on pervaporation (PV) for the separation of dilute alcohols as an alternative to conventional energy-intensive technique of distillation have been conducted earlier. The pervaporation transition behavior of ethanol-water mixtures through the PDMS/PSF membrane is important, in order to understand the mechanism of diffusion process. Therefore, in the present work, transient PV behavior for 50 wt% EtOH/H2O mixture at 50℃ was investigated by using 1194 cm2 PDMS/PSF hollow fiber membrane modules. The overall total flux and the separation factor of all the membrane modules increased initially and then gradually decreased with respect to PV time. The initial increase can be attributed to fact that membrane fibers were dry and it took time to dissolve into the membrane surface, but the subsequent decrease is due to the depletion of ethanol concentration in the feed. Therefore, it was confirmed that the ethanol permeation through a PDMS membrane is governed by the solution-diffusion mechanism.

Enhanced Migration of Gasohol Fuels in Clay Soils and Sediments (Gasoline-ethanol(Gasohol)혼합액의 점토층 내 이동에 대한 연구)

  • Hee-Chul Choi;W.M. Stallard;Kwang-Soo Kim;In-Soo Kim
    • Journal of Korea Soil Environment Society
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    • v.1 no.1
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    • pp.67-79
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    • 1996
  • Clay soils typically have low hydraulic conductivities in the presence of high polarity pore fluid, such as water. Low polarity fluids, such as hydrocarbon fuels and halogenated organic solvents, typically cannot migrate into clay pores because they cannot displace the pore water. Oxygenated additives in gasoline, such as alcohols and methyl-tert-butyl ether, are increasingly used to control air pollution emissions. These relatively polar and highly water-soluble compounds may facilitate displacement of pore water and enhance migration of fuels and solvents through clay-rich soil strata. In the reported research, the migration of gasoline-alcohol fuel mixtures (gasohol) through consolidated clay was examined. Prepared kaolinite clay samples were consolidated from slurry, and various combinations of gasoline, alcohol, and water were applied to the clays under 152 Pa gauge pressure. Movement of the fluids into the clay samples was monitored by measur ing displaced pore fluid and by magnetic resonance imaging of the samples. The structures of selected samples were examined using environmental scanning electron microscopy. Results of the research suggest that alcohol added to hydrocarbon fuels can enhance migration through some clays significantly. Gasoline did not migrate appreciably into water saturated clay, even after 14 days under pressure. The gasohol mixture migrated readily into the clay in only 20 minutes. Increased hydraulic conductivity of the clay in the presence of gasohol is hypothesized to be due to the collapse of the clays pore structure when ethanol is present, creating larger pores. Increasing pore diameter decreases the capillary pressure needed for the gasohol to replace water and allows gasohol to migrate through the clay.

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Rapid Isolation Method for Preparation of Immuno-Stimulating Rhamnogalacturonans in Citrus Peels (귤피 유래 면역활성 람노갈락투로난류의 신속 분리방법)

  • Lee, Sue-Jung;Hong, Hee-Do;Shin, Kwang-Soon
    • Korean Journal of Food Science and Technology
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    • v.47 no.3
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    • pp.286-292
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    • 2015
  • We developed a rapid isolation method for fractionation of polysaccharides with different characteristics, and optimized it for the polysaccharide mixture from Korean citrus peels. A crude polysaccharide mixture, citrus-peel-enzyme (CPE) fraction was isolated from the citrus peels digested with pectinase and ethanol precipitation. CPE was further fractionated with serially diluted ethanol solution (ethanol:deionized water=8:1, 4:1, 3:1, 2:1, 1.5:1, 1:1, and 0.5:1) to produce seven fractions labeled from CPE8 to CPE0.5. Fraction from CPE8 to CPE1 were mostly composed of 11 different sugars, including rhamnogalacturonan (RG) I and II, and the sugars contained arabino-${\beta}$-3,6-galactan moiety. However, CPE0.5 did not contain RG-II and arabino-${\beta}$-3,6-galactans. Treatment of macrophages with fractions CPE8-CPE1 led to a dose-dependent increase in interleukin-6 production (IL-6), while treatment with CPE1 and CPE0.5 fractions resulted in decreased levels of IL-6. These results indicate that this isolation method may be useful for the rapid fractionation of bioactive RGs from polysaccharide mixtures.

