• Title/Summary/Keyword: biorefinery

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Easy and Simple Synthesis of CdSe Nanocrystals: The Effect of Reaction Temperature for The Determination of Nanoparticle Size (간편한 CdSe 나노 입자의 합성: 입자크기를 결정하는 반응온도의 효과)

  • Kim, Sungjin
    • Journal of Integrative Natural Science
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    • v.2 no.3
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    • pp.219-223
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    • 2009
  • Easy and simple synthesis of CdSe nanocrystals was achieved through sol-gel process. CdSe nanocrystals were synthesized from the reaction of cadmium oxide and selenium in the prescence of trioctylphosphine oxide, tributylphosphine, octadecene, octadecylamine, and stearic acid. The effect of reaction temperature for the determination of size of CdSe nanocrystals was investigated after the addition of selenium. The reaction temperature for the growth of CdSe nanocrystals was increased by every $20^{\circ}C$ from 170 to 190, 210, 230, 250, 270, and $290^{\circ}C$. When the reaction temperature was higher, the absorption wavelength in the absorption spectrum was increased which indicated that the size of CdSe nanocrystals was increased. The emission wavelength in the photoluminescence spectrum was increased from 438 to 489, 542, 591, 643, 692, and 745 nm, as the size of CdSe nanocrystals was increased. The control of the reaction temperature illustrated that the color tuning of emission wavelength were successfully obtained.

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Preparation and Optical Characterization of Photonic Crystal Smart Dust Encoded with Reflection Resonance (반사공명으로 인코딩된 광결정 스마트 먼지의 제조방법 및 광학적 특징)

  • Lee, Boyeon;Hwang, Minwoo;Cho, Hyun;Kim, Hee-Cheol;Han, Jungmin
    • Journal of Integrative Natural Science
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    • v.3 no.2
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    • pp.84-88
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    • 2010
  • Photonic crystals containing rugate structures from a single crystalline silicon wafer was obtained by using a sinoidal alternating current during an electrochemical etch procedure. Photonic crystals were isolated from the silicon substrate by applying an electropolishing current and were then made into particles by using an ultrasonic fracture in an ethanol solution to give a smart dust. Smart dusts exhibited their unique nanostructures and optical characteristics. They exhibited sharp photonic band gaps in the optical reflectivity spectrum. The size of smart dust obtained was in the range of 10-20 nm.

Detection of Nitroaromatic Compounds Based on Fluorescent Silafluorene Chemosensors

  • Kim, Bumseok
    • Journal of Integrative Natural Science
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    • v.3 no.1
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    • pp.19-23
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    • 2010
  • A simple and rapid method is described for detecting nitroaromatic explosives in air or seawater with the use of photoluminescent organosilicon compounds. The synthesis, spectroscopic characterization, and fluorescence quenching efficiency of silafluorenes are reported. Silafluorenes were synthesized from the reduction of dilithiobiphenyl with dichlorosilanes. Two silafluorenes were used for the detection of nitroaromatic compounds. Detection of nitroaromatic molecules, such as 2,4-dinitrotoluene (DNT), 2,4,6-trinitrotoluene (TNT), and picric acid (PA), has been explored. A linear Stern-Volmer relationship was observed for the first three analytes. Fluorescence spectra of silafluorenes obtained in either toluene solutions or thin films displayed no shift in the maximum of the emission wavelength. The photoluminescence quenching occurs by a static mechanism.

Current Aspects and Future Prospects on Bioenergy R&D (바이오에너지 기술의 현황과 전망)

