• Title/Summary/Keyword: 수소수율

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Reductions of Some Representative Organic Compounds with $NaBH_4-(C_6H_5O)_3B$ System ($NaBH_4-(C_6H_5O)_3$B계에 의한 몇가지 유기화합물의 환원법)

  • Nung Min Yoon;Byung Tae Cho;Ji Uk Yoo;Gun Poong Kim
    • Journal of the Korean Chemical Society
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    • v.27 no.6
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    • pp.434-440
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    • 1983
  • New procedures for the reduction of carboxylic acids, carboxylic acid salts, tertiary amides, and sulfoxides with sodium borohydride and triphenyl borate in tetrahydrofuran were developed. Thus carboxylic acids were reduced quantitatively in 6∼12 h at $25^{\circ}C$. Alphatic acid salts were quantitatively reduced to the corresponding alcohols in 6h at $25^{\circ}C$ whereas aromatic acid salts required 24h at $65^{\circ}C$. Tertiary amides were reduced to the corresponding amines in 88∼100% yields in 3∼6h at room temperature. Most sulfoxides examined were reduced to the corresponding sulfides in 98∼100% yields in 1∼6h at $25^{\circ}C$ and completely reduced at $65^{\circ}C$; however, diphenyl sulfoxide required 48h in a more vigorous condition.

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Development of the Efficient Synthetic Route for Itraconazole Antifungal Agent (이트라코나졸 항진균제의 효과적인 합성법 개발)

  • Baek, Du-Jong
    • Applied Chemistry for Engineering
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    • v.17 no.6
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    • pp.633-637
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    • 2006
  • In this study, the efficient large-scale synthetic route for itraconazole, triazole antifungal agent, was developed. The original synthetic route for medicinal chemistry reported by Janssen Pharmaceutica was linear (14 linear steps) starting from 2,4-dichloroacetophenone with the total yield of 1.4%, and potential hazardous materials such as methanesulfonyl chloride ($CH_{3}SO_{2}Cl$), hydrogen gas, and sodium hydride (NaH) were used. Furthermore, the expensive 1-acetyl-4-(4-hydroxyphenyl)piperazine and palladium were used in this medicinal chemistry route, thus the manufacturing cost would be practically high. In order to improve the commercial route, we developed the process of 12 step convergent synthesis combining two intermediates which are roughly halves of itraconazole with the total yield of 12.0%, and hazardous materials and expensive reagents were excluded in this process, thus the manufacturing cost could be cut down to a great extent.

Production of Single-Cell Protein on Petroleum Hydrocarbon Part 6. Selection of the Strains for Mixed Cultivation and Evaluation of the Medium Composition (석유탄화수소를 이용한 단세포단백질의 생산에 관한 연구 제 6 보 혼합배양균주의 선정 및 배지조성의 검토)

  • Mheen, Tae-Ick;Pyun, Yoo-Ryang;Kwon, Tai-Wan
    • Korean Journal of Food Science and Technology
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    • v.6 no.4
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    • pp.219-230
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    • 1974
  • For the production of single cell protein from n-paraffin, yeasts utilizing n-paraffin and ethanol were isolated from oil deposit and oil field soils. The mixed cultivation between yeasts assimilating n-paraffin and ethanol was carried out to increase cell yield. Finally, selected strains were identified and suitable medium composition for mixed culture was compared with that of single cultures using flask and 5 l-jar fermentor. Yeasts grow on n-paraffin and ethanol were identified as Candida tropicalis var. KIST 76 and Trichosporon cutaneum KIST 76H respectively. By mixed cultivation under the suitable medium composition using 5 l-jar fermentor, maximum dry cell weight reached 20 g/l after 12 hrs. cultivation and it's protein content was 58%. Yield has been increased about 25% and protein content has been increased 6.7% compared to that of single culture, Candida tropicalis var. KIST 76, after 16 hrs. cultivation.

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Optimal Condition for Torrefaction of Eucalyptus by Response Surface Methodology (반응표면분석법을 이용한 유칼립투스의 반탄화 최적조건 탐색)

  • Kim, Young-Hun;Na, Byeong-Il;Lee, Soo-Min;Lee, Hyoung-Woo;Lee, Jae-Won
    • Journal of the Korean Wood Science and Technology
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    • v.41 no.6
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    • pp.497-506
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    • 2013
  • The optimal condition for the torrefaction of eucalyptus (Eucalyptus globulus) was investigated by response surface methodology. The carbon content in the torrefied biomass increased with the severity factor (SF), while hydrogen and oxygen contents decreased. The calorific value of torrefied biomass ranged from 20.23 to 21.29 MJ/kg, depending on the torrefaction conditions. This implied that the energy contained in the torrefied biomass increased by 1.6 to 6.9%, when compared with that of the untreated biomass. The weight loss of biomass increased as the SF increased. The Code level of reaction temperature had the highest impact on the energy yield of torrefied biomass, while the effect of Code level of reaction time was considerably low. The highest energy yield was obtained at low SF.

