• Title/Summary/Keyword: thermophilic fermentation

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High Production of Thermostable Beta-galactosidase of Bacillus stearothemophilus in mesophiles

  • Okada, Hirosuke;Hirata, Haruhisa;Negoro, Seiji
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1986.12a
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    • pp.509.1-509
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    • 1986
  • Recent advances in recombinant DNA techniques have provided a tool for breeding of microorganisms of hyper production. Enzyme production by cloned microorganism has some advantages. They are ⅰ) Enzymes can be produced by a microorganism easily cultured ⅱ) Hyper production. ⅲ) In some cases, such as thermophilic enzyme gene is cloned in a mesophilic bacteria, the enzyme purification procedure can be simplified. One example, production of thermophilic ${\beta}$-galactosidase in B. subtilis will be presented. Bacillus stearothermophilus IAM 11001 produced three ${\beta}$-galactosidases, ${\beta}$-galactosidase I, II and III (${\beta}$-gal-I, II and III). By connecting restriction fragments of the chromosomal DNA to plasmid vector, followed by transformation of Escherichia coli, two ${\beta}$-galactosidase genes (bgaA and bgaB) located close to each other on the chromosome were cloned.

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Thermophilic Anaerobic Acid Fermentation of Food Wastes after NaOH Addition (NaOH 첨가에 따른 음식물찌꺼기 고온 혐기성 산발효)

  • Ahn, Chul-Woo;Lee, Chul-Seung;Seo, Jong-Hwan;Park, Jin-Sik;Moon, Choo-Yeon;Jang, Seong-Ho;Kim, Soo-Seung
    • Korean Journal of Environmental Agriculture
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    • v.23 no.4
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    • pp.220-227
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    • 2004
  • This study showed that thermophilic anaerobic acid fermentation of food wastes had an enhanced hydrolysis capability and improvement of acidification efficiency. Influence of pH on the anaerobic hydrolysis and acidogenesis was investigated to determine the proper alkalinity in the thermophilic fermentation of food wastes. The results of putting NaOH as alkali to evaluate hydrolysis and acid fermentation efficiency In acid fermentation process of food wastes showed that the food wastes pretreated with 0.05 g NaOH/g TS had the maximum 12,600 mg/L of VFAs concentration during HRT 3 days in $55^{\circ}C$ thermophilic condition and the maximum 9,700 mg/L of VFAs concentration during HRT 5 days in $35^{\circ}C$ mesophilic condition. The accomplishment of high VFAs concentration resulted from that the main component of food wastes such as cellulose, lignin and etc. is performed active chemical decomposition by alkali in thermophilic condition. The major components of VFAs produced from the thermophilic acid fermentation process of food wastes were the short chain fatty acids such as acetic acid, butyric acid, and propionic acid.

Co-digestion of Thermophilic Acid-fermented Food Wastes and Sewage Sludge (음식물찌꺼기 고온산발효산물과 하수슬러지의 혼합처리)

  • Ahn, Chul-Woo;Jang, Seong-Ho;Park, Jin-Sik
    • Journal of Environmental Science International
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    • v.15 no.9
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    • pp.897-905
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    • 2006
  • This study has been conducted to investigate biodegradation characteristics and optimum mixing ratio for co-digestion with thermophilic acid-fermented food waste and sewage sludge using batch anaerobic digester. As the basis operating conditions for anaerobic digestion, the reaction temperature was controlled $35{\pm}1^{\circ}C$ and stirrer was set 70rpm. Thermophilic acid-fermented food waste and sewage sludge were mixed at the ratio of 10:0, 7:3, 5:5, 3:7, 0:10 and 5;5(food waste : sewage sludge) as the influent substrates. In results of co-digestion according to mixing ratio of thermophilic fermented food wastes and sewage sludge in batch mesophilic anaerobic digestion reactor, $385mL\;CH_4/g\;VS_{added}$ of methane production rate at 1:1 mixing ratio was more than that of any other mixing ratios. Compared with $293mL\;CH_4/g\;VS_{added}$ of methane production rate at 1:1 mixing ratio of food wastes and sewage sludge, pretreatment of food wastes by thermophilic acid fermentation was more effective in co-digestion with sewage sludge.

