• Title/Summary/Keyword: 질소정제

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Production and properties of exoinulase from Streptomyces sp. S34 (Streptomyces sp. S34의 exoinulase 생산 및 성질)

  • Ha, Young-Ju;Kim, Su-Il
    • Applied Biological Chemistry
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    • v.35 no.5
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    • pp.375-381
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    • 1992
  • An exoinulase-producing bacterium was isolated from soil, and identified as Streptomyces sp. The maximum inulase production was achieved when inulin as carbon source and soybean meal as organic nitrogen source were included in the culture. The exoinulase was considered to be a constitutive enzyme produced not only by inulin but also by soluble starch or glucose. The purified enzyme on DEAE-cellulose and Sephadex G-200 column showed the maximal activity at $pH\;5.5{\sim}6.0$ and $50^{\circ}C$, but lost 65% inulase activity at $50^{\circ}C$ after 1 hour incubation. This exoinulase was activated by $Mn^{+2}$, wherease more that 80% inactivation was observed with $Ag^+$, $Hg^{+2}$ and $Fe^{+3}$. The enzyme was possibly a metalloenzyme in that EDTA and 8-hydroxyquinoline inhibited the enzyme. Km values for inulin (16.51 mM) and sucrose (14.62 mM) were in very close range suggesting mostly equal affinity toward the subatrates. However, the maximum velocity for inulin was 10 times greater than for sucrose.

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Characteristics of Composting of Cow Manure With Kimchi Factory Waste and Effects on Growth of Lettuce by Its Application (김치공장 부산물 혼합처리에 따른 우분의 퇴비화특성 및 시비효과)

  • Kim, Young-Sun;Cho, Sung-Hyun;Lee, Tae-Soon;Jeong, Je-Yong;An, Ji-Ye;Song, Hye-Yeon;Chung, Young-Bae
    • Journal of the Korea Organic Resources Recycling Association
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    • v.25 no.3
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    • pp.35-43
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    • 2017
  • This study was conducted to evaluate effects of Kimchi factory waste (KFW) as bulking agent on physicochemical properties of cow manure (CM) composting and of its application on lettuce growth. Treatments were designed as follows; CM compost [65 % CM + 35 % sawdust (SD); control], KFW 5 % (65 % CM + 30 % SD + 5 % KFW), KFW 10 % (65 % CM + 25 % SD + 10 % KFW) and KFW 15 % (65 % CM + 20 % SD + 15 % KFW). After composting for 25 days, temperature of KFW treatments was lower than that of control. As compared with control, water content of KFW 15 % treatment was low about $5^{\circ}C$, and content of organic matter (O.M.) and nitrogen (N) was higher. pH and O.M./N ratio of KFW treatments or control were unaffected. In comparison with germination index (G.I.), G.I.s of KFW treatments were more than 70 on 25 days and G.I. of control on 35 days. As applied with KFW composts in lettuce, dry weight of KFW 10 % and KFW 15 % were increased by 84 % and 67 %, respectively, than that of control. These results indicated that Kimchi factory waste was possible to use as the compost law materials in livestock manure composting and to replace some sawdust as bulking agent.

Plant Growth Responses and Characteristics of Composting of Poultry Manure with Peatmoss and Cocopeat as Bulking Agent (수분조절제로서 피트모스 및 코코피트를 이용한 계분 발효 특성 및 시비효과)

  • Kim, Young-Sun;Lee, Tae-Soon;Cho, Sung-Hyun;Jeong, Je-Yong;An, Ji-Ye;Lee, Jong-Jin;Han, Ki-Pil;Hong, Joo-Hwa
    • Journal of the Korea Organic Resources Recycling Association
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    • v.25 no.1
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    • pp.79-86
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    • 2017
  • This study was conducted to evaluate plant growth responses and characteristics of composting poultry manure with peatmoss and cocopeat as bulking agent. Treatments were designed as follows; only poultry manure (OP), sawdust+poultry manure (SP), peatmoss+poultry manure (PP), and cocopeat+poultry manure (CP). Period maintained $50^{\circ}C$ over in compost pile of PP and CP was 35 days that longer about 10 days than that of OP or SP, and water content of PP and CP after composting 45 days 50% that was higher about 10%. While poultry manure composted, EC values of PP and CP were higher than that of SP, and pH and OM/N ratio not significant. After finished composting poultry, physicochemical properties of dried all composts were matched on Korean fertilizer guideline. As compared with OP or SP, applications of PP and CP were improved growth and productivity of lettuce, kale and mustard leaf.

