• Title/Summary/Keyword: Molecular Characteristics

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Comparisons of Adsorption-Desorption Characteristics of Major 10 Kinds Components Consisting of Gasoline Vapor (유증기를 구성하는 주요 10종류 성분의 온도에 따른 흡·탈착특성 비교)

  • Lee, Song-Woo;Na, Young-Soo;Lee, Min-Gyu
    • Journal of Environmental Science International
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    • v.23 no.9
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    • pp.1593-1600
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    • 2014
  • Adsorption and desorption characteristics of the representative 10 kinds components consisting of gasoline vapor on activated carbon were investigated at the temperature range of $-30^{\circ}C{\sim}25^{\circ}C$. The breakthrough curves of each vapors obtained by the Thomas model were well described the breakthrough experimental results of this study. The breakthrough times of each vapors were correlated with the molecular weight, density, and vapor pressure. The breakthrough times had greater correlation with boiling point than molecular weight and density. The slope of the breakthrough curve was a proportional relationship with the rate constant (k) of Thomas model expression. The higher the slope of the breakthrough curve, the rate constant was larger. The biggest slope vapor had the smallest adsorption capacity ($q_e$). Adsorption and desorption characteristics of mixed vapor similar to the gasoline vapor were studied at room temperature ($25^{\circ}C$). The mixed vapor consisting of 9 components; group A (pentane, hexene, hexane), group B (benzene, toluene), group C (octane, ethylbenzene, xylene, nonane) was examined. Group A was not nearly adsorbed because of substitution by group C, and the desorption capacity of group A was smaller than group C. The adsorbed substances were confirmed to be Group C.

Temperature Dependence on Elastic Constant of SiC Ceramics (SiC 세라믹스 탄성률의 온도 의존성)

  • Im, Jong-In;Park, Byoung-Woo;Shin, Ho-Yong;Kim, Jong-Ho
    • Journal of the Korean Ceramic Society
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    • v.47 no.6
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    • pp.491-497
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    • 2010
  • In this paper, we employed the classical molecular dynamics simulations using Tersoff's potential to calculate the elastic constants of the silicon carbide (SiC) crystal at high temperature. The elastic constants of the SiC crystal were calculated based on the stress-strain characteristics, which were drawn by the simulation using LAMMPS software. At the same time, the elastic constants of the SiC ceramics were measured at different temperatures by impulse excitation testing (IET) method. Based on the simulated stress-strain results, the SiC crystal showed the elastic deformation characteristics at the low temperature region, while a slight plastic deformation behavior was observed at high strain over $1,000^{\circ}C$ temperature. The elastic constants of the SiC crystal were changed from about 475 GPa to 425 GPa by increasing the temperature from RT to $1,250^{\circ}C$. When compared to the experimental values of the SiC ceramics, the simulation results, which are unable to obtain by experiments, are found to be very useful to predict the stress-strain behaviors and the elastic constant of the ceramics at high temperature.

Distribution and Molecular Characteristics of Vibrio vulnificus Isolated from Seawater Along the Gadeok Island Coast (가덕도 연안 해수에서 Vibrio vulnificus의 분포 및 분리균주의 병원성 유전자 특성)

  • Oh, Hee-Kyung;Jeong, Hee-Jin;Kim, Young-Mog
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.53 no.5
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    • pp.688-693
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    • 2020
  • Vibrio vulnificus is a Gram-negative marine bacterium known to cause septicemia. This study was conducted to investigate the distribution of V. vulnificus along the coast of Gadeok Island in Korea and to determine the molecular characteristics of isolated strains sampled between March and November 2019 from seawater. The strains were mostly detected between July and September, when the average water temperature and average salinity were 22.2-26.2℃ and 14.2-29.9 psu, respectively. V. vulnificus was not detected in seawater below 15℃. In September, the highest population of V. vulnificus was observed at 2,100 MPN (most probable number)/100 mL, attributable to decreased salinity from heavy rains. In addition, the detection rate of V. vulnificus was higher at the sampling station near the Nakdong River. Virulence-related genes were also identified among the isolates, such as vvhA (97.1%), viuB (44.1%), and vcgC (57.4%). In particular, viuB and vcgC were only observed in V. vulnificus isolated from June to September, when the detection rate was high and water temperature was above 20℃, suggesting the role of seasonal characteristics.