Characteristic of Partial Oxidation of Methane and Ni Catalyst Reforming using GlidArc Plasma (GlidArc 플라즈마를 이용한 메탄 부분산화 및 Ni 촉매 개질 특성)

  • Kim, Seong-Cheon;Chun, Young-Nam
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.12
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    • pp.1268-1272
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    • 2008
  • Low temperature plasma applied with partial oxidation is a technique to produce synthesis gas from methane. Low temperature plasma reformer has superior miniaturization and start-up characteristics to reformers using steam reforming or CO$_2$ reforming. In this research, a low temperature plasma reformer using GlidArc discharge was proposed. Reforming characteristics for each of the following variables were studied: gas components ratio (O$_2$/CH$_4$), the amount of steam, comparison of reaction on nickle and iron catalysts and the amount of CO$_2$. The optimum conditions for hydrogen production from methane was found. The maximum Hydrogen concentration of 41.1% was obtained under the following in this condition: O$_2$/C ratio of 0.64, total gas flow of 14.2 L/min, catalyst reactor temperature of 672$^{\circ}C$, the amount of steam was 0.8, reformer energy density of 1.1 kJ/L with Ni catalyst in the catalyst reactor. At this point, the methane conversion rate, hydrogen selectivity and reformer thermal efficiency were 66%, 93% and 35.2%, respectively.

Effect of substrate concentration on the operating characteristics of microbial electrolysis cells (기질 농도에 따른 미생물전기분해전지의 운전 특성)

  • Hwijin Seo;Jaeil Kim;Seo Jin Ki;Yongtae Ahn
    • Journal of the Korea Organic Resources Recycling Association
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    • v.31 no.4
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    • pp.41-49
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    • 2023
  • This study examined the effect of input substrate concentration on hydrogen production of microbial electrolysis cells. To compare the performance of MEC according to the input substrate concentration, six laboratory-scale MEC reactors were operated by sequentially increasing the input substrate concentration from 2 g/L of sodium acetate, to 4 g/L, and 6 g/L. The current density, hydrogen production, and SCOD removal rate were analyzed, and energy efficiency and cathodic hydrogen recovery were calculated to compare the performance of MEC. The maximum volumetric current density was obtained at 4 g/L condition (76.3 A/m3) and it decreased to 19.0 A/m3, when the input concentration was increased to 6 g/L, which was a 75% decrease compared to the 4 g/L input condition. Maximum hydrogen production was obtained also at 4 g/L condition (47.3 ± 16.8 mL), but maximum hydrogen yield was obtained at 2 g/L input condition (1.1 L H2/g CODin). Energy efficiencies were also highest in 2 g/L condition; the lowest result was observed at 6 g/L condition. Maximum electrical energy efficiency was 76.4%, and the maximum overall energy efficiency was 39.7% at 2 g/L condition. However, when the substrate concentration increased to 6 g/L, the performance was drastically decreased. Cathodic hydrogen recovery also showed a similar tendency with energy efficiency, with the lowest concentration condition showing the best performance. It can be concluded that operating at low input substrate concentration might be better when considering not only hydrogen yield but also energy efficiency.

Degradation of Electrode and Membrane in Proton Exchange Membrane Fuel Cell After Water Electrolysis (수전해 반응에 의한 고분자전해질 연료전지 전극과 막의 열화)

  • Jeong, Jae-Hyeun;Shin, Eun-Kyung;Jeong, Jae-Jin;Na, Il-Chai;Chu, Cheun-Ho;Park, Kwon-Pil
    • Korean Chemical Engineering Research
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    • v.52 no.6
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    • pp.695-700
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    • 2014
  • Proton Exchange Membrane Fuel Cells (PEMFC) can generate hydrogen and oxygen from water by electrolysis. But the electrode and polymer electrolyte membrane degrade rapidly during PEM water electrolysis because of high operation voltage over 1.7V. In order to reduce the rate of anode electrode degradation, unsupported $IrO_2$ catalyst was used generally. In this study, Pt/C catalyst for PEMFC was used as a water electrolysis catalyst, and then the degradation of catalyst and membrane were analysed. After water electrolysis reaction in the voltage range from 1.8V to 2.0V, I-V curves, impedance spectra, cyclic voltammograms and linear sweep voltammetry (LSV) were measured at PEMFC operation condition. The degradation rate of electrode and membrane increased as the voltage of water electrolysis increased. The hydrogen yield was 88 % during water electrolysis for 1 min at 2.0V, the performance at 0.6V decreased to 49% due to degradation of membrane and electrode assembly.

