• 제목/요약/키워드: sodium acetate

검색결과 372건 처리시간 0.025초

고등식물중(高等植物中)의 Polyphenol 성분(成分)에 관한 연구 (III) (Studies on Polyphenols in Higher Plants (III))

  • 박수선;김경순
    • 생약학회지
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    • 제4권4호
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    • pp.185-188
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    • 1973
  • In Cnidium officinale $M_{AKINO}$ and Platycodon grandiflorum A. $D_E\;C_{ANDOLE}$, chlorogenic acid was identified by Rf values, color reactions on paper chromatograms and UV-absorption spectra of the eluate of phenolic spots. And isochlorogeni acid-like substance was also found in the former. $1-Phenylalanine-U-C^{14}$ and sodium $acetate-2-C^{14}$ werse fed to both plants and their incorporation ratio to chlorogenic acid and isochlorogenic acid-like substance was compared. Phenylalanine was better precursor for chlorogenic acid in both plants than acetate. But acetate showed higher incorporation ratio to isochlorogenic acid-like substance in Cnidium officinale than that of phenylalanine.

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Synthesis of Hexaprofen [2-(4-Cyclohexylphenyl) propionic Acid]

  • Choi, Hong-Dae;Ma, Jung-Joo;Son, Byeng-Wha
    • Archives of Pharmacal Research
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    • 제15권2호
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    • pp.142-145
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    • 1992
  • A novel preparative method for hexaprofen, which is a potent antiinflammatory agent, is described. Friedel-Crafts reaction of cyclohexylbenzene with ethyl $\alpha$-chloro-$\alpha$-(methylthio) acetate 1 and $\alpha$-chloro-$\alpha$-(methylthio) acetonitrile 2 afforded ethyl 2-(methylthio)-2-(4-cyclohexylphenyl) acetate 7 and 2-methylthio-2-(4-cyclohexylphenyl) acetonitrile 8, respectively. Compounds 7 and 8 were converted into the corresponding ethyl 2-methylthio-2-(4-cyclohexylphenyl) propionate 9 and 2-methylthio-2-(4-cyclohexylphenyl) propionitrile 10 by methylation with sodium hydride and methyl iodide. Hexaprofen 13 was prepard by hydrolysis of ethyl 2-(4-cyclohexylphenyl) propionate 11 and of 2-(4-cyclohexylphenyl) propionitrile 12 followed by desulfurization of compounds 9 and 10.

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실리콘 수식 비닐아세테이트-아크릴 공중합체 수지의 방수성 및 열적 성질 (Water Resistance and Thermal Properties of Resin Based on Silane-modified Vinyl Acetate-Acrylic Emulsion Copolymers)

  • Naghash, Hamid Javaherian
    • 폴리머
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    • 제34권4호
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    • pp.306-312
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    • 2010
  • Triphenylvinylsilane (TPVS) containing vinyl acetate (VAc), butyl acrylate (BA), and Nmethylolacrylamide (NMA) copolymers were prepared by emulsion polymerization. The polymerization was performed at $80^{\circ}C$ in the presence of auxiliary agents and ammonium peroxodisulfate (APS) as the initiator. Sodium dodecyl sulphate (SDS) and Arkupal N-300 were used as anionic and nonionic emulsifiers, respectively. The resulting copolymers were characterized by using Fourier transform infrared spectroscopy (FTIR), gel permeation chromatography (GPC), and dynamic light scattering (DLS). Thermal properties of the copolymers were studied by using thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The morphology of copolymers was also investigated by scanning electron microscopy (SEM) and then the effects of silicone concentrations on the properties of the TPVS-containing VAc-acrylic emulsion copolymers were discussed. The obtained copolymers have high solid content (50%) and can be used in weather resistant emulsion paints as a binder.

Isatin과 일염기산의 반응 (The reaction of isatin with monocarboxylic acids)

  • 민윤식
    • 약학회지
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    • 제18권1호
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    • pp.74-76
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    • 1974
  • Oh heating isatin with aromatic monocarboxylic acids having .alpha.-hydrogen atoms such as p-nitrophenylacetic acid, p-methoxyphenyl acetic acid and .alpha.-naphthylacetic acid in the presence of anhydrous sodium acetate functioning as a catalyst, p-nitrobenzylidene-3-oxindole, p-methoxybenzylidene-3-oxindole and ${\alpha}$-naphthobenzylidene-3-oxindole are obtained, respectively. The results of these experiments show that isatin may be used as the carbonyl component in the condensation reaction.

