• Title/Summary/Keyword: 바이오 에탄올

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Bioethanol production using batch reactor from foodwastes (회분식 반응기에서 음식물쓰레기를 이용한 바이오에탄올 생산)

  • Lee, Jun-Cheol;Kim, Jae-Hyung;Park, Hong-Sun;Pak, Dae-Won
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.6
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    • pp.609-614
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    • 2010
  • In the present study, bioethanol was produced using batch style reactor from food wastes which has organic characteristics. Pretreatment was required to reduce its particle size and produce fermentable sugar. Two different enzymes such as carbohydrase and gulcoamylase were tested for saccharification of food waste. The efficiency of carbohydrase saccharification (0.63 g/g-TS) has shown higher than glucoamylase saccharification(0.42 g/g-TS). Saccharomyces cerevisiae produced bioethanol via separate hydrolysis & fermentation (SHF) method and simultaneous saccharification fermentation (SSF) method. The production amount of bioethanol was 0.27 g/$L{\cdot}hr$ for SHF and 0.44 g/$L{\cdot}hr$ for SSF.

A Study on Characteristic of the Bio-ethanol Produced on Fruit Wastes for Direct Ethanol Fuel Cell (DEFC) (과일폐기물을 이용한 DEFC용 바이오에탄올 제조 및 특성에 관한 연구)

  • Lee, Nam-Jin;Kim, Hyun-Soo;Cha, In-Su;Choi, Jeong-Sik
    • Transactions of the Korean hydrogen and new energy society
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    • v.22 no.2
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    • pp.257-264
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    • 2011
  • This study discribes performance of DEFC (Direct Ethanol Fuel Cell) utilized bio-ethanol based on fruit wastes. To produce the bio-ethanol, fruit wastes were treated at temperature $120^{\circ}C$ and 90minutes in acid pre-treatment. After pre-treatment was done, alcohol fermentation process was running. Initial alcohol concentration was 5%. Using the multi coloumn distillation system, more than 95% ethanol was distilled and each component of bio-ethanol was analyzed. In DEFC performance test, it was revealed that cell performance was much higher than that of ethanol. Comparing ethanol with mixed fuel (bio-ethanol (10%) + ethanol (90%)), the performance of ethanol was higher than that of mixed fuel. Even though the bio-ethanol from the fruit wastes is corresponded with transport ethanol standards, it thought that organic matter in bio-ethanol could be negative effect on fuel cell.

Antimicrobial Activity of Trifoliate Orange (Poncirus trifoliate) Seed Extracts on Gram-Positive Foodborne Pathogens (탱자씨 추출물의 그람양성 식중독균에 대한 항균효과)

  • Kim, Seong-Yeong;Shin, Kwang-Soon
    • The Korean Journal of Food And Nutrition
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    • v.25 no.2
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    • pp.284-290
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    • 2012
  • 물(water, TW), 에탄올(ethanol, TE) 및 핵산(n-hexane, TH)을 이용하여 탱자씨 추출물(trifoliate orange seed extracts, TSEs)을 각각 제조한 후 그람양성 식중독균 6종(Bacillus cereus KCCM 11341, Bacillus subtilis KCTC 1022, Listeria monocytogenes ATCC 12692, Staphylococcus aureus ATCC 19111, Streptococcus mutans KCTC 3065 및 Yersinia enterocolitica KCCM 41657)에 대한 항균활성과 Lactobacillus acidophilus IFO 3025에 대한 프레바이오틱 효과(prebiotic effect)를 측정하였다. 그 결과, 탱자씨 핵산추출물(TH)은 S. aureus ATCC 19111에 대해 배양시간이 증가함에 따라 대조군에 비해 강한 증식저해활성을 보였으며, 탱자씨 에탄올 추출물(TE)은 약간의 증식저해활성을 보였다. 특히, 배양 81시간 후 대조군은 90.31%의 증식활성을 보인 것에 반해 탱자씨 핵산추출물과 에탄올추출물은 64.95%와 75.50%의 증식활성을 각각 보였다. 탱자씨 추출물의 Lb. acidophilus IFO 3025에 대한 프레바이오틱 효과는 대조군에 비해 증식활성을 보이지는 않았으나, 적어도 생육저해효과를 보이지는 않았다. 따라서 탱자씨의 핵산 및 에탄올 추출물은 S. aureus ATCC 19111에 대한 항균활성물질로서의 가능성을 제시하였다.

