• 제목/요약/키워드: Alkaline peroxide treatment

검색결과 39건 처리시간 0.023초

ALKALINE HYDROGEN PEROXIDE TREATED ASPEN AS A RUMINANT FEED

  • Myung, K.H.;Kennelly, J.J.;Chung, K.C.;Kim, Y.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제1권4호
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    • pp.195-199
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    • 1988
  • Two experiments were conducted to evaluate the nutritive value of a diet containing 20% alkaline hydrogen peroxide(AHP) treated aspen sawdust for ruminants. In experiment 1, sheep fed treated aspen(treated) had higher (p < 0.05) average daily gain and improved feed/gain ratio compared to animals fed untreated aspen (untreated), Apparent NDF and ADF digestibilities of treated aspen were higher (p < 0.05) than for untreated material. A similar trend was observed for DM, organic matter and cellulose digestibilities coefficients. In experiment 2, the soluble and degradable DM and crude protein (CP) fractions tended to increase with AHP treatment. Treatment also increased (p<0.05) the degradation rate of the degradable fraction. Results of these experiment indicate that AHP treatment results in a substantial improvement in the extent of utilization of aspen sawdust by ruminants.

Lyophyllum decastes를 이용(利用)한 볏짚의 발효사료(醱酵飼料)에 관한 연구(硏究) -ll. 과산화수소(過酸化水素) 및 과탄산(過炭酸)소다 처리(處理)의 영향(影響)- (Studies on Improving the nutritive value of Rice straw by Fermentation with Lyophyllum decastes -II. Effect of $H_2O_2\;and\;2Na_2CO_3{\cdot}3H_2O_2$ treatments-)

  • 홍재식;김동한;이극로;김명곤;김영수;여규영
    • 한국균학회지
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    • 제16권3호
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    • pp.135-143
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    • 1988
  • 볏짚의 $H_2O_2$ 처리는 첨가농도를 늘리거나 pH를 알칼리로 조정하는 것이 첨가비율을 증가시키는 것 보다 비소화성 물질의 분해에 효과적이었고 볏짚입자가 작을수록 이러한 효과는 현저하였다. $2Na_2CO_3{\cdot}3H_2O_2$는 pH를 조정할 필요는 없으나 처리효과는 pH를 11.5로 조정한 $H_2O_2$ 처리에 비하여 낮았다. Alkaline peroxide 처리에 의하여 lignin과 hemicellulose의 감소는 현저하였다. Alkaline peroxide 전처리 볏짚의 발효로 총질소와회분은 증가하였고, NDF, hemicellulose, lignin은 분해되어 감소되었으며, ADF와 cellulose는 저농도 처리에서 감소하였다. 볏짚의 소화율은 alkaline peroxide 처리농도가 증가할수록 향상되어 대조구의 31.0%에 비하여 pH를 11.5로 조정한 12% $H_2O_2$와 12% $2Na_2CO_3{\cdot}3H_2O_2$ 처리시 각각 89.4%, 76.8%로 상승되었다. Alkaline peroxide 전처리 볏짚의 발효에 의한 소화율의 상승은 저농도 전처리에서 효과적이었다. 4% $H_2O_2$ 반건식처리로 ADF와 cellulose는 감소되어 소화율은 57.5%이었고 전처리 볏질의 발효로 대조구의 33.4%에 비하여 63.4%로 상승되었다.

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EFFECT OF ALKALINE HYDROGEN PEROXIDE AND PERACETIC ACID ON IN SACCO RUMINAL DIGESTIBILITY OF ASPEN SAWDUST

  • Myung, K.H.;Kennelly, J.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권4호
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    • pp.635-641
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    • 1992
  • The influence of alkaline hydrogen peroxide (AHP) and peracetic acid treatment on in sacco digestion of aspen was evaluated in three non-lactating ruminally cannulated Holstein cows fed a diet containing 90% forage and 10% concentrate on a DM basis. AHP treatment decreased lignin concentration by 40 to 60% resulting in increased concentrations of neutral detergent fiber (NDF), acid detergent fiber (ADF) and cellulose. Lignin concentrations in peracetic acid treated samples were less than 10% of values for control samples. In sacco disappearance rates of aspen DM, NDF, ADF and cellulose increased (p<.05) with AHP and peracetic acid treatment. Effective degradability of DM, NDF, ADF and cellulose were determined at a ruminal outflow rate of $.05h^{-1}$. Effective degradabilities of AHP treated aspen were approximately three-fold greater and peracetic acid treated samples five-fold greater than untreated control samples. For all parameters measured, peracetic acid treatment resulted in higher (p<.05) digestion coefficients than AHP treated aspen. Results demonstrate that peracetic acid or AHP treatment can enhance the nutritive value of aspen sawdust for ruminants to a level comparable to that reported for many forages.

