• Title/Summary/Keyword: yield conditions

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Production of Bacterial Cellulose by Acetobacter xylinum GS11. (Acetobacter xylinum GS11에 의한 미생물 셀룰로오스의 생산)

  • 고정연;신공식;이종수;최우영
    • Microbiology and Biotechnology Letters
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    • v.30 no.1
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    • pp.57-62
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    • 2002
  • Productivity of bacterial cellulose by Acetobacter xylinum GS11 was investigated in the several culture conditions. In various carbon sources, others with the exception of glucose were not found to be effective for cellulose production, and 2% was better in yield than other concentration of glucose. Yeast extract and soytone among several organic nitrogens were effective, but inorganic nitrogen sources tested were not efficient for cellulose production by A. xylinum GS11. The effects of various inorganic salts, amino acids and vitamins were also investigated: $MgSO_4$, phenylalanine and $\alpha$-tocopherol gave the cellulose yield of 1.5, 1.4 and 1.4 fold, respectively, compared with basal medium. In our experiment, cellulose production by A. xylinum GS11 added with 10% coconut milk and 0.5% lignosulfonate in basal medium, was the most efficient among the several material sources employed here, and these were 2.2 and 2.1 fold, respectively.

Comparative studies for the performance of a natural gas steam reforming in a membrane reactor (분리막 반응기를 이용한 천연가스 개질반응의 성능에 관한 비교 분석)

  • Lee, Boreum;Lim, Hankwon
    • Journal of the Korean Institute of Gas
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    • v.20 no.6
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    • pp.95-101
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    • 2016
  • For a natural gas steam reforming, comparative studies of the performance in a conventional packed-bed reactor and a membrane reactor, a new conceptual reactor consisting of a reactor with series of hydrogen separation membranes, have been performed. Based on experimental kinetics reported by Xu and Froment, a process simulation model was developed with Aspen $HYSYS^{(R)}$, a commercial process simulator, and effects of various operating conditions like temperature, $H_2$ permeance, and Ar sweep gas flow rate on the performance in a membrane reactor were investigated in terms of reactant conversion and $H_2$ yield enhancement showing improved $H_2$ yield and methane conversion in a membrane reactor. In addition, a preliminary cost estimation focusing on natural gas consumption to supply heat required for the system was carried out and feasibility of possible cost savings in a membrane reactor was assessed with a cost saving of 10.94% in a membrane reactor.

Physiological and Genetic Mechanisms for Nitrogen-Use Efficiency in Maize

  • Mi, Guohua;Chen, Fanjun;Zhang, Fusuo
    • Journal of Crop Science and Biotechnology
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    • v.10 no.2
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    • pp.57-63
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    • 2007
  • Due to the strong influence of nitrogen(N) on plant productivity, a vast amount of N fertilizers is used to maximize crop yield. Over-use of N fertilizers leads to severe pollution of the environment, especially the aquatic ecosystem, as well as reducing farmer's income. Growing of N-efficient cultivars is an important prerequisite for integrated nutrient management strategies in both low- and high-input agriculture. Taking maize as a sample crop, this paper reviews the response of plants to low N stress, the physiological processes which may control N-use efficiency in low-N input conditions, and the genetic and molecular biological aspects of N-use efficiency. Since the harvest index(HI) of modern cultivars is quite high, further improvement of these cultivars to adapt to low N soils should aim to increase their capacity to accumulate N at low N levels. To achieve this goal, establishment and maintenance of a large root system during the growth period may be essential. To reduce the cost of N and carbon for root growth, a strong response of lateral root growth to nitrate-rich patches may be desired. Furthermore, a large proportion of N accumulated in roots at early growth stages should be remobilized for grain growth in the late filling stage to increase N-utilization efficiency. Some QTLs and genes related to maize yield as well as root traits have been identified. However, their significance in improving maize NUE at low N inputs in the field need to be elucidated.

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Laccase- and Peroxidase-Free Tyrosinase Production by Isolated Microbial Strain

