• Title/Summary/Keyword: glucose decomposition

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Studies on the change of chemical composition of Poncirus trifoiata ("탱자"의 화학성분변화에 관한 연구)

  • 박명삼
    • Journal of Plant Biology
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    • v.12 no.1
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    • pp.31-34
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    • 1969
  • This experimental was undertaken for the purpose to investigate the different chemical composition in developing fruit of Poncirus trifoiata. In the first place, the differences among the content of tannin and qualitative analysis of free sugars and organic acids in the fruit of Poncirus trifoiata fron Kwang-ju are to be investigated and chemical components are analyzed. 1) The differences of the content of tannin are investigated at the four periods of time and gradual decrease in the sample 2 (July 15) take place. 2) In sample 1 (June 20), xylose, mannose and rhamnose are not identified and later, as the fruit age, otehr three sorts of sugars with the former are founded and there is a conspicuous tendency to increase in the content and especially the increase in glucose and rhamnose seems to be related with the decomposition of tannin, while the decrease in the former from sample 2 to sample 4 with the formation of the latter. 3) Tartaric acid, succinic acid and citric acid are appeared and then in sample 1 (June 20( these are not founded and later all of them are identified and gradual increase in the content take place and especially citric acid and succinic acid seems to be increased in the content. These are related with the synthesis of organic materials in plant body.

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Physicochemical characteristics of hot-water leachate prepared from persimmon leaf dried after steaming or freezing treatment (스팀 및 동결 전처리가 건조 감잎 열수추출물의 이화학적 특성에 미치는 영향)

  • Hun-Sik Chung;Kwang-Sup Youn;Jong-Kuk Kim
    • Food Science and Preservation
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    • v.30 no.6
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    • pp.983-990
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    • 2023
  • This study was conducted to develop a preservation technology that can induce changes in physicochemical properties to effectively utilize of persimmon leaves. The application effects of steaming or freezing technique were investigated. Astringent persimmon leaves were steam-blanched (100℃, 30 sec) or frozen (-20℃, 15 d), followed by hot-air drying (50℃). The physicochemical properties of the extract obtained by hot-water leaching from the dried leaves were compared. The extract of leaves dried without pretreatment was used as a control. L* value was higher in steamed than in control and frozen. a* value was highest in the control. The browning index was higher in the frozen and lower in the steamed than in the control. Soluble solids were the highest in the steamed and the lowest in the frozen. Sucrose content was relatively high in the steamed, and the glucose and fructose contents were relatively high in the frozen. Total polyphenol content and DPPH radical scavenging activity were higher in steamed and lower in frozen than in control. Thus, it was confirmed that steam or freeze pretreatment after harvesting persimmon leaves affects the extraction yield, color, antioxidant capacity and component changes of dried persimmon leaves. Unlike steaming, freezing pretreatment showed the effect of promoting decomposition and browning reactions, and it is considered useful when such an effect is needed.

Effect of Oxalic Acid Pretreatment on Yellow Poplar (Liriodendron tulipifera) for Ethanol Production (바이오에탄올 생산에 적합한 백합나무(Liriodendron tulipifera)의 oxalic acid 전처리 효과 탐색)

