• Title/Summary/Keyword: 용매 분해

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Physical and Chemical Characteristics of Solvent-Insolubles and Solvent-Solubles in Oilsands Bitumen (Oilsands Bitumen의 용매 불용분 및 용해분의 물리.화학적 특성 연구)

  • Kim, Kyoung-Hoon;Jeon, Sang-Goo;Nho, Nam-Sun;Kim, Kwang-Ho;Shin, Dae-Hyun;Lee, Ki-Bong;Park, Hyo-Nam;Han, Myung-Wan
    • Journal of Energy Engineering
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    • v.17 no.1
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    • pp.38-45
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    • 2008
  • In this work, we investigated the variation of physical and chemical characteristics of solvent-insolubles and solvent-solubles in Canada's Athabasca oil sands by solvent-insolubles experiments. N-Heptane, n-Hexane, and n-Pentane were tested for solvents and asphaltenes were separated from maltenes by using a modified ASTM D 3279 method. Elemental analysis, boiling point distribution (SIMDIS), molecular weight distribution, heavy metal contents, API gravity, viscosity and SARA fractions were measured for thorough samples. The asphaltenes-removed maltenes contained less sulfur and heavy metal amounts and had lower molecular weight than the original bitumen. N-Pentane solvent could lower sulfur and heavy metal amounts, molecular weight, and viscosity of maltenes compared to the other solvents. Eventually, we confirmed that the obtained experimental data could be used as basic informations of bitumen upgrading processes for the production of SCO (synthetic crude oil).

Characteristics of Microwave-Assisted Extraction for Grape Seed Components with Different Solvents (추출용매에 따른 포도씨 성분의 마이크로웨이브 추출 특성)

  • Lee Eun-Jin;Kwon Joong-Ho
    • Food Science and Preservation
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    • v.13 no.2
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    • pp.216-222
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    • 2006
  • Microwave energy (2450 MHz) was applied to extract health-effective component (HEC) from grape seed. Three different solvents approved for grape seed extract such as water, ethanol and acetone, were confirmed in their microwave-heating properties and by which extraction efficiencies were determined. Microwave-assisted extraction (MAE) was performed under different parameters; microwave power : (0, 50, 100 and 150), time : (1, 3, 5, 7, and 9 min), the sample to solvent ratio : (1:20, 1:10, 1:5 and 1:2.5), and particle size(whole, 20, 40 and 60 mesh) and the subsequent extracts were used for determining their physicochemical properties, such as total yield : (TY), total phenolics : (TP), catechin content : (CC), electron donating ability : (EDA), and browning color. The heating properties of solvent demonstrated the optimal ranges of microwave and time as 100 W and 2 to 6 min. The TY and HFC content were higher with increasing powers in water and ethanol solvent, while HFC content were lower in acetone at over 100 W. The longer of extraction time up to 5 min, the higher extraction efficiency. Based upon the overall MAE efficiency and solvent recovery, it was found optimal to use 10 times volume of ethanol for 10 mesh of seed particle at 100 W.

Pretreahent and Saccharification of Poplar by Solvent Extraction (유기용매 추출법에 의한 포플라의 전처리 및 당화)

  • 박정극;전영삼
    • KSBB Journal
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    • v.4 no.3
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    • pp.276-280
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    • 1989
  • The effect of the pretreatment by solvent extraction on the saccharification of poplar (Populus euramencana) was studied. The solvent system was Phenol/H2O(Uncatalyzed)and Phenol/H2O/HCl catalyst system. When the poplar was pretreated by uncatalyzed system, the best result of the saccharification was total of 43.9 g/1 reducing sugar produced and 83.5% of carbohydrated conversion was obtained at 19$0^{\circ}C$, 60 minutes. Total wood yield and the lignin removal were 46.3% and 98.2% respectively. The use of acid catalyst was unsuitable to increase he efficiency of saccharification.

