• 제목/요약/키워드: Bio-degradation

검색결과 294건 처리시간 0.021초

Thermal-and Bio-degradation of Starch-Polyethylene Films Containing High Molecular Weight Oxidized-Polyethylene

  • Kim, Mee-Ra;Pometto, Anthony-L.
    • Preventive Nutrition and Food Science
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    • 제3권1호
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    • pp.27-35
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    • 1998
  • Starch-polyethylene films containing high molecular weight(NW) oxidized-polyethylene and prooxidant were prepared , and thermal -and bio-degradability of the films were determined. Increased levels of starch resulted in a corresponding reduction in mechanical strength of the films. However, the addition of high MW oxidized-polyethylene did not significantly reduce the percent elongation of the films. Thefilms containing high MW oxidized-polyethylene andproosicant were degreaded faster than those containing no aadditive during the heat treatment. The films lost their measureable mechanical properties when their weight-average MW(Mw) fell below 50,000. Biodegradability of the films was determined by a pure culture assay with either Streptomyces badius 252.S. setonii 75Vi2 or S. viridosporous T7A, and by an extracellulr enzyme assay using S. setonii 75vi2. The results from pure culture assay indicated that biomass accumulation on the film surface inhibited chemical and biological degradation of the films. The extracellular enzyme assay demonstrated decrease of percent elongation and increase of carbonyl index of the films. Therefore, extracellular enzyme assay could be used as a good method to evaluate biodegradability of the films.

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Fate of Bentazon Metabolites in Soils

  • Cha, In-Cheol;Lee, Kyu-Seong;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.936-942
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    • 2012
  • This review was to elucidate the fate of Bentazon(3-isopropyl-1H-2,1,3-benzothiadiazin-4(3H)-one-2,2-dioxide) and its metabolites in soil. Bentazon is rapidly degraded to form polar metabolites which are mostly adsorbed to soil components, such as humin or fulvic acid, as non extractable forms and mineralized into $CO_2$ by light or micro-organisms in both aerobic or nonaerobic condition. The degradation of Bentazon is dependent on the rate of organic matters in soil and the use of land for the tillage. The degradation rate is decreased as the amount of organic matters in soil increases and if the land is under use for tillage. Sorption and mobility of Bentazon depends on soil pH and the content of organic matters in soil. Usually, the sorption of the metabolites of Bentazon is decreased with increase in the mobility and pH. Almost all of Bentazon is degraded within rhizosphere or forms conjugate bonds with soil organic matters before it reaches to the ground water.

Wnt5a attenuates the pathogenic effects of the Wnt/β-catenin pathway in human retinal pigment epithelial cells via down-regulating β-catenin and Snail

  • Kim, Joo-Hyun;Park, Seoyoung;Chung, Hyewon;Oh, Sangtaek
    • BMB Reports
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    • 제48권9호
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    • pp.525-530
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    • 2015
  • Activation of the Wnt/β-catenin pathway plays a pathogenic role in age-related macular degeneration (AMD) and is thus a potential target for the development of therapeutics for this disease. Here, we demonstrated that Wnt5a antagonized β-catenin response transcription (CRT) induced with Wnt3a by promoting β-catenin phosphorylation at Ser33/Ser37/Thr41 and its subsequent degradation in human retinal pigment epithelial (RPE) cells. Wnt5a decreased the levels of vascular endothelial growth factor (VEGF), tumor necrosis factor-α(TNF-α), and nuclear factor-κB (NF-κB), which was up-regulated by Wnt3a. Furthermore, Wnt5a increased E-cadherin expression and decreased cell migration by down-regulating Snail expression, thereby abrogating the Wnt3a-induced epithelial-mesenchymal transition (EMT) in human RPE cells. Our findings suggest that Wnt5a suppresses the pathogenic effects of canonical Wnt signaling in human RPE cells by promoting β-catenin phosphorylation and degradation. Therefore, Wnt5a has significant therapeutic potential for the treatment of AMD. [BMB Reports 2015; 48(9): 525-530]

Degradation of Clavulanic Acid During the Cultivation of Streptomyces clavuligerus; Instability of Clavulanic Acid by Metabolites and Proteins from the Strain

  • Ishida Kenji;Hung Trinh Viet;Lee Hei-Chan;Liou Kwang-Kyoung;Shin Chang-Hun;Yoon Yeo-Joon;Sohng Jae-Kyung
    • Journal of Microbiology and Biotechnology
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    • 제16권4호
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    • pp.590-596
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    • 2006
  • Clavulanic acid (CA) produced by Streptomyces clavuligerus is degraded during the bacterial cultivation. The degradation was examined in three different aspects, including physical, chemical, and enzymatic effects, in order to understand the degradation during the cultivation. The result showed that CA was unstable in the production medium containing ammonium salts and amino acids, owing to ammonium ions and amine groups. In addition, the degradation was not only due to instability of CA by metabolites and proteins, but also enzymes from S. clavuligerus such as $\beta-lactamase$ and penicillin-binding proteins. However, the degradation caused by these enzymes was not highly significant compared with the degradation during the cultivation, owing to irreversible reactions between CA and enzymes.