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올리고머형 음이온성계면활성제 수용액에서 안료의 분산안정성(제4보);알파 술폰 지방산 비닐에스테르 올리고머의 분산성 (Dispersion Stability of Pigments in Aqueous Solution of Anionic Oligo-Type Surfactants(IV);Dispersiveness of ${\alpha}-sulfo$ fatty acid vinyl ester oligomers)

  • 이향우;박선영;남기대
    • 한국응용과학기술학회지
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    • 제15권3호
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    • pp.55-60
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    • 1998
  • The sodium ${\alpha}-sulfo$ fatty acid vinyl ester oligomers, which are oligomer type surfactants were prepared by polymerization with fatty acid vinyl acetate. The ${\alpha}-sulfonation$ of fatty acid vinyl ester oligomers were carried by direct addition of sulfur trioxide. The dispersing performance of oligomer type anionic surfactants and sodium dodecyl sulfate(SDS) in the aqueous suspension of iron oxide and titanium dioxide particles was evaluated by particle size distribution and zeta-potential measurement. As results, the particles of iron oxide and titanium dioxide were flocculated by addition of small amount of oligomer type anionic surfactants and sodium dodecyl sulfate(SDS), then the flocks redispersed by more addition of oligomer type anionic surfactants and SDS. The flocculation, redispersion process was observed in lower concentration range of oligomer type anionic surfactants than SDS. Especially, the dispersing action of sodium ${\alpha}-sulfo$ palmitic acid vinyl ester oligomer was better than sodium ${\alpha}-sulfo$ lauric acid vinyl ester oligomer.

Preparation of Regenerated Cellulose Fiber via Carbonation. I. Carbonation and Dissolution in an Aqueous NaOH Solution

  • Oh, Sang Youn;Yoo, Dong Il;Shin, Younsook;Lee, Wha Seop;Jo, Seong Mu
    • Fibers and Polymers
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    • 제3권1호
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    • pp.1-7
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    • 2002
  • Cellulose carbonate was prepared by the reaction of cellulose pulp and $CO_2$ with treatment reagents, such as aqueous $Zncl_2$ (20-40 wt%) solution, acetone or ethyl acetate, at -5-$0^{\circ}C$ and 30-40 bar ($CO_2$) for 2 hr. Among the treatment reagents, ethyl acetate was the most effective. Cellulose carbonate was dissolved in 10% sodium hydroxide solution containing zinc oxide up to 3 wt% at -5-$0^{\circ}C$. Intrinsic viscosities of raw cellulose and cellulose carbonate were measured with an Ubbelohde viscometer using 0.5 M cupriethylenediamine hydroxide (cuen) as a solvent at $20^{\circ}C$ according to ASTM D1795 method. The molecular weight of cellulose was rarely changed by carbonation. Solubility of cellulose carbonate was tested by optical microscopic observation, UV absorbance and viscosity measurement. Phase diagram of cellulose carbonate was obtained by combining the results of solubility evaluation. Maximum concentration of cellulose carbonate for soluble zone was increased with increasing zinc oxide content. Cellulose carbonate solution in good soluble zone was transparent and showed the lowest absorbance and the highest viscosity. The cellulose carbonate and its solution were stable in refrigerator (-$5^{\circ}C$ and atmospheric pressure).