Characterization of Choristoneura fumiferana Genes of the Sixth Subunit of the Origin Recognition Complex: CfORC6

  • Wang, Xaiochun;Carstens, Eric B.;Feng, Qili
    • BMB Reports
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    • v.39 no.6
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    • pp.782-787
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    • 2006
  • A new protein was cloned and identified as the sixth subunit of Choristoneura fumiferana origin recognition complex (CfORC6). The newly identified 43 kDa protein CfORC6 is much bigger than DmORC6 (25.7 kDa) and HsORC6 (28.1 kDa), though it's 23.85% identical to DmORC6 and 23.81% identical to HsORC6. Although the molecular weight of CfORC6 is close to ScORc6 (50 kDa), CfORC6 is only 14.03% identical to ScORC6. By alignment, it was found that the N-terminal of CfORC6 has about 30% identities with other ORC6s, but about 100aa of C-terminal of CfORC6 has no identity with other ORC6s. Like ScORC6, CfORC6 has many potential phosphorylation sites, (S/T)PXK. Like DmORC6, CfORC6 has leucine-rich region in the relevant site. Northern Blot showed that CfORC6 mRNA is about 2,000nt. Southern Blot confirmed that there is one copy of CfORC6 gene in spruce budworm genome. Western blot showed that infection of Cf124T cells with CfMNPV didn't affect the expression levels of CfORC6, at least up to 26 hr post infection.

Studies on the Characteristics of Anti-Zona Antibody III. Examination of Biochemical Characteristics of Porcine Zone Pellucidae and Anti-Zona Antibody (항투명대 항체의 특성에 관한 연구 III. 돼지투명대와 항투명대 항체의 생화학적 특성 검토)

  • 김은영;박세필;신경순;정길생;김종배
    • Korean Journal of Animal Reproduction
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    • v.14 no.2
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    • pp.125-131
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    • 1990
  • These experiments were carried out to investigate of the molecular characteristics of porcine zona pellucidae and to examine the reactivity of anti-zona antibody by SDS-PAGE, Immunoblotting and Immunoprecipitation. The results obtained in these experiments were summarized as follows : 1. The result obtained by SDS-PAGE of porcine zona pellucidae indicated that it composed of several units with molecular weight ranging 55,000-110,000. 2. In order to see the reactivity of antibodies to zona pellucidas, immunoblotting was applied. The results indicated that polyclonal antibodies to porcine and mouse zona reacted with porcine zona. While monoclonal antibody to porcine did not react with the procine zona enough to show a clear band on a gel. 3. Labelling of porcine zonae with 125I was performed using the Iodogen method, the radioactivity and the percent incorporation of 125I into porcine zonae were approximately 26,000 cpm/10${mu}ell$ and 16, respectively. 4. Measurements of radioactivity and O.D value for Immunoprecipitates produced by reaction of 125I-porcine zona with anti-zona antisera were confirmed that existence of reactivity of monoclonal antibody to porcine zona although its reactivity was lower than that of polyclonal antibodies, and reconfirmed that cross-reactivity of polyclonal antibody of mouse zona with porcine zona.

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Kabuki syndrome: clinical and molecular characteristics

  • Cheon, Chong-Kun;Ko, Jung Min
    • Clinical and Experimental Pediatrics
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    • v.58 no.9
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    • pp.317-324
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    • 2015
  • Kabuki syndrome (KS) is a rare syndrome characterized by multiple congenital anomalies and mental retardation. Other characteristics include a peculiar facial gestalt, short stature, skeletal and visceral abnormalities, cardiac anomalies, and immunological defects. Whole exome sequencing has uncovered the genetic basis of KS. Prior to 2013, there was no molecular genetic information about KS in Korean patients. More recently, direct Sanger sequencing and exome sequencing revealed KMT2D variants in 11 Korean patients and a KDM6A variant in one Korean patient. The high detection rate of KMT2D and KDM6A mutations (92.3%) is expected owing to the strict criteria used to establish a clinical diagnosis. Increased awareness and understanding of KS among clinicians is important for diagnosis and management of KS and for primary care of KS patients. Because mutation detection rates rely on the accuracy of the clinical diagnosis and the inclusion or exclusion of atypical cases, recognition of KS will facilitate the identification of novel mutations. A brief review of KS is provided, highlighting the clinical and genetic characteristics of patients with KS.

Influence of Molecular structure of Lubricants on the UV-absorption Characteristics of the Base Wax-pigment Composites (윤활제의 분자구조가 Base Wax-pigment Composite의 UV-absorption특성에 미치는 영향에 관한 연구)