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Kinetics and Mechanism of the Hydrolysis of Phenyl N-Benzenesulfonylchloroformimidate Derivatives (Phenyl N-Benzenesulfonylchloroformimidate 誘導體의 加水分解 反應메카니즘과 反應速度論的 硏究)

  • Nack-Do Sung;Ki-Sung Kwon;Tae-Rin Kim
    • Journal of the Korean Chemical Society
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    • v.28 no.5
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    • pp.328-334
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    • 1984
  • A series of phenyl N-benzenesulfonylchloroformimidate derivatives (p-H, p-Cl, p-CH3 & p-OCH3) were prepared and the hydrolysis of these compounds were studied kinetically at various pH by UV spectrophotometry in 1 ; 4 dioxane-water at $25^{\circ}C$. Hammett ${\rho}$ values measured at pH 5.0 (${\rho}$ = -0.45) and pH 10.0 (${\rho}$ = 0.40) indicate that the reaction proceeds via an azocarbonium ion intermediate in the acidic medium, whereas, it involves direct attack by hydroxide ion on the azomethine carbon atom occurs under the basic medium. The formation of stabilized azocarbonium ion species at pH 5.0 is also consistent with the large solvent effect(m = 1.3-1.5 & n = 5.0-5.5). On the basis of these findings, we may concluded that the hydrolysis of phenyl N-benzenesulfonylchloroformimidate derivatives proceeds by $SN_1$ below pH 8.0, however, above pH 10.0, the hydrolysis proceeds through $SN_2$ and in the range of pH 8.0-10.0, these two reactions occur competitively.

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Hydrolysis Mechanism of N-(benzenesulfonyl)-C-(N-methylanilino)imidoyl Chloride Derivatives (N-(benzenesulfonyl)-C-(N-methylanilino)imidoyl Chloride 유도체의 가수분해 반응 메카니즘)

  • Kwon, Ki-Sung;Song, Yun-Yi
    • Journal of the Korean Chemical Society
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    • v.39 no.8
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    • pp.650-656
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    • 1995
  • Rate Constants of hydrolysis of N-(benzenesulfonyl)-C-(N-methylanilino)imidoyl chlorides were determined by UV spectrophotometry in 50% (v/v) aqueous methanol at 25$^{\circ}C.$ On the basis of rate equation, substituent effect, solvent effect, salt effect, thermodynamic parameters and hydrolysis product analysis, it may be concluded that the hydrolysis of N-(benzenesulfonyl)-C-(N-methylanilino)imidoyl chlorides proceed through $S_N1$ mechanism via azocarbonium ion intermediate below pH 9.0, while aebove pH 10.0 the hydrolysis proceeds through nucleophilic addition-elimination ($Ad_{N-E}$) mechanism.

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Degradation Properties and Production of Fuels from Hemicellulose by Acetone-Solvolysis (아세톤 용매분해법에 의한 헤미셀룰로오스의 분해특성 및 연료물질의 생성)

  • Lee, Jong-Jib
    • Transactions of the Korean hydrogen and new energy society
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    • v.19 no.1
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    • pp.56-63
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    • 2008
  • In this study, thermochemical degradation of hemicellulose by Acetone-Solvolysis, the effects of reaction temperature, conversion yield, degradation properties and degradation products were investigated. Experiments were performed in a tube reactor by varying reaction temperature from $200{\circ}C$ to $400{\circ}C$ at 40 min of reaction time. The liquid products from pyrolysis-liquefaction of hemicellulose contained various kinds of ketones. ketones, as 4-methyl-3-penten-2-one, 3-methylene-2-pentanone, 22,6-dimethyl-2, 5-heptadien-4-one, 4-methyl-2-pentanone, 5-methyl-2-hexanone, 3,5,5-trimethyl-2-cyclohexen-1-one, and bezenes. as 1,4-dimethylbenzene, 1-methyl-2-(1-methylethyl)-benzene, 1,4-dimethyl-2-(2-methylpropyl)benzene, 4-secbutyl-ethyl benzene, could be used as high-octane-value fuels and fuel additives. Combustion heating value of liquid products from thermochemical conversion processes of hemicellulose was in the range of $6,680{\sim}7,170cal/g$. After 40min of reaction at $400{\circ}C$ in Acetone-Solvolysis of hemicellulose, the energy yield and mass yield was as high as 72.2% and 41.2g oil/100g raw material, respectively.

Development of New Biocompatible Fiber form Composite of Chitin and Cellulose (카틴과 셀룰로우스의 복합체로부터 새로운 생체흡수성 봉합사의 개발)

  • 이충우;홍영근이화섭윤정원
    • KSBB Journal
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    • v.8 no.3
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    • pp.237-242
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    • 1993
  • Chitin-based fibers have low mechanical strength and hence cannot be used as surgery fiber due to fast degradation In tissues. A new fiber Chitulose was made by mixing chitin with cellulose, both of which have similar structure. A mixture of dimethylacetamide (DMAc) and 6% lithium chloride (LiCl) was found to be an effective solvent system for dissolvoing chitin and cellulose. The Chitulose fiber made by wet spinning of a mixture of chitin and cellulose resulted in the highest degree of strength and flexibility when the ratio of chitin to cellulose was 1.5; 0.2. The fiber maintained mechanical structure even after autoclaving, indicating thermal stability. A biodegradability test of the Chitulose fiber by imbeding in a rat showed that degradation was initiated in 14 days and completely done in 40 days.