  • Lee, Jin-Seok;Park, Tae-Hyeon
    • New & Renewable Energy
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    • v.2 no.1 s.5
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    • pp.14-20
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    • 2006
  • 본고에서는 고유가에 대한 대응 효과가 높아 주목을 받고 있는 바이오에너지 기술의 개발 현황 및 전망에 대해 기술하였다. 바이오에너지는 열 또는 전기를 생산하는 여타의 신재생에너지원과는 달리 에너지의 장기 저장이 가능한 연료의 형태로 생산 가능하다는 장점이 있다. 바이오에너지 생산에 사용되는 원료인 바이오매스에는 유기성 폐기물, 농임산 부산물과 에너지 작물 등이 있으며 이들로부터 에너지를 생산하는데 적용되는 기술도 열화학적 기술과 생물학적 전환 기술이 있다. 적용된 기술에 따라 생산된 바이오에너지는 열, 전기뿐만 아니라 수송용 대체연료 등의 형태로 활용된다. 이러한 바이오에너지기술 중 일부는 상용화 되어 실제 보급 중에 있으며 다른 기술들은 보다 미래 기술로 개발 중에 있다. 국내외에서 상용되었거나 개발 중인 주요 바이오에너지 기술의 R&D 현황 및 전망에 대해 요약하였다.

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Development of Synthetic Route for Perchlorocyclopentasilane and Its Optical Characterization (Perchlorocyclopentasilnane에 대한 합성방법의 개발과 그의 광학적 특성 조사)

  • Han, Joungmin
    • Journal of Integrative Natural Science
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    • v.2 no.4
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    • pp.289-292
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    • 2009
  • Perchlorosilanes are useful precursors for the synthesis of hydrosilanes for the fabrication of electronic devices such as silicon thin-film transistors and silicon nanoparticles. For this solution process, requirements of precursors applicable to solution process are relatively low volatile and soluble in common organic solvents. In this work, the decaphenylcyclopentasilane has been obtained from the reaction of the lithium wire and dichlorodiphenylsilane. The reaction of decaphenylcyclopentasilane with lewis acid catalyst, HCl/$AlCl_3$, gives the perchlorocyclopentasilane. Decaphenylcyclopentasilane exhibits an unusual optical property. Its optical property was characterized by UV-vis and fluorescence spectroscopy. Absorption wavelength maxima for the decaphenylcyclopentasilane was 272 nm. Decaphenylcyclopentasilane displayed an emission band at 741 nm with excitation wavelength of 272 nm.

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A Research Trend on Utilization of the Byproducts(Lignin) from Bioethanol Production Process with Lignocellulosic Biomass: A Literature Review (목질바이오매스 에너지 부산물(리그닌)이용에 관한 연구 동향)

  • Kim, Yeong-Suk
    • Journal of Forest and Environmental Science
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    • v.27 no.3
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    • pp.183-194
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    • 2011
  • This study reviewed on the research trend of sources and utilization of the byproducts(Lignin) from bioethanol production process with lignocellulosic biomass such as wood, agri-processing by-products(corn fiber, sugarcane bagasse etc.) and energy crops(switch grass, poplar, Miscanthus etc.). During biochemical conversion process, only Cellulose and hemicellulosic fractions are converted into fermentable sugar, but lignin which represents the third largest fraction of lignocellulosic biomass is not convertible into fermentable sugars. It is therefore extremely important to recover and convert biomass-derived Lignin into high-value products to maintain economic competitiveness of cellulosic ethanol processes. It was introduced that lignin types and characteristics were different from various isolation methods and biomass sources. Also utilization and potentiality for market of those were discussed.

Microbial Catalysts for the Production of Thermo-resistant Bioplastics (내열성 바이오플라스틱 생산을 위한 미생물 촉매 개발)

  • Oh, Young Hoon;Lee, Seung Hwan;Park, Si Jae
    • Prospectives of Industrial Chemistry
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    • v.17 no.3
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    • pp.27-37
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    • 2014
  • 온실가스축적으로 인한 지구온난화를 비롯한 기후변화 및 고갈되어가는 석유를 비롯한 화석원료에 대한 문제를 해결하기 위해 재생가능한 자원으로부터 바이오기반 케미칼 및 고분자 등의 화학제품을 생산하는 바이오화학 공정이 많은 관심을 받고 있다. 본 기고문에서는 바이오화학공정에 핵심적인 촉매로 사용되고 있는 재조합 미생물 및 효소의 최근 개발동향을 내열성 엔지니어링 플라스틱인 바이오나일론의 생산을 위하여 개발되고 있는 바이오촉매를 중심으로 살펴보고자 한다.

