• 제목/요약/키워드: hydrolysis conditions

검색결과 654건 처리시간 0.026초

Phosphamidon과 Profenofos의 가수분해속도 상수의 측정 (Determination of Hydrolysis Rate Constants on Phosphamidon and Profenofos)

  • 민경진;하영득;서설;차춘근;박장우;이승곤
    • 한국식품위생안전성학회지
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    • 제15권2호
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    • pp.144-150
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    • 2000
  • Phosphamidon의 가수분해속도상수는 25。C, pH 4, 7 및 9에서 각각 0.0020, 0.0022 및 0.0049이었고, 40。C에서 각각 0.0040, 0.0050및 0.0150으로 측정되었다 같은 pH에서 온도가 높을수록 촉진되었으며, pH 9의 염기성조건에서는 15。C상승에 반감기가 약 3배 정도 빨랐다. 또한 같은 온도에서 산성(pH 4)과 중성조건(pH 7)에 비해 염기성조건에서 가수분해반응이 약 2∼4배 정도 빨랐다. Profenofos의 가수분해속도상수는 25。C, pH 4, 7 및 9에서 각각 0.0022, 0.0047 및 0.0860이었고, 40。C에서 각각 0.0031, 0.0086 및 0.1245로 측정되었다. Profenofos의 가수분해는 phosphamidon과 마찬가지로 같은 pH에서 온도가 높을수록 촉진되었으며, 같은 온도에서 산성과 중성조건에 비해 염기성조건에서 가수분해반응이 약 15∼40배 정도 빨랐고 반감기가 모두 8시간 이내로 가수분해반응이 현저하게 일어났다. Profenofos의 가수분해속도가 phosphamidon보다 빠른 것을 알 수 있었다. 가수분해에 의한 분해산물을 확인하고자 GC/MS분석을 한 결과 phosphamidon의 분해생성물은 m/z=153의 O, O-dimethyl phosphate(DMP)와 m/z=149의 N, N-diethylchloro acetamide로 추정된다. Profenofos의 분해생성물은 m/z=208로 4-bromo 2-chloro phenol과 m/z=240으로 O-ethyl S-propyl phosphate로 추정된다.

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combined severity를 이용한 유체대의 묽은 산 전처리 (Dilute-acid pretreatment of rapeseed straw of using the combined severity)

  • 정태수;오경근
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.244.2-244.2
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    • 2010
  • Biological conversion of biomass into fuels and chemicals requires hydrolysis of the polysaccharide into monomeric sugars. In this study, dilute sulfuric acid used as a catalyst for the pretreatment of rapeseed straw. Hydrolysis can be performed enzymatically, and with dilute or concentrate mineral acids. Dilute-acid hydrolysis of rapeseed straw was optimized through the utilization of combined severity. Evaluation criteria for optimization of the pretreatment conditions were based on high xylose recovery and low inhibitor contents in the hydrolyzates. In addition, this paper reports the compositional analysis of hydrolyzate liquors and solid residues, xylose and glucose mass balance closures, and digestibility results of the acid pretreated rapeseed straw.

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Optimization of acid hydrolysis conditions of Hovenia dulcis extract for increasing bioactive compound

  • Kang, Sung-Hee;Kim, Sung-Mun;Kim, Jin-Hyun
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2005년도 생물공학의 동향(XVI)
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    • pp.360-363
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    • 2005
  • This study was a method that used a hydrolysis for increasing the efficacy of alcohol decrease from Hovenia dulcis extract. The best pH was 2.0 to obtain a maximum activity at fixed reaction temperature and time. At pH 2.0, reaction temperature $80^{\circ}C$ and reaction time 4 hr gave the highest activity which was 124.2% of control. This is very simple and efficient method to increase the efficacy of alcohol decrease from Hovenia dulcis extract. The mechanism that increases the efficiency of alcohol decrease be examined through hydrolysis.

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Hydrolysis of Polylactic Acid Fiber by Lipase from Porcine pancreas

  • Lee, So-Hee;Song, Wba-Soon
    • 한국의류학회지
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    • 제35권6호
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    • pp.670-677
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    • 2011
  • This study is to optimize the enzymatic processing conditions of Polylactic Acid (PLA) fiber using lipase from Porcine pancreas as an environmental technology. Hydrolytic activity dependent on pH, temperature, enzyme concentration, and treatment time, and structural change of PLA fiber were evaluated. The PLA fiber hydrolysis by lipase was maximized at 50% (o.w.f) lipase concentration $50^{\circ}C$ for 120 minutes under pH 8.5. There was a change of the protein absorbance in the treatment solution before and after the lipase treatment. In addition, there was no substantial change in the molecular and crystalline structures of PLA by lipase treatment as confirmed by DSC, XRD, and FT-IR.