Characteristics of Lignin Removal in Cellulosic Ethanol Production Process (셀룰로오스 에탄올 생산공정에서 리그닌의 제거특성)

  • Lee, You-Na;Lee, Seung-Bum;Lee, Jae-Dong
    • Applied Chemistry for Engineering
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    • v.22 no.1
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    • pp.77-80
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    • 2011
  • In this study, we measured changes in the lignin content of acidified lignocellulosic biomass such as rice straw, saw dust, chestnut shell and peanut hull and analyzed the conversion property to cellulosic ethanol. It turns out that the lignin content increases in chestnut shell, rice straw, saw dust, peanut hull order and the conversion property to cellulosic ethanol is superior in the reverse order. Thus, the removal of lignin by acidification is necessary. In addition, as the concentration of sulfuric acid increases, the lignin content decreases and the yield of cellulosic ethanol increased. The optimum concentration of sulfuric acid is 20 wt%.

Influences of pH Conditions on Syngas Fermentation using Clostridium ljungdahlii (pH 조건이 Clostridium ljungdahlii를 이용한 합성가스 발효공정에 미치는 영향)

  • Wang, Long;Hong, Seong Gu
    • Journal of The Korean Society of Agricultural Engineers
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    • v.54 no.6
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    • pp.143-150
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    • 2012
  • 바이오에탄올 생산공정은 당 (Sugar)을 기반으로 하는 공정과 합성가스를 이용하는 공정으로 분류할 수 있다. 이 가운데 합성가스를 이용하는 공정은 촉매를 이용한 화학적 공정과 혐기성 발효에 의한 생물학적 공정의 두 가지로 나뉜다. Clostridium ljungdahlii는 일산화탄소와 수소가 주요 성분으로 구성되는 합성가스를 이용하여 에탄올과 아세트산을 생산할 수 있는 균주 중의 하나로 알려져 있다. 합성가스 발효공정에서 pH는 미생물의 증식과 에탄올 등의 생산에 아주 중요한 요인 중의 하나이다. 본 연구에서는 pH 조건이 미생물의 생장과 에탄올 생산성에 미치는 영향을 조사하였다. C. ljungdahlii 배양은 엄격한 혐기성 조건에서 100 ml의 serum bottle과 pH 제어가 가능한 반응기를 이용한 실험결과, 회분식 배양 조건에서는 미생물의 생장과 에탄올 생산을 위한 최적 초기 pH는 7.0로 나타났다. 미생물 농도는 0.57 g/L, 에탄올 농도 0.91 g/L로 나타났다. pH 4.5 이하에서는 미생물의 생장이 멈추는 것으로 나타났다. pH 제어가 가능한 생물반응기에서는 pH 6.0 일때 에탄올 생산량이 pH 7.0 일때 보다 높게 나타났다. 일정 수준의 미생물 농도를 유지한 조건에서 합성가스를 기포식으로 주입하고 pH 5.9에서 5.4까지 제어하였을 때 미생물량과 에탄올 농도가 증가하였다. 60 시간이 지난 후에 미생물의 농도는 0.498 g/L, 에탄올은 1.056 g/L까지 이르렀다.

Evaluating the impact of enzyme hydrolysis process on the ethanol production (바이오에탄올 생산 공정에서 당화 전환 공정의 효율성 평가)

  • Na, Jong-Boon;Woo, Sang-Sun;Park, Ji-Yeon;Lee, Joon-Pyo;Park, Soon-Chul;Lee, Jin-Suk
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.11a
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    • pp.105.2-105.2
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    • 2010
  • 전처리 후 얻어진 셀룰로스 고분자를 단당류로 전환하기 위해서는 셀룰라제를 이용한 당화 과정이 필요하다. 통상 실험식 연구에서는 셀룰로스 당화시 당수율을 최대로 하기위해 pH조절을 위한 Citrate buffer와 미생물 오염을 막기 위한 Autoclave에서의 멸균 과정을 거친다. 하지만 대량생산을 목적으로 하는 산업체에서는 적용이 어렵다는 문제점이 있다. 따라서 본 연구에서 이를 대신하여 산업체에서 적용 가능한 당화전환 공정의 효율성을 평가하고자 하였다. Autoclave 멸균을 대체하는 공정으로 항생제 첨가와 여과에 의한 제균을 선택하였고, citrate buffer를 대신하여 buffer를 첨가하지 않은 물을 pH를 조정하여 사용 하였다.실험결과 기존의 당화공정을 사용하였을 때 당화율이 81%이었고, pH를 조절한 제균 water에 항생제를 첨가하는 공정은 71%로 나머지 배지들 중 가장 높은 당화율을 나타냈다. 이것은 기존의 당화율보다 10% 낮은 수치이나 공정비를 교려하여 봤을 때 효율성 있는 공정으로 판단된다.