Preparation and Bioavailability of Oriental Medicine Containing Baicalin (I) : Identification and Physicochemical Properties of Coprecipitated Product of Scutellariae Radix and Coptidis Rhizoma (바이칼린 함유생약의 제제화 및 생체이용률 (제 1보): 황금 및 황련 공침물의 확인 및 물리화학적 성질)

  • Yang, Jae-Heon;Kim, Dong-Su;Park, Hyun-Goo;Lee, Nam-Hee
    • Journal of Pharmaceutical Investigation
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    • v.24 no.4
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    • pp.233-243
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    • 1994
  • Precipitation was formed during the preparation of decoction from a mixture of Scutellariae Radix and Coptidis Rhizoma or Phellodendri Cortex according to the prescription of Hwang-ryean-hae-dog-tang. Baicalin and berberine were identified in coprecipitated product and these components were the active ingredients of two herbal medicine. The coprecipitated product was very slightly soluble in water and sparingly soluble in ethanol. The stoichiometric ratio of baicalin and berberine was found to be 1:1. The lipid-water partition coefficients of coprecipitated product were increased more than baicalin and berberine in chloroform, but were decreased in other organic solvents. The content of baicalin and berberine in coprecipitated product, determined by HPLC, were 23.08% and 26.75%, but the content of active ingredients in supernatant were 0.66% and 0.26%, respectively. The dissolution profile of baicalin of coprecipitated product was increased more than extract of Scutellariae Radix in artificial gastric juice, but was decreased in artificial intestinal juice. The dissolution rate of berberine of coprecipitated product was lower than extract of Coptidis Rhizoma in artificial gastric juice and intestinal juice commonly.

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Simultaneous Quantitation of Nine Constituents of Fraxinus rhynchophylla using High Performance Liquid Chromatography - Diode Array Detector

  • Ahn, Jong Hoon;Hwang, Bang Yeon;Lee, Mi Kyeong
    • Natural Product Sciences
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    • v.19 no.3
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    • pp.236-241
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    • 2013
  • A high-performance liquid chromatography-diode array detector (HPLC-DAD) method was established for quantitative evaluation of nine constituents of Fraxinus rhynchophylla such as four coumarins, esculin (1), fraxin (2), esculetin (3), fraxetin (4), three lignans, syringaresinol 4,4'-O-${\beta}$-diglucoside (5), pinoresinol 4-O-${\beta}$-glucoside (6), pinoresinol (9), one secoiridoid, oleuropein (7), and one coumarinolignan, cleomiscosin C (8). The preferred chromatographic condition was obtained on Phenomenex Gemini-NX (3 ${\mu}m$, C18 110A, $150{\times}4.60$ mm) and the mobile phase was composed of water and acetonitrile using a gradient elution. The wavelength was set at 220 nm. Extraction condition of these constituents in F. rhynchophylla was also optimized through extraction time, extraction solvent and extraction method using established method. From this study, extraction at $70^{\circ}C$ with the mixture of ethanol and water for more than 12 h was suggested to be good extraction condition for these constituents. Quantitation of nine constituents in different F. rhynchophylla samples was also successfully accomplished with the newly established method.