EFFECT OF ALKALINE HYDROGEN PEROXIDE TREATMENT OF RICE STRAW ON IN SACCO RUMINAL DIGESTIBILITY

  • Myung, K.H.;Kennelly, J.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제3권1호
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    • pp.1-6
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    • 1990
  • The objective of this experiment was to compare the effect of pH-regulated alkaline hydrogen peroxide (AHP) treatment of rice straw with those of sodium hydroxide (NaOH) and anhydrous ammonia ($NH_3$) treatments on in sacco digestivility. Three non-lactating ruminally cannulated Holstein cows were fed a diet containing 90% forage and 10% concentrate on a dry matter (DM) basis. The AHP treatment significantly (p<0.05) reduced acid detergent lignin content of the straw, resulting in significant (p<0.05) increase of neutral detergent fiber (NDF), acid detergent fiber (ADF) and cellulose concentrations. Disappearance rates of DM and NDF of the straw significantly (p<0.05) increased at the incubation time of 24 h. On the other hand, those of ADF and cellulose were significantly (p<0.05) higher at the incubation time of 12 h than those of the others. The effective degradability of DM(EDDM), NDF(EDNDF), ADF(EDADF) and cellulose (EDCE) were determined using in sacco nylon bag technique on the basis of 0.05/h solid outflow rate. The greater differences (p<0.05) of EDDM, EDNDF, EDADF and EDCE were found between AHP treated straw and the others. In general, AHP treatment of the straw recorded higher digestion coefficients than untreated straw as well as NaOH and $NH_3$ treated straws. The results of this study demonstrate that AHP treatment can be used as a effective method for improving the nutritive value of rice straw for ruminants.

국내산 소나무로 제조된 APMP 특성 연구 (Study of Alkaline Peroxide Mechanical Pulp Made from Pinus densiflora)

  • 이지영;남혜경;김철환;권솔;박동훈;주수연;이민석
    • 펄프종이기술
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    • 제48권1호
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    • pp.100-110
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    • 2016
  • Alkaline Peroxide Mechanical Pulping (APMP) of Pinus densiflora harvested from domestic mountains was explored. APMP contributes to various advantages including pulp quality, elimination of the need for a bleaching process, and energy savings. Sequential treatment of impregnation of bleaching chemicals and refining not only overcome the concern of alkaline darkening of wood chips during chemical impregnation, but it also brightens the chips to the desired brightness levels suitable for writing and printing papers. APMP pulping from Pinus densiflora was greatly influenced by the dosage levels of hydrogen peroxide and sodium hydroxide. Alkaline peroxide treatment was carried out by applying one of three levels of hydrogen peroxide (1.5, 3, and 4.5% based on the oven-dried weight of the wood chips) and one of three levels of sodium hydroxide (1.5, 3, and 4.5% based on the oven-dried weight of the wood chips). Other chemicals including a peroxide stabilizers and metal chelation were constantly added for all treatments. Chemical treatment with a liquor-to-wood ration of 9:1 was carried out in a laboratory digestor. Compared to BTMP, APMP pulping displayed outstanding characteristics including the less requirement of refining energy, the better improvement of tensile strength, the more reduction of shives, and the greater increase of pulp brightness. In particular, when 4.5% of hydrogen peroxide with impregnation during 90 minutes was used, the brightness of APMP reached 64.9% ISO. Even though bulk of APMP was decreased with the increase of sodium hydroxide, a better and improved balance could be achieved between optical and strength properties. The spent liquor obtained from the discharge of the impregnation process at the dosage level of 4.5% hydrogen peroxide exhibited an equal level of residual peroxide with BTMP. In conclusion, APMP pulping showed successful results with Pinus densiflora due to its better response to the development of optical and physical properties compared to TMP pulping.

THE ORIGIN AND DISTRIBUTION OF ANIONIC GROUPS IN TMP

  • Anna Sundberg;ndrey Pranovich;Bjarne Holmobom
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 1999년도 Pre-symposium of the 10th ISWPC Recent Advances in Paper Science and Technology
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    • pp.254-258
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    • 1999
  • The distribution of anionic groups in the fibers, the fines, the colloidal fraction and the dissolved fraction, respectively, of thermomechanical pulp (TMP) suspensions was determined and peroxide bleaching of spruce TMP were also studied. Spruce TMP was extracted with hexane, treated with alkali, or bleached with peroxide. Suspensions made at pH 5.5 were fractionated into long fibres, large fines, small fines, a colloidal fraction and a dissolved fraction. The charge of the fractions was determined using polyelectrolyte titration. To determined the origin of the charges, the contents of fatty acids, resin acids and acidic units in hemicelluloses in the different fractions were determined by has chromatography. Extraction of TMP with hexane prior to fractionation increased the measured charge of the fibres. The removal of the wood resin probably uncovered some carboxyl groups on the fibre surfaces, or improved th e penetration of polybrene into the pores of the fibres. The charge of the fines and the colloidal fraction was lower when the wood resin had been removed. Alkaline treatment of the TMP increased the charge of the fibres and fines, mainly because of demethylation of pectins. Alkaline treatment increased the charge also of the dissolved fraction, because of the release the charge also of the dissolved fraction, because of the release of pectic acids into the water phase. Alkaline peroxide bleaching further increased the charge of fibres and the dissolved fraction, most likely because of lignin oxidation. The charge of the colloidal fraction, consisting mainly of wood resin, was only slightly affected by alkaline treatment and peroxide bleaching. The anionic groups in TMP suspensions were mainly free uronic acids in the hemicelluloses. The contribution from the fatty and resin acids was substantial only for the colloidal fraction.