Development of Metabolic Engineering Strategies for Microbial Platform to Produce Bioplastics (바이오플라스틱 생산 미생물 플랫폼 제작을 위한 대사공학 전략 개발)

  • Park, Si Jae;David, Yokimiko;Baylon, Mary Grace;Hong, Soon Ho;Oh, Young Hoon;Yang, Jung Eun;Choi, So Young;Lee, Seung Hwan;Lee, Sang Yup
    • Applied Chemistry for Engineering
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    • v.25 no.2
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    • pp.134-141
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    • 2014
  • As the concerns about environmental problems, climate change and limited fossil resources increase, bio-based production of chemicals and polymers from renewable resources gains much attention as one of the promising solutions to deal with these problems. To solve these problems, much effort has been devoted to the development of sustainable process using renewable resources. Recently, many chemicals and polymers have been synthesized by biorefinery process and these bio-based chemicals and plastics have been suggested as strong candidates to substitute petroleum-based products. In this review, we discuss current advances on the development of metabolically engineered microorganisms for the efficient production of bio-based chemicals and polymers.

Molecular Ecological Characterization of Wastewater Bacterial Communities in Response to Algal Growth (조류성장에 따른 하수 박테리아 군집 변화에 관한 분자생태학적 연구)

  • Lee, Ju-Youn;Lee, Jang-Ho;Park, Joon-Hong
    • Journal of Korean Society of Environmental Engineers
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    • v.33 no.11
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    • pp.847-854
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    • 2011
  • To deal with issues from global climate changes, renewable bioenergy has become important. Algae have been regarded as a good resource for biorefinery and bioenergy, and also have potential capability to remove nutrient and non-decompositional pollutants for wastewater advanced treatment. Although algal-bacterial ecological interaction would be a crucially important factor in using algae for wastewater advanced treatment and resource recovery from wastewater, very little is known about ecological interaction between algae and bacteria in a real wastewater environment. In this study, under a real municipal wastewater condition, we characterized wastewater pollutant treatability and bacterial communities in response to growth of Ankistrodesmus gracilis SAG278-2, which can grow in wastewater and has a high lipid contents. The growth of algal population using the wastewater was inhibited by increase in wastewater bacteria while bacterial survival and cellular decay rate were not influenced by the algal growth. Removals of recalcitrant organic matters and total nitrogen were improved in the presence of algal growth. According to T-RFLP and statistical analysis, algal growth affected time-course changes in bacterial community structures. The following 16S rRNA gene amplicon, cloning results showed that the algal growth changes in bacterial community structure, and that bacterial populations belonging to Sediminibacterium, Sphingobacterium, Mucilaginibacter genera were identified as cooperative with the algal growth in the wastewater.

Fungal Fermentation of Lignocellulosic Biomass for Itaconic and Fumaric Acid Production

  • Jimenez-Quero, A.;Pollet, E.;Zhao, M.;Marchioni, E.;Averous, L.;Phalip, V.
    • Journal of Microbiology and Biotechnology
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    • v.27 no.1
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    • pp.1-8
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    • 2017
  • The production of high-value chemicals from natural resources as an alternative for petroleum-based products is currently expanding in parallel with biorefinery. The use of lignocellulosic biomass as raw material is promising to achieve economic and environmental sustainability. Filamentous fungi, particularly Aspergillus species, are already used industrially to produce organic acid as well as many enzymes. The production of lignocellulose-degrading enzymes opens the possibility for direct fungal fermentation towards organic acids such as itaconic acid (IA) and fumaric acid (FA). These acids have wide-range applications and potentially addressable markets as platform chemicals. However, current technologies for the production of these compounds are mostly based on submerged fermentation. This work showed the capacity of two Aspergillus species (A. terreus and A. oryzae) to yield both acids by solid-state fermentation and simultaneous saccharification and fermentation. FA was optimally produced at by A. oryzae in simultaneous saccharification and fermentation (0.54 mg/g wheat bran). The yield of 0.11 mg IA/g biomass by A. oryzae is the highest reported in the literature for simultaneous solid-state fermentation without sugar supplements.