  • Kim, Hye-Yun;Lee, Jae-Won;Jeffries, Thomas W.;Gwak, Ki-Seob;Choi, In-Gyu
    • Journal of the Korean Wood Science and Technology
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    • v.37 no.4
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    • pp.397-405
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    • 2009
  • In this study, we investigated the potential of producing bioethanol from Liriodendron tulipifera by using oxalic acid pretreatment. Amounts of fermentable sugars, mostly xylose and glucose, in the liquid fraction (hydrolysate) was $40.22g/{\ell}$ after the biomass was pretreated with 0.037 g/g of oxalic acid for 20 minutes at $160^{\circ}C$. Production amounts of ethanol was $8.6g/{\ell}$ from the 72 hours of simultaneous saccharification and fermentation (SSF) on solid fraction of the pretreated sample. At the same condition, when the reaction time increased to 40 minutes, $32.66g/{\ell}$ of fermentable sugars in the hydrolysate and $9.5g/{\ell}$ of ethanol was produced from the process of pretreatment and SSF. As a result of analyzing the fermentation inhibitors, such as acetic acid, 5-HMF, furfural and total phenolic compounds, as the reaction time increased, the amount of the fermentation inhibitors in the hydrolysate increased. Production of the fermentation inhibitors was more affected by initial concentration of oxalic acid rather than reaction time. $3.39{\sim}5.78g/{\ell}$ of acetic acid was produced by pretreatment with 0.013 g/g of oxalic acid, and the amount of furfural produced by decomposition of xylose was 2~3 times higher than the amount of 5-HMF produced by decomposition of glucose. All the hydrolysates contained more than $5g/{\ell}$ of total phenols considered as the degradation product of lignin. Therefore, by analyzing the amount of fermentable sugars and fermentation inhibitors in the hydrolysate, and producing ethanol from SSF of solid fraction of the pretreated sample, the biomass pretreated with 0.037 g/g of oxalic acid for 20 minutes at $160^{\circ}C$ can be expected to produce the most ethanol.

The Role of Fungal Laccase in Biodegradation of Lignin

  • Andrzej Leonowicz;Jolanta Luterek;Maria W.Wasilewska;Anna Matuszewska;M.Hofrichter;D.Ziegenhagen;Jerzy Rogalski;Cho, Nam-Seok
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.31 no.5
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    • pp.1-11
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    • 1999
  • Wood components, cellulose and lignin, are degraded simultaneously and the general outline for the complementary character of carbohydrates and lignin decomposition as well as the existence of enzymatic systems combining these processes is still valid. The degradatiion of free cellulose or hemicellulose into monosaccharides has long been known to be relatively simple, but the mechanism of lignin degradatiion wasn ot solved very clearly yet. Anyway the biodegradation of woold constituents is understood at present as an enzymatic process. Kigninolytic activity has been correlated with lignin and manganese peroxidases. At present the attention is paid to laccase. Laccase oxidizes lignin molecule to phenoxy radicals and quinones . This oxidation can lead to the cleavageo f C-C or C-O bonds in the lignin phenyl-propane subunits, resulting either in degradation of both side chains and aromatic rings, or in demethylation processes. The role of laccase lies in the "activation" of some low molecular weight mediators and radicals produced by fungal cultures. Such activated factors produced also in cooperation with other enzymes are probably exported to the wood environment where they work in degradation processes as the ' enzyme messengers." It is worth mentioning that only fungi possessing laccase show demethylating activity. Thus demethylation, the process important for ligninolysis, is probably caused exclusively by laccase. Under natural conditions laccase seems to work with other fungal enzymes , mediators and mediating radicals. It has shown the possibility of direct Bjrkman lignin depolymerization by cooperative activity of laccase and glucose oxidase.

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The Quality Characteristics of Chunggujang Prepared by Bacillus Subtilis NRLSI IV on the Different Inoculum Levels and Fermentation Times (Bacillus Subtilis NRLSI IV로 제조한 청국장의 접종포자농도와 발효시간에 따른 품질 특성)

  • Kim Kyung-Mi;Kim Haeng-Ran;Park Hong-Ju
    • The Korean Journal of Community Living Science
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    • v.17 no.3
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    • pp.123-131
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    • 2006
  • To compare the quality characteristics, chunggugjang was prepared with Bacillus subtilis NRLSI IV on the different inoculum levels$(10^2,\;10^4,\;10^6,\;and\;10^8 CFU/ml)$ and fermentation times(0, 12, 24, 36, and 48 hours). Although significant change in total nitrogen content was not found, the content of amino type, soluble and ammonia type nitrogen was generally increased according to the increase in fermentation time. Decomposition rate of nitrogen was also increased by fermentation time and nitrogen solubility was the highest value(62-75.9%) at 48 hour fermentation. In results of color changes, it was found that L and a value were decreased but there was no significant changes in b value as fermentation time was increased. In chunggugjang made with long fermentation time, hardness was decreased and relative viscosity of viscous substance was gradually decreased after little increase at initial fermentation time. The effect of inoculum level on hardness and relative viscosity were similar to that of fermentation time, i.e. the decrease of these at high inoculum level. In activity of V-GTP, 36 hour incubation could produce the highest value whereas no effect of inoculum level was found during fermentation except at 48 hour. In chunggugjang made with $10^2CFU/mL$ of Bacillus subtilis NRLSI IV, the content of glucose, sucrose, raffinose and stachyose was dramatically decreased at initial fermentation time and that of phytic acid, oxalic acid, citric acid, tartaric acid and malic acid was also decreased during fermentation, although the increase in acetic acid was found.