볏짚 사료가치 증진을 위한 알카리성 과산화수소의 적정 처리수준 (The Optimum Levels of Alkaline Hydrogen Peroxide Treatment of Rice Straw for Feed)

  • 최윤희;김명숙;홍재식
    • Applied Biological Chemistry
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    • 제37권5호
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    • pp.320-325
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    • 1994
  • 볏짚의 사료가치를 증진시키기 위하여 알카리성 과산화수소를 이용하여 볏짚에 대한 처리수준별 화학성분의 변화와 in vitro 소화율을 조사 검토하였다. $H_2O_2(pH 11.5)$의 처리농도를 증가시킬수록 neutral detergent fiber(NDF), acid detergent fiber(ADF), hemicellulose, cellulose 및 lignin이 감소하였으며 $H_2O_2(pH 11.5)$를 처리한 후 수세시는 농도가 증가할수록 NDF, hemicellulose 및 lignin은 감소한 반면 ADF, cellulose, 회분은 증가하였다. 알카리성 과산화수소의 농도를 4%로 조정하여 처리하였을 때 pH는 $11.5{\sim}12.5$에서, 온도는 $55^{\circ}C$에서 세포벽구성물질의 분해에 효과적이었으며, 4% $H_2O_2(pH 11.5)$ 처리시 볏짚의 크기가 작을수록 잔류건물 중, hemicellulose, cellulose 및 lignin이 감소하였다. 알카리성 과산화수소의 처리에 의한 in vitro 소화율은 처리농도 및 pH가 증가할수록 볏짚의 크기가 작을수록 증가하였다.

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Bleaching of Kraft Pulp with Xylanase and Laccase-Mediator System

  • Yoon, Chulhyun;Jung, Hyunchae
    • 펄프종이기술
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    • 제46권1호
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    • pp.1-10
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    • 2014
  • Xylanase (X) derived from Aurreobasidium pullulans and laccase-mediator system (LM) using Trichophyton sp. LKY-7 laccase (TrL) and N-hydroxy-2-pyridone analogue (NHP) as a mediator were applied in hardwood kraft pulp (HwKP) bleaching. The individual and the synergistic effects of X and LM stage were investigated in the enzymatic bleaching of HwKP. Also, the effects of subsequent alkaline extraction (E) and alkaline/hydrogen peroxide treatment (P) were examined. In X or LM treatment alone, an appreciable bleaching effect of HwKP was not observed, whereas subsequent E or P stage enhanced the increase of brightness and the decrease of kappa number. Especially, P stage significantly enhanced the bleaching effect of pulp. Bleaching of HwKP with XLM sequentially gave significantly higher pulp brightness and lower kappa number than that obtained after the treatment of HwKP with X+LM simultaneously. When HwKP was sequentially treated with XLM followed by P stage, the brightness increased by about 11% ISO and the kappa number decreased by about 3.6 in comparison with the initial pulp. Xylanase and laccase were strongly inactivated by NHP both in the absence and the presence of pulp.

구멍갈파래의 알칼리 과산화수소 전처리 및 효소 가수분해 특성 (Enzymatic Hydrolysis of Pre-treated Ulva pertusa with Alkaline Peroxide)

  • 윤병태;김영운;정근우;김진석
    • 공업화학
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    • 제22권3호
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    • pp.336-339
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    • 2011
  • 해조류는 잠재력이 있는 풍부한 발효기질이다. 해조류의 효소가수분해를 상업용 셀룰라아제 및 비스코자임과 함께 알칼리 과산화수소 전처리에 의해서 검토하였다. 본 연구에서 사용된 해조류는 구멍갈파래이며, 전처리 평가는 효소가수분해 후 얻어진 글루코오스의 수율로 나타내었다. 알칼리 과산화수소는 과산화수소 1 wt%에 수산화나트륨을 1~1.75 wt% 범위로 혼합하였다. $60^{\circ}C$에서 3 h 동안 전처리한 결과 5 wt% 과산화수소를 사용했을 때에 가장 높은 글루코오스 전환율을 보였다. 알칼리 과산화수소로 전처리한 후 필요한 효소의 양은 전처리하지 않은 구멍갈파래에 비하여 상당히 절감되었으며, 아울러 효소 가수분해동안 얻어진 글루코오스의 양은 증가되었다.