  • Sambasiva Rao, K.R.S.;Tripathy, N.K.;Mahalaxmi, Y.;Prakasham, R.S.
    • Journal of Microbiology and Biotechnology
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    • v.22 no.2
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    • pp.207-214
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    • 2012
  • Laccase- and peroxidase-free tyrosinase has commercial importance in the production of L-3, 4-dihydroxyphenylalanine (L-DOPA), which is mainly used in the treatment of Parkinson's disease. In the present study, isolation of an actinomycetes microbial strain capable of producing only tyrosinase is reported. Among all soil isolates, three individual colonies revealed black color around the colony in the presence of tyrosine. Further screening for laccase and peroxidase activities using syringaldazine denoted that one of the isolates, designated as RSP-T1, is laccase and peroxidase negative and produces only tyrosinase. The microbe was authenticated as Streptomyces antibioticus based on 16S ribotyping. Effective growth of this isolate was noticed with the use of medium (pH 5.5) containing casein acid hydrolysate (10.0 g/l), $K_2HPO_4$ (5.0 g/l), $MgSO_4$ (0.25 g/l), L-tyrosine (1.0 g/l), and agar (15 g/l). The scanning electron micrograph depicted that the microbe is highly branched and filamentous in nature. The enzyme production was positively regulated in the presence of copper sulfate. The impact of different fermentation parameters on tyrosinase production depicted that the maximized enzyme titer values were observed when this isolate was grown at 6.5 pH and at $30^{\circ}C$ temperature under agitated conditions (220 rpm). Among all the studied physiological parameters, agitation played a significant role on tyrosinase production. Upon optimization of the parameters, the yield of tyrosinase was improved more than 100% compared with the initial yield.

Studies on the Production of Polysacrhacides by Agrobacterium radiobacter (Agrobacterium radiobacter에 의(依)한 다당류(多糖類) 생산(生産)에 관(關)한 연구(硏究))

  • Lee, Ke-Ho;Shin, Hyun-Sung
    • Applied Biological Chemistry
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    • v.26 no.2
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    • pp.110-118
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    • 1983
  • A slimy non-spore-forming bacterium strain SAF-C isolated from bean stem and root was motile with flagella and identified to one of Agrobacterium radiobacter. Studies were made on the conditions necessary for maximal production of this acidic succinoglucan polysaccharide by this strain in shaken culture. Much production was observed with yeast extract,$(NH_4)_2\;HPO_4$, distillers' dried solubles(D.D.S.), as nitrogen source in the medium composed of 4% glucose, 0.5% nitrogen source, 0.3% $CaCO_3$. The yield was greatest with yeast extract and decreased in order with the above nitrogen source from 22.9% to 9.6 percent. A polysaccharide was produced in a yield of about 25% in a medium composed of 3% glucose, 0.4% D.D.S., 0.5% $K_2\;HPO_4$, 0.01% $MgSO_4{\cdot}7H_2O$.

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Numerical Behavior Analysis for the Various Multiple Bolted Connections (다양한 다중 볼트 접합부의 거동에 대한 수치해석)

  • Kim, Gwang-Chul
    • Journal of the Korean Wood Science and Technology
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    • v.36 no.3
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    • pp.24-29
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    • 2008
  • Numerical analysis model was used to analyse the behaviors of multiple bolted connections. Axial-bending element was supposed as basic model, and the effects of frame members and steel fasteners were classified for the behavior analysis. In the condition only two bolts were used, the traditional analytical methods, which show somewhat accuracy, have some advantages more than numerical analysis that need many time consuming, However, more many bolts were used in practical field condition. Also, it is impossible to analyse the behaviors of various bolts layouts and arrangements conditions by traditional analytical methods. Therefore, there is only numerical analysis method for the accurate behavioranalysis on the practical bolted connection condition. Therefore, numerical analysis method was applied on the various multiple bolted connections. On the result exactness and the reflection of connection condition, numerical analysis method showed the superiority more than widely used traditional empirical analysis methods as yield model.

Characteristics of A New Flue-cured Tobacco Mutant Line KF 8832-85 (황색종 연초 돌연변이 계통 KF8832-85의 특성)

  • 조수헌
    • Journal of the Korean Society of Tobacco Science
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    • v.17 no.1
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    • pp.27-32
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    • 1995
  • A new flue-cured tobacco mutant line BU 8832-85 was developed at Taegu Experiment Station, Korea Ginseng and Tobacco Research Institute in 1994. KF 8832-85 was resulted from a cross of flue-cured cultivars NC 95$\times$NC 2326, and developed by a pedigree system of breeding ; initial selection was made by plant type and resistance to bacterial wilt(BW) disease(heudomonas solanaceamm) in the F2 generation under the natural field conditions infested with the pathogen. One white flowered plant was occurred by spontaneous mutation in a certain line among the F3 generatioin while the others were pink. Six plants from the seeds by selfing were selected at the field infested with the pathogen among 240 populations with white flowering in the F4, KF 8832-85 was selected based on yield and leaf quality trials among 6 lines in Fs generation. BCF 8832-85 was compared with its Parent for certain agronomic and chemical characteristics at Taegu Experiment Station in 1993 and 1994. The results showed that KF 8832-85 have white flower, the stalk height was approximately that of NC 2326 but averaged about loom taller than NC 95. It produced ground suckers as much as NC 95, and did not breakdown leaf at the same as WC 2326. KF 8832-85 have high resistance to bacterial wilt disease. Yield of KF 8832-85 was 10 and 18% higher then that of NC 2326 and WC 95, respectively. Price per Kg was equal to that of NC 2326. The contents of nicotine and reducing sugar did not differ significantly from NC 95, while total nitrogen was significantly lower than NC 95. Therefore, the new mutant line is genetically stable for agronomic and chemical characteristics and provides a source of bacterial wilt disease resistance for use in breeding resistant flue-cured cultivars. Key words : Mutant line, White flower, Spontaneous mutation.