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Microbial Conversion of Woody Waste into Sugars and Feedstuff (I) - Optimal Delignification condition with alkaline peroxide for enzymatic hydrolysis of poplar wood (미생물(微生物)에 의한 목질자원(木質資源)의 당화(糖化) 및 사료화(飼料化)에 관(關)한 연구(硏究) (I) - alkaline peroxide에 의한 현사시나무의 효소가수분해를 위한 탈리그닌화의 적정조건)

  • Kim, Yoon-Soo;Bang, Joo-Wan;Chung, Ki-Chul;Myung, Kyu-Ho;Kim, Youn-Sik
    • Journal of the Korean Wood Science and Technology
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    • v.14 no.3
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    • pp.23-29
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    • 1986
  • Alakline peroxide pretreatment for the delignification of poplar wood was performed. sinceit is a simple and efficent method for enhancing the enzymatic digestibility of wood residues. Approximately one-half of their lignin and most of the hemicellulose present in poplar wood were removed when the wood sawdust was reacted at 25$^{\circ}C$ for 100 hrs in an alkaline solution (pH 11.5) of 1% peroxide. The rate of decomposition as well as the saccharification efficiency were enhanced up to 350% and 260% respectively in comparision with those of the controll. This enhancement is comparable with that pretreated with 1% sodium hydroxide and 20% peracetic acid successively. The advantages of alkaline peroxide as delignifying agents against other chemicals were also discussed.

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Fermentation properties of yoghurt supplemented with vitamin tree (Hippophae rhamnoides L.) fruit powder

  • Byung Bae Park;Gereltuya Renchinkhand;Woo Jin Ki;Jong Woo Choi;Myoung Soo Nam
    • Korean Journal of Agricultural Science
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    • v.49 no.4
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    • pp.893-904
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    • 2022
  • It is well documented that the fruit of the vitamin tree, which is rich in vitamins A, C, E, and K, shows anti-diabetic, antibacterial, immune regulation, anti-inflammatory, and anti-aging effects. In some countries including Europe it has been used to develop various functional foods. This study was conducted to elucidate the fermentation properties of fermented milk supplemented with vitamin tree (Hippophae rhamnoides L.) fruit powder. The pH, titratable acidity, number of viable cells, and viscosity of the yogurt made with vitamin tree fruit powder were found to be higher than those of the control group, as the amount of supplemented powder added became higher and the fermentation progressed. Production of lactic, malic, and acetic acids increased relative to that of the control as the amounts of supplemented powder were higher. It was found that the increase in the decomposition of lactose to glucose and galactose was proportional to the amount of supplemented powder added and the elapsed fermentation time. During storage for 15 days the quality of yogurt supplemented with vitamin tree fruit powder was within the proper range of fermented milk quality in terms of pH, titratable acidity, and number of lactic acid bacteria. The yoghurt manufactured with vitamin tree fruit powder has a similar quality to that of the control, and therefore, a new functional yoghurt providing health benefits could be developed.

