• 제목/요약/키워드: HMX

검색결과 57건 처리시간 0.025초

Candida albicans Can Utilize Siderophore during Candidastasis Caused by Apotransferrin

  • Lee Jue-Hee;Han Yong-Moon
    • Archives of Pharmacal Research
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    • 제29권3호
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    • pp.249-255
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    • 2006
  • Ability of iron acquisition of pathogenic microorganisms functions as a virulence factor. Candida albicans, a fungal pathogen that requires iron for growth, is susceptible to growth retardation by high-affinity iron binding proteins such as transferrin. Recently, we reported that C. albicans could utilize the heme as a part of heme-containing proteins dissociated by heme oxygenase, CaHMX1. In search of another pathway that C. albicans can use to bypass the growth regulation produced by iron limitation, this present study examined utilization of non-candidal siderophores such as Desferal and rhodotorulic acid (RA) for acquisition of inorganic iron by the fungus. C. albicans secreting no siderophores was cultured in iron-free (pretreated with apotransferrin for 24 h) (culture medium). Once growth of the yeast reached stasis from iron starvation, a siderophore was added to the culture media. Results showed that cultures containing apotransferrin within a dialysis membrane recovered growth to the level of untreated controls, whereas C. albicans yeast cells in direct contact with soluble iron-free (apo) transferrin recovered growth only partially. When static growth from iron limitation was reached, the addition of siderophore-apotransferrin complex to culture medium also permitted the yeast to recover growth from apotransferrin growth regulation. All the data show that C. albicans can utilize the non-candidal siderophores for iron acquisition under transferrin regulation as can pathogenic bacteria.

트리나이트로이미다졸 치환체들의 화약성능 및 감도 예측 분석 (Predictive Analysis on Explosive Performance and Sensitivity of 1-Substituted Trinitroimidazoles)

  • 전영진;김현수;김진석;조수경
    • 한국군사과학기술학회지
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    • 제20권4호
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    • pp.543-550
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    • 2017
  • Various chemical properties including density and heat of formation of 1-substitued trinitroimidazoles (TNIs) were estimated by using density functional theory (DFT). Using chemical properties estimated by DFT, explosive performance and sensitivity of 1-substitued TNIs were analyzed by following the ADD Method-1 procedure. The results were displayed on two-dimensional performance-sensitivity plot, and were compared with those of explosive molecules commonly used in many military systems. Different 1-substituents of TNI made that both explosive performance and impact sensitivity were changed significantly. Methyl substituted TNI became moderately insensitive and slightly less powerful. Amino, fluoro, picryl, and difluoroamino substituted TNIs were highly powerful like RDX and HMX, but greatly sensitive. Nitro substituted TNI was predicted to be extremely sensitive to be handled as a secondary explosive.

고에너지물질 비군사화 시설의 후처리 공정 모사 및 열교환기 합성망을 이용한 에너지 최적화 (Simulation and Process Optimization of High Energetic Materials Demilitarization Facility Gas Treatment Process)

  • 황래문;김현수;오민;문일
    • 한국군사과학기술학회지
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    • 제24권1호
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    • pp.79-83
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    • 2021
  • The expiration date of high energetic materials(HEM), such as HMX, RDX, TNT, is important. If the expiration date is violated, the expected specification of HEM would not be satisfied which may cause a different conclusion in an urgent situation. As a result, this HEM should maintain fresh conditions which cause the accumulation of waste HEM. If HEM is landfilled during demilitarization, the impact on living organizations is serious. Additionally, landfilling HEM has a possibility of explosion. In this research, the process flow diagram of the demilitarization gas treatment process was simulated while satisfying the law of the environment in Korea. After validation of simulation, it was optimized thermodynamically using Heat Exchanger Network Synthesis(HENs). This study is expected to enhance the energy efficiency of the original facility by suggesting developed designs. This research was supported by Agency of Defense Development NE32 Korea. Thanks to Agency of Defense Development, Korea

Pulsed-UV 시스템을 이용한 염소계 유기화합물 및 화약류 제거에 관한 연구 (A Study on Remediation of Chlorinated Hydrocarbons and Explosives using Pulsed-UV System)

  • 이한욱;한종훈;윤여민;이종열;허남국
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권1호
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    • pp.78-84
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    • 2013
  • This study was conducted in order to evaluate the removal process for long-term contamination sources including chlorinated hydrocarbons (TCE and PCE) and explosive compounds (TNT, RDX, and HMX) in underground water using a pulsed-UV system. Crystallized cells containing the contaminants were placed 10, 20, and 40 cm away from a lamp that emits pulsed-UV rays in order to examine how the removal efficiency is influenced by the distance between the source of the light and the compounds. Chlorinated hydrocarbons were completely removed in 30 minutes with a distance of 10 cm, while PCE was completely removed even with a distance of 20 cm. In the case of explosive compounds, removal efficiencies slightly varied depending on the compounds. The majority of the compounds were perfectly removed with a contact time of 10 minutes. In particular, for RDX, the results showed that complete removal was obtained within one minute, regardless of the distance from the UV source. The amount of light energy is in inverse proportion to the distance, and thus the energy reaching the compounds severely diminishes as the distance increases. Therefore, the removal efficiency decreased with increasing distance in the system.