Preparation of Resveratrol-loaded Poly($\varepsilon$-caprolactone) Nanoparticles by Oil-in-water Emulsion Solvent Evaporation Method

  • Kim, Bum-Keun;Lee, Jun-Soo;Oh, Ju-Kyoung;Park, Dong-June
    • Food Science and Biotechnology
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    • v.18 no.1
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    • pp.157-161
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    • 2009
  • Resveratrol-loaded poly($\varepsilon$-caprolactone) (PCL) nanoparticles were prepared by oil in water (O/W) emulsion solvent evaporation method. The morphology of the nanoparticles was evaluated using atomic force microscope (AFM), in which well-shaped and rigid nanoparticles were prepared. The mean particle size of nanoparticles prepared using only dichloromethane (DCM) ($523.5{\pm}36.7\;nm$) was larger than that prepared with a mixture of DCM and either ethanol (EtOH) ($494.5{\pm}29.2\;nm$) or acetone ($493.5{\pm}6.9\;nm$). The encapsulation efficiency of nanoparticles prepared only with DCM as dispersed phase ($78.3{\pm}7.7%$) was the highest of those prepared with solvent mixtures. An increase in the molecular weight of PCL led to an increase in encapsulation efficiency (from $78.3{\pm}7.7$ to $91.4{\pm}3.2%$). Pluronic F-127 produced the smallest mean size ($523.5{\pm}36.7\;nm$) with the narrowest particle size distribution. These results show that dispersed phase, molecular weight of wall materials, emulsion stabilizer could be important factors to affect the properties of nanoparticles.

Inhibition of Nitric Oxide Production and Hyaluronidase Activities from the Combined Extracts of Platycodon grandiflorum, Astragalus membranaceus, and Schisandra chinensis (길경, 황기와 오미자 혼합추출물의 NO 억제활성과 Hyaluronidase 억제활성 효과)

  • Kang, Chang-Ho;Kwak, Dae Young;So, Jae-Seong
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.6
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    • pp.844-850
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    • 2013
  • In this study, the optimal extraction conditions for three medicinal herbs as functional sources against inflammatory and arthritic diseases were developed. Traditional medicinal herbs were screened for their inhibition of hyaluronidase (HAse) activity and nitric oxide (NO) synthesis. For the screening of anti-inflammatory properties, ethanolic extracts of 53 species of traditional medicinal herb were examined. We confirmed that Astragalus membranaceus (A.R.), Schisandra chinensis (S.F.), and Platycodon grandiflorum (P.G.) inhibit NO production. For extraction from all three herbs simultaneously, an ethanol concentration of 95%, a 1:2:1 mixture ratio, and at 50 rpm mixing speed, for over 12 h and at $30^{\circ}C$ was the best condition for optimal extract yield and NO inhibition effects. HAse inhibition from the three herb extraction was three fold higher than single samples. The ethanol extracts were fractionated with various solvents (n-hexane, chloroform, ethyl acetate, n-butanol, and water). The ethyl acetate-soluble fraction of the herb mixture showed the highest extract yield (13%) and NO inhibition effects (73%). In conclusion, this study provides experimental evidence that a mixture of P.G., A.R., and S.F. could be used as a source of antioxidant ingredients in the food industry.

The Pressure Effect of the Association of 2,4,6,N-Tetramethyl Pyridinium Iodide in Ethanol-Water Mixture (에탄올-물 혼합용매내에서 2,4,6,N-Tetramethyl Pyridinium Iodide의 회합에 대한 압력효과)

  • Jung-Ui Hwang;Jong-Gi Jee;Young-Hwa Lee;Uei-Ha Woo
    • Journal of the Korean Chemical Society
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    • v.28 no.2
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    • pp.79-85
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    • 1984
  • The ionic association constant(K) of 2,4,6, N-tetramethyl pyridinium iodide (TeMPI) in 95 volume percentage ethanol-water mixture were determined by a modified UV and conductance method at $25^{\circ}C$ to $50^{\circ}C$ under 1 to 2,000 bars. The K values increase with increasing pressure and have maximum value at $40^{\circ}C$. The partial molar volume hange (${\Delta}V$) has relatively small negative value and the absolute values of ${\Delta}$ are minimum at $40^{\circ}C$. The ion size parameter(a) of TeMPI have maximum value at $40^{\circ}C$. {\Delta}H^{\circ}$ values are zero, positive and negative at 40^{\circ}C$, $25^{\circ}C$ and $50^{\circ}C$ respectively. Other thermodynamic parameters such as the changes of standard entropy ({\Delta}S^{\circ}$) and free energy {\Delta}G^{\circ}$ were evaluated. From these experimental results, we came to conclusion that TeMPI is stabilized by the elevation of pressure and that of temperature below $40^{\circ}C$ but weakly dimerized at $40^{\circ}C$ because of the intermolecular hydrophobic interaction of eight methyl groups of two molecules. And it thermally decomposed above $50^{\circ}C$.