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Effect of Ambient Conditions on the Spray Behavior and Atomization Characteristics of Biodiesel-ethanol Blended Fuels (분위기 조건이 바이오디젤과 에탄올 혼합연료의 분무 거동 및 미립화 특성에 미치는 영향)

  • Park, Su-Han;Kim, Hyung-Jun;Suh, Hyun-Kyu;Chon, Mun-Soo;Lee, Chang-Sik
    • Journal of ILASS-Korea
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    • v.13 no.4
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    • pp.180-186
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    • 2008
  • The aim of this work is to investigate the effect of ambient conditions on the spray behavior of biodiesel-ethanol blended fuels. In order to analyze the spray behavior, spray tip penetration and spray cone angle were obtained from the visualization system and the effects of ethanol blending are compared macroscopic characteristics with the numerical results. It was reveled that the ethanol contents in biodiesel-ethanol blended fuels affect the spray tip penetration a little and increased the spray cone angle. Increased ambient pressure induced the decrease of the spray tip penetration, and the increased ambient temperature lead to the increase of the spray tip penetration. In addition, the increased ambient temperature promoted the vaporization and atomization of spray with the effect of increasing ethanol fuel.

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Combustion and Exhaust Emission Characteristics of Bio-Ethanol Fuel(E100) in SI Engine (SI 엔진에서 바이오에탄올 연료(E100)의 연소 및 배기특성)

  • Ha, Sung-Yong;Lee, Chang-Sik
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.32 no.8
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    • pp.582-588
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    • 2008
  • An experimental investigation was conducted to investigate the effect of Bio-ethanol fuel on the engine performance and exhaust emission characteristics under various engine operating conditions. To investigate the effect of bio-ethanol fuel, the commercial 1.6L SI engine equipped with 4 cylinder was tested on EC dynamometer. The engine performance including brake torque, brake specific fuel consumption, and barke specific energy consumption of bio-ethanol fuel was compared to those obtained by pure gasoline. Furthermore, the exhaust emissions were analyzed in terms of regulated exhaust emissions such as unburned hydrocarbon, oxides of nitrogen, and carbon monoxide.Result of this work shows that the effect of blending of ethanol to gasoline caused drastic decrease of emissions under various operating conditions. Also, improved engine performance such as brake torque and brake power were indicated for bio-ethanol fuel.

Bioethanol Production from Wasted Corn Stalk from Gangwon Province : from Enzymatic Hydrolysis to Fermentation (강원지역 폐옥수수대로부터 바이오에탄올 생산 : 효소 당화부터 발효까지)

  • Choi, Jae Min;Choi, Suk Soon;Yeom, Sung Ho
    • Applied Chemistry for Engineering
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    • v.23 no.3
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    • pp.326-332
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    • 2012
  • Among the samples prepared by various pre-treatment methods, the one pretreated by dilute sulfuric acid showed the highest glucose yield in the enzymatic hydrolysis. Statistical analysis of enzymatic hydrolysis revealed that the glucose yield was in proportion to the enzyme dosage, the ratio of the pre-treated sample to the buffer solution, and the reaction time and that the effect of enzyme dosage was predominant in the experiment range. In addition, the glucose yield was estimated to be 76.1% at an optimal enzymatic hydrolysis condition. In a separate hydrolysis and fermentation (SHF), Saccharomyces cerevisiae converted over 80% of glucose from the enzymatic hydrolysis of pre-treated wasted corn stalk by dilute sulfuric acid to bioethanol with 37% of ethanol yield and 0.42 $g/L{\cdot}hr$ of productivity. In the simultaneous saccharification and fermentation (SSF), 59.5% of conversion from glucan to ethanol and 0.20 $g/L{\cdot}hr$ of productivity were achieved. In both SHF and SSF, approximately 88 g of bioethanol could be obtained from 1 kg of wasted corn stalk. The possible amount of bioethanol in Gangwon province were estimated to be 1.9 kiloton with the assumption of the 50% of collection ratio.