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Extraction of Pesticide Residues in Ginseng by Microwave (Microwave를 이용한 인삼 중의 잔류 농약 추출)

  • 김택겸;김장억
    • Journal of Food Hygiene and Safety
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    • v.14 no.4
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    • pp.365-371
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    • 1999
  • Microwave-assisted extraction (MAE) is known as a more environmental-friendly process with economic advantages in terms of less time, less solvent, less energy and less waste than the current reflux method that is time-consuming. MAE was applied to extract three pesticides (quintozene, tolclofos-methyl and procymidone) from ginseng in a pesticide residue analysis and eliminate pesticide contaminants from ginseng prior to production of the ginseng extracts. The optimal conditions for pesticide extraction from ginseng were 50% in power (150 watts), 2 minutes, 20 mL hexane and 2.0 g sample. The results of optimal conditions were compared with those of Soxhlet method (7 hours, 150 mL hexane). The recoveries between two methods were almost same while time and amount of solvent used in MAE were significantly decreased in comparing with those in the Soxhlet methods. When the 45% ethyl alcohol as a extraction solvent was applied to eliminate pesticides from ginseng prior to the production of the ginseng extracts, it was found that 100% quintozene, 69% tolclofos-methyl and 83% procymidone were eliminated from ginseng. The data showed that MAE may be used to eliminate pesticide contaminants in ginseng prior to making the ginseng extracts.

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The Effect of Pressure on the Solvolysis of Benzylchlorides. p-Methoxybenzyl Chloride in Ethanol-Water Mixtures (염화벤질류의 가용매분해반응에 대한 압력의 영향. 에탄올-물 혼합용매내에서 p-메톡시 염화벤질의 분해반응)

  • Oh Cheun Kwun;Jin Burm Kyong;Kee Joon Choi
    • Journal of the Korean Chemical Society
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    • v.30 no.3
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    • pp.301-306
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    • 1986
  • The rate constants for the solvolysis reactions of p-methoxybenzylchloride in ethanol-water mixtures were determined at 2$^{\circ}$ and 10$^{\circ}C$ up to 1600bar. Rates of reaction were increased with increasing temperature and pressure, and decreased with increasing solvent composition of ethanol mole fraction. From the rate constants, the values of the activation parameters (${{\Delta}V_o}^{\neq},\;{\Delta}{\beta}^{\neq},\;{\Delta}H^{\neq},\;and\;{\Delta}S^{\neq}$) were evaluated. The values of ${{\Delta}V_o}^{\neq}$ and ${\Delta}{\beta}^{\neq}$ exhibit the extremum behavior at about 0.30 mole fraction of ethanol. This behavior is discussed in terms of solvent structure variation. From these results, it could be postulated that the reaction proceeds through $S_N1$ mechanism.

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Improvement of Platinum Particle Dispersion on Porous Electrode for Phosphoric Acid Fuel Cell (연료전지용 다공성전극에 있어서 백금촉매의 분산성개선)

  • Park, Jung-Il;Kim, Jo-Woong;Lee, Ju-Seong
    • Applied Chemistry for Engineering
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    • v.1 no.2
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    • pp.224-231
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    • 1990
  • To improve the dispersion of platinum catalyst, the effects of carbon black surface treatment, solvents, surfactants, and ultrasonic homogenizing were examined. Upon introducing the hydrophilic groups acting as an anchorage center of the catalyst on the surface of carbon black by oxidation, the migrating and growing of platinum particles(or ions) during reduction could be restricted. When mixed solvents, surfactants, or ultrasonic homogenizer were used to disperse catalysts on the carbon black, the dispersion of catalyst could be improved, due to the good permeation of chloroplatinic acid through the pore of carbon black. Among the impregnation methods, the method using ultrasonic homogenizer with mixed solvent was the most excellent. Using this method the particle sized could be minimized in less than $30A^{\circ}$ and distributed homogeneously.

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