  • Kim, Sung-Hwan
    • Journal of the Korean Applied Science and Technology
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    • v.2 no.2
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    • pp.47-53
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    • 1985
  • Correlation among the wax-pigment composites which is base vehicles for the crepas was investigated in terms of fadeness. The base wax synthesized and pigments are compounded with petroleum lubricant and exposed under carbon arc individually. The yellowing phenomenon was appeared on the reference papers coated with the spindle oil which was then exposed. The papers were again extracted with distilled water and pH of them were ranged between 6.2-6.5. Color difference from Adam-Nickerson equation, ${\vartriangle}E$ of base wax is 0.15 and that of spindle oil are varied from 0.66 to 15.62. Since the main components of the petroleum lubricant are aromatic hydrocarbons which have absorptions characteric of UV ranging from 240 to 280 nm, fadeness characteristics of the composites are largely depend upon the change of molecular structure of spindle oil by absorbing UV. Thus the spindle oil having the following physical properties has the better resistance of fadness and is recommended to use in compounding the base wax-pigment composites: ${\cdot}$ main component: paraffinic hydrocarbon ${\cdot}$ pour point: below - $15^{\circ}C$ ${\cdot}$ UV absorption characteristics: ${\lambda}max.$ : 268-290nm ${\cdot}$ absorbancy: below 0.1(0.03ml of sample/50ml of $CHCl_3$)

Characteristics of Hybrid Protective Materials with CNT Sheet According to Binder Type

  • Jihyun Kwon;Euisang Yoo
    • Elastomers and Composites
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    • v.57 no.4
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    • pp.197-204
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    • 2022
  • Recently, the demand has increased for protective clothing materials capable of shielding the wearer from bullets, fragment bullets, knives, and swords. It is therefore necessary to develop light and soft protective clothing materials with excellent wearability and mobility. To this end, research is being conducted on hybrid design methods for various highly functional materials, such as carbon nanotube (CNT) sheets, which are well known for their low weight and excellent strength. In this study, a hybrid protective material using CNT sheets was developed and its performance was evaluated. The material design incorporated a bonding method that used a binder for interlayer combination between the CNT sheets. Four types of binders were selected according to their characteristics and impregnated within CNT sheets, followed by further combination with aramid fabric to produce the hybrid protective material. After applying the binder, the tensile strength increased significantly, especially with the phenoxy binder, which has rigid characteristics. However, as the molecular weight of the phenoxy binder increased, the adhesive force and strength decreased. On the other hand, when a 25% lightweight-design and high-molecular-weight phenoxy binder were applied, the backface signature (BFS) decreased by 6.2 mm. When the CNT sheet was placed in the middle of the aramid fabric, the BFS was the lowest. In a stab resistance test, the penetration depth was the largest when the CNT sheet was in the middle layer. As the binder was applied, the stab resistance improvement against the P1 blade was most effective.

Multi-Omics Approaches to Improve Meat Quality and Taste Characteristics

  • Young-Hwa Hwang;Eun-Yeong Lee;Hyen-Tae Lim;Seon-Tea Joo
    • Food Science of Animal Resources
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    • v.43 no.6
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    • pp.1067-1086
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    • 2023
  • With rapid advances in meat science in recent decades, changes in meat quality during the pre-slaughter phase of muscle growth and the post-slaughter process from muscle to meat have been investigated. Commonly used techniques have evolved from early physicochemical indicators such as meat color, tenderness, water holding capacity, flavor, and pH to various omic tools such as genomics, transcriptomics, proteomics, and metabolomics to explore fundamental molecular mechanisms and screen biomarkers related to meat quality and taste characteristics. This review highlights the application of omics and integrated multi-omics in meat quality and taste characteristics studies. It also discusses challenges and future perspectives of multi-omics technology to improve meat quality and taste. Consequently, multi-omics techniques can elucidate the molecular mechanisms responsible for changes of meat quality at transcriptome, proteome, and metabolome levels. In addition, the application of multi-omics technology has great potential for exploring and identifying biomarkers for meat quality and quality control that can make it easier to optimize production processes in the meat industry.

High-Yield Production of Xylitol from Xylose by a Xylitol Dehydrogenase Defective Mutant of Pichia stipitis

  • Kim, Min-Soo;Chung, Yun-Seung;Seo, Jin-Ho;Jo, Do-Hyun;Park, Yun-Hee;Ryu, Yeon-Woo
    • Journal of Microbiology and Biotechnology
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    • v.11 no.4
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    • pp.564-569
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    • 2001
  • This study was carried out in order to investigate the characteristics of xylitol fermentation by a xylitol dehydrogenase defective mutant PXM-4 of P stipitis CBS 5776 and to determime optimum conditions for the high yield ofxylitol production from xylose. Gluconic acid was selected as a co substrate for the xylitol fermentation, since gluconic acid neither blocked xylose transport nor repressed xylose reductase expression. An increase of gluconic acid concentration reduced the rates of xylitol production and cell growth by decreasing medium pH, and the optimal concentration of gluconic acid was determined to be 20 gll with approximately 100% xylitol conversion yield. A fed-batch cell culture resulted in a 44.8 g/l xylitol concentration with 100% yield, based on the amount of xylose consumed.

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