• Title/Summary/Keyword: Biomass to Liquid

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Mass production of potato microtubers by bioreactor culture (바이오리액터 배양기에 의한 감자소괴경 대량 생산)

  • Kim, Jae-Whune;Choi, Eun-Gyung;Oh, Seung-Cheol;Joo, Sun-Ah;You, Dong-Min;Kim, Soon-Kap;Kim, Jeong-Kook
    • Journal of Plant Biotechnology
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    • v.37 no.1
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    • pp.110-114
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    • 2010
  • Highest increase of biomass was observed when tissue-cultured potato (Solanum tuberosum L. cv. Chubaek) shoots were cultured in a liquid medium containing 1/3 MS solution in a 18 L bioreactor, as compared to 1/4 and 1/2 MS solution. The medium containing 1/4 MS solution showed higher increase of shoot biomass than one containing 1/2 MS solution. Potato microtubers were formed when the medium was exchanged with the medium for microtuber formation and incubated under dark condition. The microtubers were observed first at some axillary buds one week after incubation under dark condition and then at most of the axillary buds by the end of 3 weeks. The 1.5 MS liquid medium and $20^{\circ}C$ were optimal conditions. By the end of 6 weeks, more 1,000 microtubers were formed in the 18 L bioreactor. Then, greened microtubers were harvested after one week culture under light condition.

Behaviour of Condensing Gaseous Species under Various Operating Conditions in a Combustion Facility (환경조건변화에 따른 응축성 가스상 물질의 거동특성)

  • Kim, Yong-Gu;Bong, Choon-Keun;Song, Gyu-Young;Lee, Myong-Hwa
    • Journal of Korean Society for Atmospheric Environment
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    • v.29 no.5
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    • pp.634-641
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    • 2013
  • Condensing species behaviour downstream of a combustor was discussed with particle size distribution in this study. The effects of operating conditions in a biomass combustion facility, i.e. concentration of condensing species, temperature gradient, residence time and injection of adsorbents, on particle size distribution were investigated. Pyroligneous liquid which was completely vaporized at the temperature higher than $350^{\circ}C$ was used as a representative of condensing gaseous species. We found that particle size downstream of a combustor increased with increasing heating temperature (i.e. concentration of condensing species) and residence time. However, temperature gradient was not an important factor to control the particle size. The addition of $SiO_2$ precursor as an adsorbent could effectively prevent the particle formation by adsorbing condensing gaseous species on $SiO_2$ particles, and increased the particle size up to 300 nm, resulting in increasing particle removal efficiency in a conventional air pollution control device.

Coproduction of Enzymes and Beta-Glucan by Aspergillus oryzae Using Solid-State Fermentation of Brown Rice

  • Ji, Su Bin;Ra, Chae Hun
    • Journal of Microbiology and Biotechnology
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    • v.31 no.7
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    • pp.1028-1034
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    • 2021
  • The effect of medium composition on enzyme and β-glucan production by Aspergillus oryzae KCCM 12698 was investigated. Brown rice, rice bran, nitrogen, and ascorbic acid are key components of the synthetic medium used in liquid-state fermentation. To determine the optimal concentrations of these components for enzyme and β-glucan production, we conducted one factor at a time experiments, which showed that the optimal concentrations were 30 g/l brown rice, 30 g/l rice bran, 10 g/l soytone, and 3 g/l ascorbic acid. Pretreatment of brown rice for 60 min prior to inoculation enhanced fungal biomass, while increasing the production of enzymes and β-glucan using solid-state fermentation. Maximum fungal biomass of 0.76 mg/g, amylase (26,551.03 U/g), protease (1,340.50 U/g), and β-glucan at 9.34% (w/w) were obtained during fermentation. Therefore, solid-state fermentation of brown rice is a process that could enhance yield and overall production of enzymes and β-glucan for use in various applications.

Influence of $CO_2$ on Growth and Hydrocarbon Production in Botryococcus braunii

  • Ranga Rao, A.;Sarada R.;Ravishankar G.A.
    • Journal of Microbiology and Biotechnology
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    • v.17 no.3
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    • pp.414-419
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    • 2007
  • Botryococcus braunii is a green colonial fresh water microalga and it is recognized as one of the renewable resources for production of liquid hydrocarbons. CFTRI-Bb-l and CFTRI-Bb-2 have been reported for the first time and their performance with regard to growth and biochemical profile is presented here. The present study focused on effect of carbon dioxide $(CO_2)$ on biomass, hydrocarbon, carbohydrate production, fatty acid profile, and carotenoid content in various species of B. braunii (LB-572, SAG 30.81, MCRC-Bb, N-836, CFTRI-Bb-l, and CFTRI-Bb-2) at 0.5, 1.0, and 2.0% (v/v) levels using a two-tier flask. $CO_2$ at 2.0% (v/v) level enhanced growth of the organism, and a two-fold increase in biomass and carotenoid contents was observed in all the B. braunii strains studied compared with control culture (without $CO_2$ supplementation). At 1 % and 2% (v/v) $CO_2$ concentrations, palmitic acid and oleic acid levels increased by 2.5 to 3 folds in one of the strains of B. braunii (LB-572). Hydrocarbon content was found to be above 20% at 2% $CO_2$ level in the B. braunii LB-572, CFTRI-Bb-2, CFTRI-Bb-l, and N-836 strains, whereas it was less than 20% in the SAG 30.81 and MCRC-Bb strains compared with control culture. This culture methodology will provide information on $CO_2$ requirement for growth of algae and metabolite production. B. braunii spp. can be grown at the tested levels of $CO_2$ concentration without much influence on culture pH.