염산(鹽酸)과 촉매 AlCl3의 농도가 볏짚 Cellulose의 산가수분해(酸加水分解)에 미치는 영향 (The Effect of HCl-AlCl3(Catalyst) Concentrations on Acid Hydrolysis of Ricestraw Cellulose)

  • 이병근
    • Journal of the Korean Wood Science and Technology
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    • 제20권1호
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    • pp.23-27
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    • 1992
  • 81.9% of the cellulose delignified by acetosolv process was hydrolyzed in HCl-$AlCl_3$ hydrolysis system when $AlCl_3$ was used as catalyst in breaking down of glycosidic bond of cellulose. It was well compared that the HCl hydrolysis system without $AlCl_3$ as catalyst showed only 60~61% of the hydrolyzed yield. Also monosaccharide yield including glucose clearly increased when $AlCl_3$ was use. When concentration of HCl and $AlCl_3$ was increased, the hydrolyzed monosaccharide was increased within certain range. The monosaccharid yield out of the hydrolyzed reached 55.4% at optimum conditions which were identified as 20% of Hel solution, 0.03 Mol of $AlCl_3$, $120^{\circ}C$ of reaction temperature and 7 hours of reaction time employed in this study.

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Simultanceous Saccharification and Fermentation of Cellulose for Lactic Acid Production

  • Yoon, Hyon-Hee
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제2권2호
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    • pp.101-104
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    • 1997
  • Lactic acid production from ${\alpha}$-cellulose by simultaneous saccharification and fermentation (SSF) was studied. The cellulose was converted in a batch SSF using cellulase enzyme Cytolase CL to produce glucose sugar and Lactobacillus delbrueckii to ferment the glucose to lactic acid. The effects of temperature, PH, yeast extract loading, and lactic acid inhibition were studied to determine the optimum conditions for the batch processing. Cellulose was converted efficiently to lactic acid, and enzymatic hydrolysis was the rate controlling step in the SSF. The highest conversion rate was obtained at 46$^{\circ}C$ and pH 5.0. The observed yield of lactic acid from ${\alpha}$-cellulose was 0.90 at 72 hours. The optimum pH of the SSF was coincident with that of enzymatic hydrolysis. The optimum temperature of the SSF was chosen as the highest temperature the microoraganism could withstand. The optimum yeast extract loading was found to be 2.5g/L. Lactic acid was observed to be inhibitory to the microorganisms' activity.

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Enhanced Hydrolysis of Cellulose by Combination of Humicola insolens Cellulase with Immobilized Glucose Isomerase

  • Hur, Sung-Ho;Lee, Ho-Jae;Lee, Jae-Kwon
    • Preventive Nutrition and Food Science
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    • 제1권1호
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    • pp.117-120
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    • 1996
  • To enhance cellulose hydrolysis f Humicola insolens cellulase (HIC) was empolyed with immobilized glucose isomerase(IGI). Optimun pH and temperature for HIC were 6.5 and 55$^{\circ}C$, respectively, whereas those for IGI were 7.0 and 60$^{\circ}C$, respectively. Optimun loading size of IGI was 200mg(130 untis) with 15units of HIC. Reaction conditions were determined to be as follows: 55$^{\circ}C$,pH 6.5, HIC 15 units and IGI 130 units. After 24h hydrolysis, more than 65% of avicel was converted to glucose and fructose; in contrast, the conversion ratio of control was 40%.

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사무용 폐지에서 유래된 글루코오스를 이용한 레불린산 생산 (Production of Levulinic Acid Using Glucose Derived from Office Waste Paper)

  • 반세은;박윤;이성초;임예은;이재원
    • 신재생에너지
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    • 제17권2호
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    • pp.32-39
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    • 2021
  • The optimal conditions for producing levulinic acid from office waste paper were investigated. Glucose was produced by enzymatic hydrolysis and its yield maximized by varying the soaking time of the substrate and amounts of enzyme and substrate. The optimal conditions to produce levulinic acid using the hydrolysate were determined by response surface methodology, with reaction temperature and catalyst (sulfuric acid) concentration as independent variables. The production model was assessed with an ANOVA regression analysis, and the results indicate its suitability for levulinic acid production (p, F, and lack-of-fit values were 0.003, 20.1, and 0.058, respectively). The optimal conditions were a reaction time of 56.27 min and catalyst concentration of 5.9% with a predicted yield of 2.588 g/L. We verified the findings under the same conditions and obtained 2.323 g/L of levulinic acid.