북한 산림의 시·공간 변화와 황폐화 추동 (Spatio-Temporal Changes and Drivers of Deforestation and Forest Degradation in North Korea)

  • 유재심;김경민
    • 한국환경복원기술학회지
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    • 제18권6호
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    • pp.73-83
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    • 2015
  • The objective of this study is to establish implications for forest restoration planning in North Korea by analyzing spatio-temporal forest changes and detecting bio-physical factors driving forest degraded. We measured the relationship and spatial distribution between shifting cultivation and sparse forest. We also analyzed between degraded forest land and ecological variables by binary logistic regression to find biophysical drivers of forest degradation and deforestation in North Korea. Between the sparse forest and the shifting cultivation, a positive relationship is found (r=0.91) and scattered discontinuously throughout the country (Moran's I = -1, Z score = -13.46 (p=0.000)). The sparse forest showed a negative relationship with the warmest month(bio 9), the coldest month(bio10), and the minimum of soil water contents (swc_min), while the shifting cultivation had a negative relationship with the warmest month(bio 9) and the minimum of soil water contents(swc_min). However, the most critical drivers convert forests into sloping farmland were the three months rainfall in summer(bio8) and the yearly mean of soil water contents. Such results reflect the growth period of crops which overlaps with the rainy season in North Korea and the recent land reclamation of uplands where the soil water contents are maintained with a dense forest. When South Korea aids forest restoration projects in North Korea, in consideration of food shortage due to North Korea's cropland deficiency, terrace farmlands where soil water contents can be maintained should be excluded from the priority restoration area. In addition, an evaluation method for selecting a potential restoration area must be modified and applied based on multiple criteria including altitude and socio-economic factors in the respective regions.

Assessing the Limits of Agricultural Situation for the Food Security in North Korea

  • Rhie, Ja-Hyun;Lee, Kyo-Suk;Seo, Il-Hwan;Min, Se-Won;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제50권4호
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    • pp.275-284
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    • 2017
  • The food situation in North Korea (Democratic People's Republic of Korea, DPRK) has been in difficulty situation because of a shortage of energy, and of raw materials such as fertilizer and agricultural chemicals. The international agricultural aid programs can alleviate some difficulties in the agricultural areas, but the policies and measures in North Korea can not help difficulties in the agriculture due to the institutional obstacles enforced by DPRK. The arable area of DPRK is approximately $20,000km^2$, of which $14,000km^2$ is well for cereal cultivation. Fertilizer supplies in recent years between 700,000 and 750,000 tons annually were less than 50% of the normal requirement. Also, North Korea strongly needed to inject phosphorus fertilizer and lime to increase the fertility. Soil degradation in DPRK was characterized by physical and chemical changes caused by rapid loss of clay particles and organic matter. Intensive ploughing and tilling to grow crops may lead to massive soil degradation and declining yields. Although farmers in the DPRK have faced numerous challenges, not least of which are soil erosion, scarce inputs and extreme weather like drought, flooding and cold spells. Therefore farmers should be encouraged to adopt more environmentally sound cropping practices, to access quality seeds and planting materials and to reduce losses after the harvest.

$UV/TiO_2$ 충진 반응기에서 페놀의 광산화 반응 (Photocatalytic Degradation of Phenol in $UV/TiO_2$ Packed-bed System)

  • 박길순;김종화;이상화
    • 대한환경공학회지
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    • 제27권9호
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    • pp.939-945
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    • 2005
  • 입상형/비드형(직경 = 5 mm) 광촉매가 충진된 고정상 반응기에서 유량별 광산화 반응속도를 고찰한 결과 유량이 400 mL/min 이상에서 페놀의 분해속도가 더 이상 증가하지 않았다. 비드형 광촉매의 경우에는 부식율과 코팅량의 증가에 따른 뚜렷한 광산화 반응속도의 차이가 나타나지 않았다. 광촉매의 종류별 페놀의 분해능을 비교한 결과 Degussa P25가 STS-02(Ishihaha사)와 $TiO_2$(N사)에 비해 높은 광산화 활성을 나타내 주었다. 유체의 전단력에 의한 표면의 마모가 쉽게 일어날 수 있는 입상형 광촉매보다 $TiO_2$가 코팅된 비드형 광촉매를 사용함으로써 광촉매 활성을 오래 동안 유지할 수 있는 광산화 시스템의 개발이 가능하다.