Variation of Ergosterol Content in Lentinula edodes Culture (표고 균사 배양체내 에르고스테롤 함량의 변이)

  • Koo, Chang-Duck;Cho, Nam-Seok;Kim, Je-Su;Park, Jae-In;Choi, Tae-Ho;Min, Du-Sik
    • Journal of the Korean Wood Science and Technology
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    • v.28 no.1
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    • pp.65-70
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    • 2000
  • Ergosterol is an indicator chemical of fungi and involves in fungal cell growth as a major component in fungal cell membranes. Thus, this chemical can be used to estimate live fungal biomass within various solid substrates. Ergosterol content in liquid culture of Lentinula edodes had a linear relationship (r=0.98) with the hyphal mass of the fungus. This chemical content differed depending on the fungal strains, age of culture and water content levels of sawdust substrate. Ergosterol content was 0.13% in the 10 weeks old liquid culture while it was 0.10% in 20 weeks old one. The chemical content in the sawdust cultures of the fungus varied 0.015% to 0.042% depending upon strains and water content levels within sawdust substrate. Ergosterol content in the culture of a L. edodes strain, Sanrim 4, was higher by $20{\mu}g$ to $140{\mu}g$/g dry substrate than those of strains, Mok-H and Sanrim 6. And the chemical contents in the sawdust cultures with 125% or 175% water, 297 to 425 ${\mu}g$/g dry substrate, were higher than those with 75% or 225% water, 148 to $286{\mu}g$/g dry substrate. We conclude that ergosterol analysis can estimate the fungal biomass within solid substrate such as logs and sawdust.

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Studies on the Utilization of Phenolic Substance by Yeast (효모에 의한 phenol 성 물질의 자화에 관한 연구)

  • 김상달;서정훈
    • Microbiology and Biotechnology Letters
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    • v.6 no.4
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    • pp.155-159
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    • 1978
  • Phenol utilizing yeast No. 558 isolated from soil sewage sediment was able to use substantial amount of phenol as the sole carbon source, and the biomass productivity by this organism was very excellent. This organism could grow well in 1000 ppm of phenol concentration, the maxim-um specific growth rate obtainable at pH 5.0, 3$0^{\circ}C$ was 0.27/hr., and the biomass yield coefficient Y vs. consumed phenol was 3.2. Maximum production rate of biomass was observed at 35$^{\circ}C$, pH 3.5 to pH 4.5, and the addition of the 0.005~0. 01% yeast extract was the most effective. Addition of HgCl$_2$ and phenyl hydrazine, inhibitors of oxide-reductase, in the phenol containing cultural liquid caused this organism no-growth at the concentration of 10$^{-5}$ M, 10$^{-3}$ M respectively. This organism could utilize not only phenol but catechol, resorcinol and benzidine.

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Furfural production from miscanthus and utilization of miscanthus residues (Miscanthus로부터 furfural 생산과 잔여물의 활용에 관한 연구)

  • Kim, Sung Bong;Yoo, Hah-Young;Lee, Sang Jun;Lee, Ja Hyun;Choi, Han Seok;Kim, Seung Wook
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.114.2-114.2
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    • 2011
  • Furfural is a versatile derivative. It can be utilized for a building-block of furfuryl alcohol production and a component of fuels or liquid alkanes. But in bio-process, furfural is a critical compound because it inhibits cell growth and metabolism. Furfural could be converted from xylose and usually produced from biomass in which hemicellulose is abundant. In this study, furfural production from miscanthus was performed and utilization of miscanthus residue was consequently conducted. At first, hydrolysis for investigation of miscanthus composition and furfural production was performed using sulfuric acid. Previously, we optimized dilute acid pretreatment condition for miscanthus pretreatment and the condition was found to be about 15 min of reaction time, 1.5% of acid concentration and about $140^{\circ}C$ of temperature and 60% (about 7 g/L) of xylose was solubilized from miscanthus. Using the xylose, furfural production was conducted as second step. Approximately $160{\sim}200^{\circ}C$ of temperature was accompanied with the hydrolysis for pyrolysis of biomass. When the investigated condition; $180^{\circ}C$ of temperature, 20 min of reaction time and 2% of acid concentration was operated for furfural production, furfural productivity was reached to be 77% of theoretical maximum. After reaction, residue of miscanthus was utilized as feedstock of ethanol fermentation. Residue was well washed using water and saccharified using hydrolysis enzymes. Hydrolysate (glucose) from saccharification was utilized for the carbon source of Saccharomyces cervisiae K35.