실크의 가용화 조건이 효소분해 실크 펩타이드의 분자량 분포에 미치는 영향 (Effect of Solubilization Conditions on Molecular Weight Distribution of Enzymatically-Hydrolyzed Silk Peptides)

  • 채희정;인만진;김의용
    • KSBB Journal
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    • 제13권1호
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    • pp.114-118
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    • 1998
  • 실크의 피브로인 단백짐의 가수분해에 의한 실크 펠타이드의 제조를 위하여 설크의 가용화 조건이 분자량 분포에 미치는 영 향을 고찰하였다 염 화칼숨, ethylenediamine 및 황산에 의해 가용화된 실크의 평균 분자량은 각각 41600, 3308과 1268 dalton 으로서 염화칼숨을 제외한 나머지 두 가용화 방법에서 평균 분 자량이 수천 dalton인 실크 용액을 얻을 수 있었으며 분산계수 는 3-4의 범위뜰 보였다. 가용화 및 분말화한 후 6시간 동안 단백질 분해효소 처리에 의하여 600-1200 dalton의 중량평균 분 자량을 갖는 살크 접타이드틀 얻을 수 있었다. 24시간 염산에 의한 산분해 처리에 의해 얻은 실크 웹타이드의 평균 분자량은 145 dalton으로 80%의 높은 유리 아미노산 함량을 나타내었다. 여러가지 가용화 방법 및 가수분해 방법 중 낮은 농도의 황산용 액으로 우선 실크를 가용화한 후 중화 및 효소처리에 의해 웹타 이드로 가수분해하는 방법이 과도한 아미노산의 유리를 억제하 면서 분자량의 조절도 용이할 것으로 판단되었다.

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Candida Rugosa Lipase에 의한 Ibuprofen 에스테르화 반응과 광학분할 (Optical Resolution of Racemic Ibuprofen by Candida Rugosa Lipase Catalyzed esterification)

  • 홍중기;김광제;소원욱;문상진;이용택
    • KSBB Journal
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    • 제17권6호
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    • pp.543-548
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    • 2002
  • Candida rugosa lipase를 이용하여 효소 농도, 반응온도, 알콜 농도 및 종류 등의 반응조건에 따른 racemic ibuprofen 에스테르화 반응의 초기반응속도, 전환율 그리고 입체 선택성 을 조사하였다. 제조된 S-(+)-ibuprofen alkyl ester는 황산을 촉매로 하는 가수분해반응에 의해 순수한 S-(+)-ibuprofen으로 전환되었다. 에스테르화 반응에서는 반응온도 6$0^{\circ}C$에서 최대 활성을 보였으며, 그 이상의 온도에서는 효소의 활성 저하로 전환율과 enantiomeric excess값이 동시에 현격하게 감소하는 경향을 보였다. 알코올 농도가 증가할수록 알콜의 효소반응 저해제작용으로 인하여 초기반응속도가 감소하는 경향을 보였으며, 최종 전환율은 Ibuprofen와 Alcohol의 몰 비가 1/1에서 최고 값을 나타냈다. 알콜 종류에 따른 알코올 체인 길이가(C$_2$~C$_{10}$) 증가할수록 전환율은 증가하였는데, 특히 알코올 체인길이가 가장 큰 데칸올이 가장 높은 전환율을 보였다. 반응온도가 6$0^{\circ}C$ 이상의 높은 경우를 제외하고 에스테르화 반응 조건에 따라 입체 선택성 즉 enantiomeric excess의 큰 변화는 없었다. 화학적 가수분해 반응은 비교적 짧은 반응시간(3시간)내에 평형반응에 도달하였으며 알코올 체인 길이에 관계없이 거의 95% 이상의 높은 전환율 및 입체 선택성을 나타냈다. Lipase에 의한 ibuprofen 에스테르화 반응의 최적 조건과 화학적인 가수분해 반응을 통해서 racemic ibuprofen으로부터 높은 수율의 S-(+)-ibuprofen을 확보할 수 있었다.