Design and Optimization of Solid Dispersed Osmotic Pump Tablets of Aceclofenac, A Better Approach to Treat Arthritis

  • Edavalath, Sudeesh;Rao, B. Prakash
    • Journal of Pharmaceutical Investigation
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    • 제41권4호
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    • pp.217-225
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    • 2011
  • The aim of this work was to prepare porous osmotic pump tablets for controlled delivery of Aceclofenac. Aceclofenac solid dispersion was prepared to improve the solubility by using the drug - carrier (Mannitol) ratio of 1:1. The osmotic pump tablets were prepared using the solid dispersed product of Aceclofenac. The formulation contains potassium chloride as osmotic agent, cellulose acetate as semipermeable membrane, poly ethylene glycol (PEG 4000) as pore former and sodium lauryl sulphate (SLS) as solubility enhancer. The formulations were designed by the general factors such as osmotic agent and pore former. All formulations were evaluated for various physical parameters and, the in vitro release studies were conducted as per USP. The drug release kinetic studies such as zero order, first order, and Higuchi and Korsmeyer peppas were determined and compared. All the formulations gave more controlled release compared to the marketed tablet studied. Numerical optimization techniques were applied to found out the best formulation by considering the parameter of in vitro drug release kinetics and dissolution profile standards. It was concluded that the porous osmotic pump tablets (F7) composed of Aceclofenac solid dispersion/Potassium chloride/Lactose/Sodium lauryl sulphate/Magnesium Stearate (400/40/95/10/5, mg/tab) and coating composition with Cellulose acetate/ PEG 4000 (60/40 %w/w) is the most satisfactory formulation. The porous osmotic pump tablets provide prolonged, controlled, and gastrointestinal environment-independent drug release.

Extinguishment of Liquid Fuel Fire by Water Mist Containing Additives

  • Park, Jae-Man;Won, Jung-Il;Shin, Chang-Sub
    • International Journal of Safety
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    • 제4권2호
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    • pp.24-29
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    • 2005
  • An experimental study was presented for extinguishing characteristics of liquid fuel fire by water mist($Dv_{0.99}{\leq}200{\mu}m$) containing potassium acetate and sodium acetate trihydrate. To evaluate the extinguishing performance of water mist containing additives, the evaporation characteristics of a water droplet on a heated surface was examined. The evaporation process was recorded by a charge-coupled-device camera. Also, small-scale extinguishing tests were conducted for n-heptane pool fire in ventilated space. During the experiments, flame temperatures were measured, and concentrations of oxygen and carbon monoxide were analyzed by a combustion gas analyzer. The average evaporation rate of water droplet containing additives was lower than that of pure water at a given surface temperature and decreased with the concentration increase due to the precipitation of salt in the liquid-film and change of surface tension. In case of using additives, the fire extinguishing times was shorter than that of pure water at a given discharge pressure and it was because the momentum of a water droplet containing additives was increased. And also dissociated metal atoms, potassium or sodium, were reacted as a scavenger of the major radical species OH, H which were generated for combustion process. Moreover, at a high pressure of 4 MPa, the fire was extinguished through blowing effect as well as primary extinguishing mechanisms.

$^{31}p$ Nuclear Magnetic Resonance Studies of Acetic Acid Inhibition of Ethanol Production by Strains of Zymomonas mobilis

  • Kim, In-Seop;Barrow, Kevin D.;Rogers, Peter L.
    • Journal of Microbiology and Biotechnology
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    • 제13권1호
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    • pp.90-98
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    • 2003
  • In vivo $^31p$ Nuclear Magnetic Resonance ($^31p$NMR) and metabolic studies were carried out on an acetic acid tolerant mutant, Zymomonas mobilis $ZM4/Ac^R$, and compared to those of the parent strain, Z. mobilis ZM4, to evaluate possible mechanisms of acetic acid resistance. This investigation was initiated to determine whether or not the mutant strain might be used as a suitable recombinant host far ethanol production from lignocellulose hydrolysates containing various inhibitory compounds. $ZM4/Ac^R$ showed multiple resistance to other lignocellulosic toxic compounds such as syringaldehyde, furfural, hydroxymethyl furfural, vanillin, and vanillic acid. The mutant strain was resistant to higher concentrations of ethanol or lower pH in the presence of sodium acetate, compared to ZM4 which showed more additive inhibition. in vivo $^31p$ NMR studies revealed that intracellular acidification and de-energization were two mechanisms by which acetic acid exerted its inhibitory effect. For $ZM4/Ac^R$, the internal pH and the energy status were less affected by sodium acetate compared to the parent strain. This resistance to pH change and de-energization caused by acetic acid is a possible explanation for the development of resistance by this strain.