Antioxidative Activity of Ethanol Extraction Fraction from the Korean Red Tail Ginseng (홍미삼 에탄올 추출분획의 항산화 활성)

  • Lee, Jong-Won;Do, Jae-Ho
    • Korean Journal of Food Science and Technology
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    • v.33 no.4
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    • pp.497-500
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    • 2001
  • The purpose of this study was to investigate the extraction method and antioxidative activities of phenolic compounds from Korean red tail ginseng. Antioxidative activities of red tail ginseng were evaluated with its ability to donate hydrogen to DPPH, and to inhibit the oxidation of linoleic acid and LDL induced by $H_2O_2$ and $FeCl_2$, respectivly by measuring the MDA formation. Total phenolic compounds expressed as % caffeic acid were 0.80%, 0.12%, 0.06%, 0.03%, 0.01% when red tail ginseng was consecutively extracted with 60% ethanol for 5 times, most of the phenolic compounds was recovered in the extract obtained after 3 times of extraction. The extraction efficacy of 60% ethanol was superior to that of water in extraction phenolic compounds, and the efficacy did not change after evaporating the extract followed by dissolving with water. 60% ethanol extract of red tail ginseng had weak ability to donate hydrogen to DPPH. MDA determination showed the antioxidative effect with inhibition ratio of 72.23% on linoleic acid oxidation by addition of red tail ginseng extract at the concentration of 1,500 ppm. 22.52% of LDL oxidation was inhibited by addition of 250 ppm.

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Antioxidant Activity of the Aerial Part of Epimedium koreanum NAKAI (음양곽의 항산화활성)

  • 이종원;도재호;이성계
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.29 no.4
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    • pp.732-736
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    • 2000
  • The purpose of this study was to investigate the extraction method of phenolic compounds and antioxidant activities of the aerial part of Epimedium koreanum NAKAI (EKN). The antioxidant activities of EKN were tested with by hydrogen donating ability, inhibition of lipid peroxidation, and inhibition of LDL oxidation. The most suitable conditions for the extraction of phenolic compounds from EKN were to use 60% ethanol by 3 times, and the yield of extract (dry basis) was 22%. In the extraction efficiency of phenolic compounds, 60% ethanol as extracting solvent was superior to water. Sixty% ethanol extract of EKN was found to have an ability of hydrogen donating to DPPH. MDA determination showed the 95% inhibitory effect against linoleic acid oxidation by the addition of 700 ppm EKN extract. Also, about 70% of LDL oxidation was inhibited by the addition of 500 ppm.

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Estimation of Ultimate Methane and Hydrogen Sulfide Yields for C&D Waste and MSW Using BMP Test (건설폐기물, 생활폐기물의 용출특성 분석과 BMP test를 통한 최종메탄(CH4) 및 황화수소(H2S) 수율 산정)

  • Jung, Sukyoung;Jeong, Seongyeob;Chang, Soonwoong
    • New & Renewable Energy
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    • v.10 no.1
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    • pp.30-40
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    • 2014
  • The main object of this study was to offer information about incoming waste in landfill and to evaluate biochemical methane and hydrogen sulfide potentials of landfill wastes. We examined brick, soil, mixed waste (C&D waste and MSW) samples for the study. The leaching experiments showed that BOD, COD and sulfate were determined in the range of 0~18,816 mg/kg, 85~21,100 mg/kg and 160~1,205 mg/kg, respectively in 6hr extraction test. An accumulated extraction tests for 140day were determined BOD 226~197,219 mg/kg, COD 436~242,588 mg/kg and Sulfate 1,090~25,140 mg/kg. Also, BMP (biochemical methane potential) tests were carried out to examine methane and hydrogen sulfide yields for the 3 different wastes. As a result, methane yield was determined to 262.68 mL $CH_4/g$ VS of MSW and 0~17.75 mL $CH_4/g$ VS in brick, soil and C&D waste. Higher hydrogen sulfide yield was observed to 0.079mL $H_2S/g$ VS in C&D waste. This result indicate that brick and soil could be sources of sulfate, and higher production of hydrogen sulfide could be odor problem and inhibitor of methane production.