Effect of Operational Parameters on the Products from Catalytic Pyrolysis of Date Seeds, Wheat Straw, and Corn Cob in Fixed Bed Reactor

  • Sultan Mahmood;Hafiz Miqdad Masood;Waqar Ali khan;Khurram Shahzad
    • Korean Chemical Engineering Research
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    • 제61권4호
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    • pp.591-597
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    • 2023
  • Pakistan depends heavily on imports for its fuel requirements. In this experiment, catalytic pyrolysis of a blend of feedstock's consisting of date seed, wheat straw, and corn cob was conducted in a fixed bed reactor to produce oil that can be used as an alternative fuel. The main focus was to emphasize the outcome of important variables on the produced oil. The effects of operating conditions on the yield of bio-oil were studied by changing temperature (350-500 ℃), heating rate (10, 15, 20 ℃/min), and particle size (1, 2, 3 mm). Moreover, ZnO was used as a catalyst in the process. First, the thermal degradation of the feedstock was investigated by TGA and DTG analysis at 10 ℃/min of different particle sizes of 1, 2, and 3mm from a temperature range of 0 to 1000 ℃. The optimum temperature was found to be 450 ℃ for maximum degradation, and the oil yield was indicated to be around 37%. It was deduced from the experiment that the maximum production of bio-oil was 32.21% at a temperature of 450 ℃, a particle size of 1mm, and a heating rate of 15 ℃/min. When using the catalyst under the same operating conditions, the bio-oil production increased to 41.05%. The heating value of the produced oil was 22 MJ/kg compared to low-quality biodiesel oil, which could be used as a fuel.

Poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/Graphene Oxide Nanocomposite Films: Thermomechanical Properties, Oxygen Transmission Rates, and Hydrolytic Degradation

  • You, Eun Jung;Ha, Chang-Sik;Kim, Gue-Hyun;Lee, Won-Ki
    • 한국환경과학회지
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    • 제26권1호
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    • pp.1-10
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    • 2017
  • In this study, poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV)/graphene oxide (GO) nanocomposite films containing various content of GO were prepared using solution casting method. The effect of GO content on Young's modulus and dispersion of GO in PHBV matrix was investigated. Also, the thermomechanical properties, oxygen transmission rates and hydrolytic degradation of PHBV/GO nanocomposite films were studied. The addition of GO into PHBV improves the Young's modulus and decreases thermal expansion coefficient. The improvement can be mainly attributed to good dispersion of GO and interfacial interactions between PHBV and GO. Furthermore, PHBV/GO nanocomposite films show good oxygen barrier properties. PHBV/GO nanocomposites show lower hydrolytic degradation rates with increasing content of GO.

멜라닌 분해능을 지닌 미백용 기능성 화장품원료의 개발 (The Development of Whitening Cosmetic Ingredient Having Activity of Melanin Degradation)

  • 강환구;황선덕;김형식;정종식;이병욱
    • KSBB Journal
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    • 제22권1호
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    • pp.7-15
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    • 2007
  • 진균류 추출물로부터 신규 멜라닌 분해효소의 분리 및 분해능 test는 멜라닌 분해효소의 균사체 배양 상등액으로 분비 생산됨을 분해능 테스트를 통하여 확인하였고, 이 분해 효소에 의한 멜라닌 분해반응은 pH 7에서 가장 높고, 30$^{\circ}C$에서 가장 안정함을 확인하였다. 멜라닌 분해 효소의 characterization은 2D-gel을 이용하여 멜라닌 분해효소 중 한 가지 효소의 pI값이 약 6.5이고 Molecular weight는 약 54-57 kDa임을 알 수 있었고, 정제된 멜라닌 분해 효소의 전체적인 단백질 및 유전자 서열을 분석하여 degenerate primer를 합성하였으며, RT-PCR 법을 이용하여 유전자를 확보하였다. 멜라닌 분해효소 생산을 위한 진균류의 배양방법 확립은 멜라닌 분해효소가 최대 활성을 갖는 배지 조건은 ammonium tartrate 0.4% : glucose 2% 배지에 yeast extract를 0.1%를 첨가한 배지임을 확인하였고, 진군류의 최적 배양온도는 24-26$^{\circ}C$였으며, 이 때 건조 균체 중량으로 약 6 g/L의 균체를 얻을 수 있었다. 또한 진균류 성장의 최적 pH는 약 5.5로서 이 경우 건조균체중량이 약 6.6 g/L였다. 정제공정은 최적화를 통하여 멜라닌 분해효소의 정제 순도 90% 이상의 정제공정을 확립하였다. Scale-up은 5 L fermenter를 이용한 기초 배양공정을 확립하여 500 L fermenter로의 경제성 있는 scale up에 성공하였고, 이 때 건조균체중량 약 14.5 g/L의 진균류를 얻었으며, 배지 중에 분비 생산된 melanin 분해효소의 양이 300 mg/L에 달하였다. 멜라닌 분해효소의 formulation은 멜라닌 분해효소를 효율적으로 피부로 전달시키기 위하여 50-100 nm 크기로 encapsulation을 실시하여 70 nm, 100 nm size의 nano capsule을 얻었다. 본 연구는 tyrosinase 저해제가 갖는 부작용이 없어 생체 친화적 물질에 의한 부작용 감소 효과가 기대되며, 독자적 기술에 의한 고부가 미백용 화장품 원료 확보로 새로운 기능에 의한 신규시장 창출이 가능하여 미백용 기능성 화장품 원료로서 고부가 화장품에 사용되어 수입대체효과 및 기업의 매출증대 효과가 있을 것으로 기대되어진다.