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Drowning-out Crystallization of Calcium Lactate for Crystal Size Control (결정입자 제어를 위한 젖산칼슘 용석결정화 기술)

  • Kim, Jong-Min;Chang, Sang Mok;Kim, In-Ho;Koo, Yoon-Mo;Hong, Haehyun;Kim, Woo-Sik
    • Korean Chemical Engineering Research
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    • v.47 no.6
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    • pp.740-746
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    • 2009
  • In the present study, the drowning-out crystallization of L(+)-calcium lactate was investigated in order to develop the crystallization separation process. The crystallization of the calcium lactate was induced by injecting the alcoholic anti-solvent into the aqueous solution of calcium lactate and the control of the calcium lactate crystal size during the crystallization was primarily investigated under the consideration of the anti-solvent species, anti-solvent composition and agitation speed as the key operating factors. Alcohols of methanol, ethanol, n-propanol and i-propanol were used as the anti-solvent for the drowning-out crystallization. Prior to the crystallization experiment, the solubility of calcium lactate in the water-alcohol mixture was measured along with the variation of the alcohol species and composition, which was necessary to estimate the supersaturation level of the crystallization. By the drowning-out crystallization, the calcium lactate crystals of the fabric shape were obtained. Using the ethanol as the antisolvent, the fabric crystals close to the needle shape were produced. However, the hairy crystals were obtained by using the propanol as the anti-solvent. Due to such morphological features, the crystals was highly apt to form the aggregates. The aggregation of the crystals was intensified as increasing the alcohol fraction in the water-alcohol mixture. Meanwhile, the agitation caused the breakage of crystals, resulting in the decrease of the crystal size. Therefore, the crystal size in the crystallization was predominantly determined by the competition between the crystal aggregation and breakage.

Solubilization and Photosensitizing Properties of Some Anthracene Derivatives in Aqueous Micellar Solutions (수용성 미셀용액에서 몇 가지 안트라센 유도체의 가용화 및 감광화 성질)

  • Jeong Soo Ko;Dong Sul Han;Hyung Sik Oh;Byung Kwan Park;Chong Hyun Kim;Se Woung Oh
    • Journal of the Korean Chemical Society
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    • v.35 no.5
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    • pp.452-460
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    • 1991
  • The chemical evidence for involvement of singlet oxygen during photoirradiation for 2-ethylanthracene [2-EA] and 9-phenylanthracene [9-PA] was based on the rapid decomposition of 1,3-diphenylisobenzofuran [DPBF] in methanol-water mixture and aqueous CTAB, and SDS micellar solutions. The average microenvironmental polarities of 2-EA and 9-PA were estimated by UV spectroscopic characteristics sensitive to the polarity of solvent. When 2-EA and 9-PA were solubilized in aqueous CTAB, SDS and Brij 35 solutions, their average microenvironmental polarities were polar, and their microenvironmental polarity parameter showed little dependence on the ionic properties of the micelles. The average microenvironmental polarity of 2-EA was similar to the polarity of 40% (w/w) aqueous ethanol, and that of 9-PA was similar to the polarity between 30 and 40% (w/w) aqueous ethanol. It was found that the greater part of these species might be distributed at the surface of micelles when they were solubilized in aqueous micellar solutions. The methanol-water mixture solution appeared to have characteristics more favorable for photooxidation reaction than aqueous micellar solutions.

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