Decomposition Characteristics of Non-Degradable Liquid Waste under High Temperature and High Pressure Conditions (고온 고압 조건에서의 난분해성 액상폐기물 분해 특성)

  • Lee, Gang-Woo;Shon, Byung-Hyun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.6
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    • pp.1572-1578
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    • 2007
  • The specified wastes consist of waste acid, waste alkali, waste oil, waste organic solvent, waste resin, dust, sludge, infectious waste, and others. Among these specified wastes, a great portion is liquid phase wastes. The purpose of this study is to develop the high temperature and high pressure (HTHP) treatment system for decomposition of the liquid phase specified waste (LPSW). For this, we analyzed the physical and chemical properties of the LPSW such as density, proximate analysis, ultimate analysis, heating values, and designed 0.3 ton/day HTHP treatment system. The LPSW tested in this experiment were prepared by adding TCE(trichloroethylene) and toluene to liquid phase waste which was brought into the commercial waste treatment company. The average density of waste oil (25 samples), waste resin (5 samples), and waste solvent (12 samples) was 0.99 g/mL, 0.91 g/mL, and 0.93 g/mL, respectively. And the average lower heating value of waste oil, waste resin, and waste solvent was 8,294 kcal/kg, 5,809 kcal/kg, and 7,462 kcal/kg, respectively. The DRE (Destruction & Removal Efficiency) of TCE and toluene were 99.95% and 99.73% at atmospheric pressure conditions and that were 99.99% and 99.82% at pressurized conditions, respectively. These results showed that TCE/toluene mixtures were properly decomposed over about 99.73% of DRE by the HTHP treatment system and pressurized conditions were more effective to destroy those pollutants than atmospheric pressure conditions. Also these systems could be directly applied to industries which try to treat the liquid phase specified waste within the regulation limit.

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Characteristics of Crude Protein-bound Polysaccharide from Agaricus blasei Murill by Extraction and Precipitation Conditions and Its Antitumor Effect (추출 및 침전조건에 따른 아가리쿠스버섯에서 분리한 조단백다당류의 특성 및 암세포 증식억제 효과)

  • Hong, Joo-Heon;Youn, Kwang-Sup;Choi, Yong-Hee
    • Korean Journal of Food Science and Technology
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    • v.36 no.4
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    • pp.586-593
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    • 2004
  • Efficient extraction method of crude protein-bound polysaccharide (CPBP) from Agaricus blasei Murill was established. CPBP yields by ultrasonic and hot water extractions were 13.0 and 7.8%, respectively. Pressure extraction for 3 hr gave the highest ${\beta}-glucan$ content; no significant difference was observed between 2 and 3 hr extraction. Four volumes added ethanol gave the highest yields of CPBP and ${\beta}-glucan$ contents at 10.89 and 35.97%, respectively. Decomposition temperature of CPBP was $240-365^{\circ}C$, showing relatively good thermal stability. In SRB (sulforhodamine B) assay, CPBP treatment at $1,000\;{\mu}g/mL$ for 72 hr inhibited proliferations to A549, MCF-7, and AGS cancer cells by 43.9, 21.4, and 32.5%, respectively.

Synthesis and characterization of hydrophobic and hydrophilic cellulose derivative by esterification (친수성과 소수성을 동시에 가지는 아세틸화 셀룰로스 에테르의 합성 및 특성 평가)

  • Kim, Taehong;Lee, Sangku;Son, Byunghee;Paik, Hyun-Jjong;Yoon, Sanghyeon;Lee, Heesoo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.23 no.1
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    • pp.31-36
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    • 2013
  • Acetylated Cellulose Ether (ACE), cellulose-based amphiphilic polymer with hydrophilic and hydrophobic, was synthesized and investigated in terms of its solubility and wettability for organic solvents and water. Acetyl group was substituted to the cellulose ether in a hydrophilic polymer by esterification. As a result of FT-IR, the peak corresponding to the hydroxyl group decreased and carboxyl acid peak increased with increasing reaction time and temperature, which signified the increase in the degree of acetylation of the ACE. There were similar thermal decomposition behaviors before and after esterification reaction until $800^{\circ}C$ so that the reaction occurred without significant structural changes of cellulose backbones. The solubility parameter of the ACE had a range of 18.5~26.4, and its viscosity and turbidity were controlled according to the solubility parameter of organic solvents. The ACE showed the hydrophilicity because the contact angle of the ACE was higher than the cellulose ether. These results confirmed that the ACE had the hydrophobicity and hydrophilicity due to the ether which was glucosidic bonding between the glucose units and un-reacted hydroxyl functional groups in the ACE.