Experimental Assessment of Mesophilic and Thermophilic Batch Fermentative Biohydrogen Production from Palm Oil Mill Effluent Using Response Surface Methodology

  • Azam Akhbari;Shaliza Ibrahim;Low Chin Wen;Afifi Zainal;Noraziah Muda;Liyana Yahya;Onn Chiu Chuen;Farahin Mohd Jais;Mohamad Suffian bin Mohamad Annuar
    • Korean Chemical Engineering Research
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    • v.61 no.2
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    • pp.278-286
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    • 2023
  • The present work evaluated the production of biohydrogen under mesophilic and thermophilic conditions through dark fermentation of palm oil mill effluent (POME) in batch mode using the design of experiment methodology. Response surface methodology (RSM) was applied to investigate the influence of the two significant parameters, POME concentration as substrate (5, 12.5, and 20 g/l), and volumetric substrate to inoculum ratio (1:1, 1:1.5, and 1:2, v/v.%), with inoculum concentration of 14.3 g VSS/l. All the experiments were analyzed at 37 ℃ and 55 ℃ at an incubation time of 24 h. The highest chemical oxygen demand (COD) removal, hydrogen content (H2%), and hydrogen yield (HY) at a substrate concentration of 12.5 g COD/l and S:I ratio of 1:1.5 in mesophilic and thermophilic conditions were obtained (27.3, 24.2%), (57.92, 66.24%), and (6.43, 12.27 ml H2/g CODrem), respectively. The results show that thermophilic temperature in terms of COD removal was more effective for higher COD concentrations than for lower concentrations. Optimum parameters projected by RSM with S:I ratio of 1:1.6 and POME concentration of 14.3 g COD/l showed higher results in both temperatures. It is recognized how RSM and optimization processes can predict and affect the process performance under different operational conditions.

Changes and Distributional Pattern of Microflora in Cotton Waste Media of Oyster Mushroom Cultivation (느타리버섯 균상재배 중 배지내 미생물상의 변화 및 분포양상)

  • Lee, Chan-Jung;Yu, Hyung-Sik;Jhune, Chang-Sung;Cheong, Jong-Chun;Han, Hye-Su
    • The Korean Journal of Mycology
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    • v.37 no.2
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    • pp.150-154
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    • 2009
  • The diversity of microflora according to growth stage of Pleurotus ostreatus and the correlation between microbe and medium fermentation were investigated. In farmhouse I, the aerobic bacteria and fungi as longer of growing period were increased. And, thermophilic bacteria and fluorescent Pseudomonas sp. showed high density at the early stage of spawn inoculation. The thermophilic actinomycetes were distributed evenly during all the growing period, but mesophilic actinomycetes were not observed. In farmhouse II, thermophilic actinomycetes were not observed in fermented medium and density of fungi were suddenly increased at 60 days after spawn inoculation. And also, mushrooms can hardly be harvested due to Penicillium spp. After medium fermentation, density of aerobic bacteria, thermophilic bacteria, and fluorescent Pseudomonas sp. was higher at farmhouse I than those of farmhouse II. In farmhouse I, Bacillus sp. and Pseudomonas sp. dominated at early stage of mushroom growth but as time goes by, density of Bacillus sp. was higher than the others. And also, the kind of microbe showed a few at early stage of mushroom growth but increased as time goes by. In farmhouse II, Bacillus sp. was dominated at early stage of mushroom growth. And the growth of Bacillus sp. and Pseudomonas sp. showed intersect aspect each other in the farmhouse I but Bacillus sp. dominated during all growth periods in the farmhouse II.

Physicochemical Effect on Ultra Thermophilic Aerobic Composting Process (초고온 호기성 퇴비화의 물리·화학적 인자 평가)

  • Park, Seyong;Yoo, Euisang;Chung, Daihyuck;Lee, Jin;Kim, Moonil
    • Journal of the Korean GEO-environmental Society
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    • v.11 no.11
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    • pp.27-36
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    • 2010
  • This study was conducted to evaluate physicochemical parameters; temperature, pH, C/N ratio, water content, organic contents and volume in a pilot-scale(capacity : $100m^3$) ultra thermophilic aerobic composting. There were three types input: municipal wasted sludge, livestock manure and slurry, and food waste produced in Jung-Eb city. Each target material was carried out by the first fermentation(organic waste + seed culture) and the second one(organic waste + seed culture + recycle compost), respectively. During composting, only with supply of air and mixing, the temperature increased $90{\sim}105^{\circ}C$ after every mixing in both periods. The changes of pH, $O_2$, $CO_2$ and $NH_3$ represented typical organic decomposition pattern by microorganisms. Also, all other physicochemical parameters of ultra thermophilic aerobic composting process showed similar or better performance than these of general aerobic composting. Heavy metal concentration of fermented compost adapted to compost fertilizer regulation standard in the heavy metal and hazardous analysis.

Studies on Enzyme of the Thermophilic Mold-(Part 2.) Thermophilic mold alkaline protease- (고온성 사상균의 효소에 관한 연구-(제2보) 고온성사상균의 알카리성 protease-)

  • Chung, Dong-Hyo;Lee, Ke-Ho
    • Applied Biological Chemistry
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    • v.13 no.3
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    • pp.223-229
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    • 1970
  • 1. The preparation and some enzymatic properties of crude alkaline protease from a thermophilic mold, Myriococcum sp. was investigated. 2. Optimum pH for the hydrolysis of casein was 9.0 at $50^{\circ}C$ for 10 minutes. Optimum temperature was $55^{\circ}C$ at pH 9.0 for 10 minutes. The enzyme was highly stable at the range of pH 6.0 to 11.0 at $30^{\circ}C$ 3. The alkaline protease in the culture filterate was isolated two fractions by elution column chromatography on DEAE-Cellulose.