Analysis of dioxin-like PCBs in Soil samples (토양 중 dioxin-like PCBs의 분석)

  • Kim, Kyeo Keun;Shin, Sun Kyoung;Kim, Tae Seung;Chang, JunYoung;Kim, Jeong-Gyu
    • Analytical Science and Technology
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    • v.15 no.5
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    • pp.466-474
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    • 2002
  • The analytical method of 14 kinds of coplanar - PCBs was established and applied the soil sample. The three kinds of extraction solvents (toluene, acetone: n-hexane, dichloromethane) were selected to apply the soil sample. The silica gel, florisil and alumina column cleanup also performed to compare the elution recovery. The average recovery of selected solvents in soil A, B and C was surveyed the 84.25%, 56.09% and 44.69% for toluene, 52.56%, 81.42% and 58.53% for acetone : n - hexane and 55.94%, 71.33% and 61.05% for dichloromethane. The average recovery is represented 49.99% for silica gel (n - hexane 100 mL), 69.65% for florisil (6% ether/n - hexane 100 mL), and 65.23% for alumina (2% DCM : n - hexane 100 mL, 50% DCM: n-hexane 150 mL). In silica gel (n - hexane) and florisil (6% ether : n - hexane) cleanup, the 14 kinds of coplanar PCBs eluted until 40 mL. In the silica gel and florisil columns cleanup, the amounts of elution solvent can be reduced from these results, but the researcher has to confirm the elution amounts before performing the experiments. In alumina cleanup process, the result was obtained to the 100 mL of elution solvents (2% DCM: n-hexane 100 mL and 50% DCM: n-hexane 40 mL), therefore the change of elution solvent is necessary to develop the simple procedure.

Composting of Livestock Manure Blending Humic Acid Powder and Influences on Growth of Lettuce by Its Application (부식산분말 처리에 따른 가축분의 퇴비화 특성 및 시비효과)

  • Lee, Tae-Soon;Cho, Sung-Hyun;Jeong, Je-Yong;An, Ji-Ye;Lee, Jong-Jin;Han, Ki-Pil;Hong, Joo-Hwa;Kim, Young-Sun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.25 no.2
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    • pp.5-14
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    • 2017
  • Humic acid was used soil amendment or functional fertilizer in Korean agriculture, and its cation exchangeable capacity was high enough to increase soil buffering from plant toxicant. This study was conducted to evaluate effects of humic acid powder (HA) on composting of livestock manure (LM) and of its application on growth of lettuce. Treatments were designed as follows; livestock manure compost (LM+sawdust+bark+castor meal; Control), control+0.1% HA (0.1% HA), control+0.5% HA (0.5% HA), control+1.0% HA (1.0% HA), control+3.0% HA (3.0% HA), and control+5.0% HA (5.0% HA). The changes of temperature, water content, organic matter content, total nitrogen and ratio of organic matter and nitrogen in HA treatments were similar to those of control. Although pH of 3.0% HA and 5.0% HA blending with HA and LM was lower than those of others, it unaffected by HA blending during composting. Humic acid content of HA treatments was increased by 1.7~4.4 folds than that of control. As compared with odor index, 3.0% HA and 5% HA were decreased than control for composting time. Application of 3.0% HA increased the dry weight of lettuce by about 7% than that of control.

Production and Characterization of Raw Starch Hydrolyzing Enzyme from Bacteria (세균에 의한 생전분 분해효소의 생성 및 특성)

  • Park, In-Shik;Nam, In;Kho, Sun-Ok;Kim, Gi-Nahm;Suh, Kyung-Soon
    • Microbiology and Biotechnology Letters
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    • v.18 no.3
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    • pp.244-250
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    • 1990
  • A bacterium capable of hydrotyzing raw starch was isolated from soil, which was identified as a strain of Bacillue. The effects of culture conditions and medium compositions on the enzyme production were investigated. Among tested carbon sources, soluble starch and wheat starch were most effective for the production of the enzyme, and the level of concentration for the optimal enzyme production was 0.5%. For nitrogen sources, polypeptone was best for the enzyme production, with the level of 0.5%. The enzyme was maximally produced by cultivating the organism at medium of initial pH 6.5, and temperature of $35^{\circ}C$. The enzyme was partially purified by Sepharose CL-6B gel filtration and DEAESephacel ion-exchange chromatography. The optimal pH and temperature for the enzyme reaction were 6.5 and $70^{\circ}C$, respectively. The enzyme most stable at pH 8.0, and temperature up to $60^{\circ}C$. In kinetic studies, the k, values for corn, wheat, rice and potato starch were 1.7, 1.4,2.5 and 1.090, respectively.

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Effects of Dietary Supplementation of a New Probiotic CS61 Culture on Performance in Broiler Chickens (새로운 생균제 CS61 배양액의 사료 내 급여가 육계의 생산성에 미치는 영향)

  • Kim, Sung-Hwan;Lee, In-Chul;Baek, Hyung-Seon;Kang, Seong-Soo;Kim, Hyoung-Chin;Yoo, Jin-Cheol;Kim, Jong-Choon
    • Journal of Life Science
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    • v.22 no.3
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    • pp.340-346
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    • 2012
  • Bacterial resistance to antibiotics and residues of antibiotics in poultry products have encouraged the use of probiotics, prebiotic substrates, and synbiotic combinations of prebiotics and probiotics as alternative approaches to the use of antibiotics in poultry. The present study was carried out to evaluate the effect of a new probiotic CS61 culture on growth performance, feed conversion efficiency, and safety in broiler chickens, and to evaluate its value as an alternative for antibiotics used as a feed additive. Two dosages of CS61 culture (0.1% and 1%) were fed to chickens for 28 days. The results showed that terminal body weight and daily weight gain in the treatment groups increased in a dose-dependent manner when compared with the control group. Dietary supplementation with CS61 culture also improved feed conversion rate compared to the control group. There were no treatment-related toxic effects in terms of clinical findings, mortality, necropsy findings, hematology, or serum biochemistry parameters in any group tested. The nitric oxide assay showed that CS61 peptide has a dose-dependent inhibitory effect on lipopolysaccharide-induced nitric oxide production in RAW 264.7 cells. The results of this experiment indicated that dietary supplementation of CS61 culture may improve growth performance and feed conversion efficiency in chickens through its anti-inflammatory effect.