Degradation of energetic compounds using an integrated zero-valent iron-Fenton process

  • Oh Seok-Young;Kim Byung J.;Chiu Pei C.;Cha Daniel K.
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.493-500
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    • 2003
  • The effect of reductive treatment with elemental iron on the extent of mineralization by Fenton oxidation was studied for the explosive 2,4,6-trinitrotoluene (TNT) and hexahydro-l,3,5-trinitro-l,3,5-triazine (RDX) using a completely-stirred tank reactor (CSTR). The results support the hypothesis that TNT and RDX are reduced with elemental iron to products that are oxidized more rapidly and completely by Fenton's reagent. Iron pretreatment enhanced the extent of TOC removal by approximately $20\%\;and\;60\%$ for TNT and RDX, respectively. Complete TOC removal was achieved for TNT and RDX solutions with iron pretreatment under optimal conditions. On the other hand, without iron pretreatment, complete mineralization of TNT and RDX solutions were not achieved even with much higher $H_2O_2$ and $Fe^{2+}$ concentrations. The bench-scale iron treatment-Fenton oxidation integrated system showed more than $95\%$ TOC removal for TNT and RDX solutions under optimal conditions. The proposed zero-valent iron-Fenton process was evaluated with pink water from the Iowa Army ammunition plant. Results from batch and column experiments show that TNT, RDX, and octahydro-l,3,5,7-tetranitro-l,3,5,7-tetrazocine (HMX) were completely removed from the pink water and that triaminotoluene (TAT) and ${NH_4}^+$ were recovered as products in reduction with zero-valent iron. By using an integrated system, $83.3\pm4.2\%$ of TOC was removed in a CSTR with 10 mM of $Fe^{2+}$ and 50 mM of $H_2O_2$. These results suggest that the reduction products of TNT and RDX are more rapidly and completely mineralized by Fenton oxidation and that a sequential iron treatment-Fenton oxidation process may be a viable technology for pink water treatment.

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Introduction of a novel swabbing material of a wiper and establishment of an optimal method for the collection of organic explosive residues

  • Sung, Tae-myung;Lee, Jong Hyup;Cho, Ju-ik
    • 분석과학
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    • 제30권6호
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    • pp.319-328
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    • 2017
  • The identification of explosive residues on specimens obtained from an explosion event is a crucial factor for assessing the cause of the explosion. In order to detect the components of explosives, the explosive residues deposited on surfaces are commonly extracted using swabbing materials pre-wetted with an organic solvent. The residues are then analyzed with analytical instruments such as LC/MS and CE/MS. Most conventionally used swabbing media such as cotton swabs or cotton tip swabs seem unsuitable for extracting explosive residues from the surface of a large area of clothes because the swabbing materials tend to be damaged easily, and because only a relatively small amount of explosives is collected. To overcome these problems, we have introduced a novel wiper ($215{\times}210mm$, single layer, Yuhan-Kimberly, Republic of Korea) as a swabbing material to recover representative organic explosives, namely, TNT, RDX, tetryl, HMX, PETN, and NG, from a large area of clothes. Different sides of the wiper, which was folded in half five times, was used to swab the surface of a clothing. We compared this novel wiper with a cotton swab and a cotton tip swab in terms of the recovery efficiency for the aforementioned organic explosives by pre-wetting with methanol, acetone, and acetonitrile, respectively. We identified that this novel wiper collected a significantly higher amount of organic explosive residues than a cotton swab or a cotton tip swab when using methanol as an extracting solvent.

경기도 북부지역 군용 사격장 토양에 존재하는 화약물질 분포 및 이동 특성 조사 (Distribution and Migration Characteristics of Explosive Compounds in Soil at Military Shooting Ranges in Gyeonggi Province)

  • 배범한;박지은
    • 한국지반환경공학회 논문집
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    • 제15권6호
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    • pp.17-29
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    • 2014
  • 경기도 ${\bigcirc}{\bigcirc}$지역 군 사격장에서 환경으로 유출되는 화약물질 현장저감시설의 설계 자료 확보를 위해 토양오염조사를 실시하였다. 설계에 필요한 자료는 (i) 주 오염 화약물질 종류 파악, (ii) 배출/이동 경로, (iii) 토양 입경별 화약물질 농도조사 및 침강특성이다. 현장 조사 및 분석결과, TNT와 RDX가 사격장 토양에서의 주 오염물질이지만, 군 훈련 종류와 사격장 지형에 따라 오염도는 변화하였다. 화약물질은 표토이외의 심토와 인근 개울에서도 검출되어, 피탄지에서 하천으로의 유출이 있음을 확인하였다. 피탄지에 화약물질 농도가 높은 hot spot이 다수 존재하였으나, 전반적으로 오염농도가 20 mg/kg을 넘지는 않았다. 피탄지 토양 내 점토 함량은 대조군 12 %에 비해 현저히 낮은 5 % 미만이며, 이는 사격으로 인해 식피가 제거되어 강우 시 토사의 표면유출이 증가하였기 때문이라 판단된다. 토양 입경별 화약물질 분포 분석 결과, 토양 입경 0.075 mm 미만의 세립토에는 화약물질 총량의 약 10 % 이하만이 존재하였다. 침강관 실험결과, 유출수 내 액상으로 유출되는 화약물질량이 고상에 있는 화약물질량보다 많았다. 그러므로 사격장에서 표면 유출되는 강수 내 입자상 물질을 간단한 침전지로 처리하고, 다음으로 정화식물을 식재한 인공습지로 액상 내 화약물질을 처리하는 방안이 자립적이며 지속적으로 유지 가능한 녹색 정화방법이 될 것이다.