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Isolation and Characterization of Growth Stimulating Thermophilic Fungi on Oyster Mushroom from Oyster Mushroom (Pleurotus ostreatus) Compost (느타리버섯 배지로부터 느타리버섯 균사의 성장을 돕는 고온성 곰팡이의 분리 및 동정)

  • 이호용;현성희
    • Korean Journal of Microbiology
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    • v.36 no.1
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    • pp.33-39
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    • 2000
  • Some of thermophilic fungi which has growth-promoting effect on Pleurotus ostreatus were isolated from compost during high temperature fermentation process. The temperature optima of 7 isolated thermophilic fungi were $50^{\circ}C$ on PDA media. Isolated strains S-1 and S-2 have the best mycelial growing rate, so these isolates were expected as excellent thermophilic fungi for high temperature composting and mycelial growing of oyster mushroom. In liquid culture, the optimal pH of thermophilic fungi observed variously, pH 7.0-10.0 but most of thermophilic fungi grow well in pH 8.0-pH 9.0 and the final pH of media after cultured was done pH 5.5-6.0. In liquid culture of thermophilic fungi on the optimal condition, S-2 have the best mycelial growing rate. The growing rate of thermophilic fungi S-1, S-2, S-5, and S-10 on lignocellulosic substrates was good but Humicola grisea var. thermoidea, well know thermophilic fungi which has growth-promoting effect on Agaricus bisporus, was poor and which was well grown on PDA at $50^{\circ}C$, pH 7.0. Isolated strain S-1 was identified as Trichophyton sp. and other 6 strains were identified as Sepedonium sp. by morphological characteristics.

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The Characteristics of Thermophilic Fungi in Relation to Growth-Promoting Effect on the Mycelium of Pleurotus ostreatus (Pleurotus ostreatus 균사의 생장 촉진 효과를 나타내는 고온성 곰팡이의 특징)

  • Lee, Ho-Yong;Shin, Chang-Yup;Kim, Jun-Ho;Kim, Won-Rok;Lee, Young-Keun;Chang, Hwa-Hyoung;Song, In-Geun;Hyun, Soung-Hee;Min, Bong-Hee
    • The Korean Journal of Mycology
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    • v.28 no.2
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    • pp.97-102
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    • 2000
  • The mycelial growth of Pleurotus ostreatus in compost is strongly stimulated by solid-state fermentation with thermophilic fungi which were isolated from oyster mushroom compost. The biochemical characteristics of these thermophilic fungi were investigated. Cellulase and ligninase activities were not detected by clear zone effect on CMC and lignin media. All of thermophilic fungi grew well with high mycelial density on xylan media and the growing rate of Sepedonium sp. S-2 observed very high. In results of MUF-test, extracellular enzyme activity of Sepedonium sp. S-2, and S-5 measured very high. On the compost after high temperature fermentation with Sepedonium sp. S-2 and S-5, the mycelial growing rate of Pleurotus ostreatus was increased about 50% and it also showed the inhibiting effect on mycelial growth of Trichoderma sp. SJG-51. Isolated thermophilic fungi, Sepedonium sp. S-2 and S-5 were expected as very useful organism for making oyster mushroom compost.

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Conversion of an Anaerobic Digester to Thermophilic Range (혐기성소화조(嫌氣性消和槽)의 고온(高溫)에로의 전환(轉換))

  • Chang, Duk;Chung, Tai Hak
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.6 no.4
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    • pp.21-28
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    • 1986
  • Conversion of anaerobic mesophilic digestion to thermophilic range has been investigated using a synthetic sludge. When temperature was raised at a rate of 2, 1, and $0.5^{\circ}C$ per day with continuous feeding, a lower reaction rate was observed with a high rate of temperature change. Although methane fermentation ceased completely for an digesters at thermophilic temperature, acid fermentation continued. Methane fermentation was never achieved even with neutralization during 6 months of resting. The methane formers were completely inactivated by the temperature shock and accumulation of volatile acids due to continuous feeding, while the acid formers lost biological activity quickly, but gradually acclimated to a high temperature. When temperature was raised without feeding, successful thermophilic digestion was achieved with 1 day of resting at thermophilic temperature at a rate of $1^{\circ}C$ per day, and also achieved with 20 days of resting at a direct increase. Conversion to a thermophilic range is easily achieved with resting. A short period of resting is required at a low rate of temperature increase, while a long period of resting enough to balance methane formers with acid fermers makes a conversion possile when temperature is raised at a high rate. Soured thermophilic digesters were recovered after seeding of mesophilic sludges, and sludge seeding could be a good method of start-up, conversion, or recovery of a thermophilic digester. Significant amount of thermophiles seemed to be present in the mesophilic digesters.

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