Volatile Flavor Components in Cooked Black Rice (취반된 흑미의 휘발성 향기 성분)

  • Song, Seon-Joo;Lee, You-Seok;Rhee, Chong-Ouk
    • Korean Journal of Food Science and Technology
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    • v.32 no.5
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    • pp.1015-1021
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    • 2000
  • Volatile flavor components (VFCs) in cooked black rices (Suwon-415 and Chindo) were studied. The major reactions during cooking, which result in aroma volatiles, are the Maillard reaction between amino acids and reducing sugars, and thermal degradation of lipid. Black rices washed with water were soaked in 1.5 folds water and heated at $110^{\circ}C$ in oil bath for 30min. VFCs in cooked black rices were extracted for three hours by SDE and were analyzed by GC and GC/MS. A total of 91, 82 volatiles were identified in Suwon-415 and Chindo black rice, respectively. Suwon-415 was composed of 26 alcohols, 10 aldehydes, 5 acids, 11 esters, 15 ketones, 9 hydrocarbons, 3 furans, 3 nitrogen containing compounds and 9 sulfur containing compounds. Chindo was composed of 28 alcohols, 9 aldehydes, 4 acids, 12 esters, 14 ketones, 5 hydrocarbons, 3 furans, 3 nitrogen containing compounds and 4 sulfur containing compounds.

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Optimization of Media Composition on the Production of Melanin Bleaching Enzyme from Peniophora sp. JS17 (Peniophora sp. JS17 유래 멜라닌 탈색 효소 생산을 위한 배지 조성의 최적화)

  • Son, Min-Jeong;Kim, Yeon-Hee;Nam, Soo-Wan;Jeon, Sung-Jong
    • Microbiology and Biotechnology Letters
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    • v.47 no.2
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    • pp.250-258
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    • 2019
  • Peniphora sp. JS17, isolated from forest old tree, produced extracellular enzymes that decolorized human hair melanin. The JS17 strain had laccase and manganese peroxidase activity while it did not has lignin peroxidase activity. Batch culture indicated that the melanin decolorization activity of JS17 strain originated from laccase. The culture conditions to maximize the production of melanin bleaching enzymes from Peniophora sp. JS17 mycelia were investigated. Among the tested media for the laccase production, minimal medium (2% glucose, 0.2% malt extract, 0.1% $KH_2PO_4$, 0.4% $MgSO_4{\cdot}7H_2O$) showed the highest activity of laccase. Then, to optimize the culture condition for the laccase activity, the influence of various carbon and nitrogen sources was investigated in minimal medium. Among various carbon and nitrogen sources, 2% xylose and 0.4% tryptone showed the highest production of laccase, respectively. The enzyme was purified using $(NH_4)_2SO_4$ precipitation and Hitrap Q sepharose column, and the purified enzyme showed two isoenzymatic bands with molecular masses of about 70 kDa by SDS-PAGE. The melanin decolorization activity was 77% and 55% within 48 h in the presence of 1-hydroxybenzotriazole (HBT) and syringaldehyde, respectively, whereas only about 9% melanin decolorized in case of no mediator.

Catalytic Wet Gasification of Biomass Mixed Fuels (바이오메스 혼합연료의 습윤 촉매 가스화 연구)

  • Kang, Sung-Kyu;Lee, Seung-Jae;Ryu, In-Soo;Hur, Sung
    • Journal of the Korea Organic Resources Recycling Association
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    • v.17 no.2
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    • pp.59-72
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    • 2009
  • In order to utilize sewage sludge as a heat source of energy, it goes without saying that the fuel should be clean and pose no threat to the environment. As a consequent, it should not contain even minute quantities of heavy metals / impurities. The SOCA (Sludge-Oil-Coal- Agglomerates) fuel can meet all these requirements. SOCA being a solid fuel can be gasified for the production of clean energy. Wet catalytic gasification is the most appropriate process for SOCA containing nearly 60% water. It is important to note that the SOCA thus obtained inherits ca. 40~50% of sulfur from the coal used. It can poison the catalyst during catalytic gasification process. Consequently, it becomes important to choose a proper catalyst for the gasification. Calcium was found to be ideal choice as a catalyst for the gasification of SOCA. The optimal gasification was performed at $850^{\circ}C$ with water vapor. The role of fuel-N is of utmost importance in the gasification of SOCA. The gasification should be controlled to reduce the production of HCN to a minimum and enhance its conversion to $N_2$ and/or $NH_3$.