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Effects of Culture Conditions on Mycelial Growth and Polysaccharide Production of Tricholoma matsutake in Bioreactor

  • Choe, Min-Gu;Kim, Seong-Su;Hong, Eok-Gi
    • 한국생물공학회:학술대회논문집
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    • 2003.04a
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    • pp.149-152
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    • 2003
  • This experiment was carried out to obtain the optimal liquid culture conditions for the mycelial growth and the polysaccharide production of Tricholoma matsutake. For the mycelial growth and polysaccharide production, the synthetic medium was optimized with containing glucose 40 g/L, yeast extract 30 g/L, $KH_2PO_4$ 1.5 g/L and $MgSO_4.7H_2O$ 1 g/L. The effects of agitation and aeration were investigated for the cell growth and the polysaccharide production in batch culture. The biomass and polysaccharide concentrations were 21.87 g/L at 150 rpm and 8.86 g/L at 300 rpm, respectively. And the biomass concentration and the polysaccharide production were 20.85 g/L at 0.5 vvm and 8.83 g/L at 1.5 vvm, respectively.

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Recycling of Waste Cellulose Biomass - I. Synthesis of Cellulose Acetate and Mehtylcellulose from Waste Cellulose - (폐 cellulose계 biomass 자원의 재활용 - I. 목면 폐기물로부터 cellulose acetate 및 methyl cellulose 합성 -)

  • 이성구;최길영;김수진;정우영;조순채;이종문
    • Textile Coloration and Finishing
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    • v.5 no.3
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    • pp.221-228
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    • 1993
  • Cellulose acetate and methyl cellulose were synthesized from waste cellulose in order to make waste knit on value added highly. Crystal waste cellulose by oxidation using $HIO_4$ and then acetylation was decrystallized. A degee of crystallinity was measured by X-ray diffraction and the structure was identified by FT-IR spetroscopy, respectively. Cellulose acetate was prepared from the reaction of decrystallized cellulose with acetic acid, cone-$H_{2}SO_{4}$ and acetic anhydride. Also, structure identification by FT-IR and a degree of crystallinity by X-ray diffraction were performed. DS of the synthesized cellulose acetate was 2.8 and viscosity average molecular weight was 238,000. Also, methyl cellulose was synthesized by treating cellulose acetate with NaOH and iodomethane. DS of the synthesized methyl cellulose was 3.0. Glucose unit with three hydroxy groups was all substituted by methoxyl groups. It was identified by FT-IR spectroscopy. Also, the thermal properties of the synthesized methyl cellulose were examined by DSC. It shewed two shewed melting peaks at 22$0^{\circ}C$ and 24$0^{\circ}C$ in the 2nd scan. It proved that DS=3.0 of methyl cellulose was a thermotropic liquid crystal.

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Auxin and Cytokinin Affect Biomass and Bioactive Compound Production from Adventitious Roots of Eleutherococcus koreanum (섬오갈피 부정근 배양 시 오옥신과 사이토키닌이 생장과 생리활성물질 생산에 미치는 영향)

  • Lee, Eun-Jung;Kim, Myong-Ki;Paek, Kee-Yoeup
    • Horticultural Science & Technology
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    • v.28 no.4
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    • pp.678-684
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    • 2010
  • In an attempt to improve biomass and bioactive compound production, we cultured adventitious roots of $Eleutherococcus$ $koreanum$ in 250 mL Erlenmeyer flasks using Murashige and Skoog (MS) medium with different concentrations of auxins (IBA, NAA, IAA) and cytokinins (BA, kinetin, TDZ). Root biomass (fresh and dry weight) was enhanced at $5mg{\cdot}L^{-1}$ indole-3-butyric acid (IBA) after 5 weeks of culture. The content of total phenolics and flavonoids was also increased with $5mg{\cdot}L^{-1}$ IBA compared to ${\alpha}$-naphtalene acetic acid (NAA) or indole-3-acetic acid (IAA) treatments. The combination of $5mg{\cdot}L^{-1}$ IBA with $0.1mg{\cdot}L^{-1}$ thidiazuron (TDZ; N-phenyl-N'-1,2,3,-thidiazol-5-ylurea) enhanced root fresh and dry weight (1.4- and 1.6-fold, respectively) as well as the content of total phenolics and flavonoids compared to the relative control (without cytokinin). On the contrary, $N_6$-benzyladenine (BA) and 6-furfurylaminopurine (kinetin) did not significantly affect root biomass and bioactive compound production in adventitious roots of $E.$ $koreanum$. These results suggested that $5mg{\cdot}L^{-1}$ IBA combination with $0.1mg{\cdot}L^{-1}$ TDZ supplementation was most suitable for both biomass and bioactive compound production from adventitious roots of $E.$ $koreanum$.