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Levels of Resistance and Fitness in Glufosinate-ammonium-Resistant Transgenic Rice Plants (Glufosinate-ammonium 저항성 형질전환벼의 저항성 수준과 적응성에 관한 연구)

  • Yun, Young Beom;Kuk, Yong In
    • Weed & Turfgrass Science
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    • v.1 no.4
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    • pp.50-56
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    • 2012
  • The objectives of this research were to quantify resistance levels of transgenic rice expressing the bar gene to glutamine synthetase (GS)-inhibiting, and methionine sulfoximine and photosynthesis-inhibiting herbicide, paraquat, and compare the ammonium accumulation, chilling injury, and yield between transgenic and non-transgenic rice. The transgenic rice lines were 45-96-fold more resistant to glufosinate-ammonium than non-transgenic rice. The transgenic rice lines were also 18-fold more resistant to methionine sulfoximine, but was not resistant to paraquat, which has different target site. Glufosinate-ammonium increased the ammonium accumulation in leaves of non-transgenic rice plants, but had minimal or no effect on leaves of transgenic lines. The transgenic lines except for 258, 411, 607 and 608 were more susceptible during chilling and recovery than non-transgenic rice plants. The yield of transgenic lines 142, 144, 258 and 608 was similar or higher than that of non-transgenic rice in pot conditions.

The Spheroplast Formation and Regeneration of Pseudomonas spp. (Pseudomonas spp.의 원형질체 생성과 재생)

  • 이주실;이영록
    • Korean Journal of Microbiology
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    • v.24 no.1
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    • pp.24-31
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    • 1986
  • The optimal conditions for the formation and the regeneration of Pseudomonas spheroplast were measured. Pseudomonas spp. cells were transformed to spheroplasts from 99.0% to 99.9% by treatment of $100{\mu}g/ml$ lysozyme and 10mM EDTA at room temperature. The optimal pH for the spheroplast formation was pH 8.0. Magnecium chloride, calcium chloride and streptomycin were effective on the stabilization of Pseudomonas spheroplast, while $Mg^+\;and\;Na^+$ ions were effective on the formation of Pseudonomas spheroplast. Rich Regeneration Medium was used for the regeneration of Pseudonomas spheroplast. To improve regeneration frequency, Bovin Serum Albumine and cationic ions were added to the spheroplast dilution beffer and regeneration environment respectively. Treatment of 20mM calcium chloride in ehr Rich Regeneration Medium could improve the yield of regenerants as much as 28-fold. Treatment of 1% Bovin Serum Albumine in the spgeroplast formation and dilution buffer increased the yield of regenerants to 10-fold. Also, the regeneration frequency was improved to 14-fold shen Rich Regeneration Meidum containing 0.5% Gelatin was used for regeneration as well as 1% Bovin Serum Albumine.

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Study for Recovery Silicon and Tempered Glass from Waste PV Modules (태양전지(太陽電池) 폐(廢) 모듈로부터 실리콘 및 강화(彈化)유리 회수(回收)에 관(關)한 연구(硏究))

  • Kang, Suk-Min;Yoo, Sung-Yeol;Lee, Jin-A;Boo, Bong-Hyun;Ryu, Ho-Jin
    • Resources Recycling
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    • v.20 no.2
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    • pp.45-53
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    • 2011
  • We devised a procedure for the recovery of silicon and tempered glass from waste photovoltaic (PV) modules using optimized conditions. The tempered glass was recovered without any damage using organic solvents. The surface material is removed by applying an acid solution on the surface of the PV cell. Through our proposed method, we offer a much more efficient approach for recycling solar cells with a surfactant than the conventional method. This process, we obtained pure silicon with a yield of 90% by chemical treatment with the surfactant at room temperature for 18 min. The silicon yield was characterized using an inductively coupled plasma-atomic emission spectrometer.