• Title/Summary/Keyword: $CO\_{peak}$ production

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Analysis of Tropospheric Carbon Monoxide in the Northeast Asia from MOPITT

  • Lee, Sang-Hee;Choi, Gi-Hyuk;Lim, Hyo-Suk;Lee, Joo-Hee
    • Korean Journal of Remote Sensing
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    • v.19 no.3
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    • pp.217-221
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    • 2003
  • The Measurement of Pollution in the Troposphere (MOPITT) instrument is an eight-channel gas correlation radiometer that launched on the Earth Observing System (EOS) Terra spacecraft in 1999. Its main objectives are to measure carbon monoxide (CO) and methane (CH4) concentrations in the troposphere. This study analyzes tropospheric carbon monoxide distributions using MOPITT data and compare with ozone distributions in Northeast Asia. In general, seasonal CO variations are characterized by a peak in spring and decrease in summer. Also, this study revealed that the seasonal cycles of CO are maximum in spring and minimum in summer with average concentrations ranging from 118ppbv to 170ppbv. The monthly average of CO shows a similar profile to those of O3. This fact clearly indicates that the high concentration of CO in spring is caused by two possible causes: the photochemical CO production in the troposphere, or the transport of the CO in the northeast Asia. The CO and $O_3$ seasonal cycles in the Northeast Asia are influenced extensively by the seasonal exchange of the different types of air mass due to the Asian monsoon. The continental air masses contain high concentrations of $O_3$ and CO due to higher continental background concentrations and sometimes due to the contribution of regional pollution. In summer the transport pattern is reversed. The Pacific marine air masses prevail over Korea, so that the marine air masses bring low concentrations of CO and $O_3$, which tend to give the apparent minimum in summer.

Effect of Histamine on the production of Interleukin-1 from Macrophage-like Cell Line (Macrophage-like 세포로 부터 interleukin-1의 생성에 미치는 Histamine의 영향)

  • 오찬호;최동성
    • KSBB Journal
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    • v.5 no.2
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    • pp.113-118
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    • 1990
  • This experiment was carried out to investigate the immuno-regulatory effects of histamine on IL-1 synthesis and Ca2+ uptake in P388Dl macrophage-like cell line. The addition of histamine (10-8-10-3 M) increased IL-1 production in P388D1, cells, in a dose dependent manner, the treatment of EGTA (10-7-10-4M) and Co2+ ion (10-5-10-4M) decreased macrophage-derived IL-1 activity, and the pretreatment of histamine at the peak of 10-4M significantly enhanced Ca2+ uptake to P388Dl Cells. These results suggested that exogenous histamine was effective on IL-1 production from macrophage and the intracellular Ca2+ uptake play a important role in histamine-stimulated IL-1 synthesis.

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Microbial Enrichment and Community Analysis for Bioelectrochemical Acetate Production from Carbon Dioxide (이산화탄소로부터 생물전기화학적 아세트산 생산을 위한 미생물 농화배양 및 군집 분석)

  • Kim, Junhyung;Kim, Young-Eun;Park, Myeonghwa;Song, Young Eun;Seol, Eunhee;Kim, Jung Rae;Oh, You-Kwan
    • New & Renewable Energy
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    • v.16 no.1
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    • pp.58-67
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    • 2020
  • Microbial electrosynthesis has recently been considered a potentially sustainable biotechnology for converting carbon dioxide (CO2) into valuable biochemicals. In this study, bioelectrochemical acetate production from CO2 was studied in an H-type two-chambered reactor system with an anaerobic microbial consortium. Metal-rich mud flat was used as the inoculum and incubated electrochemically for 90 days under a cathode potential of -1.1 V (vs. Ag/AgCl). Four consecutive batch cultivations resulted in a high acetate concentration and productivity of 93 mmol/L and 7.35 mmol/L/day, respectively. The maximal coulombic efficiency (rate of recovered acetate from supplied electrons) was estimated to be 64%. Cyclic voltammetry showed a characteristic reduction peak at -0.2~-0.4 V, implying reductive acetate generation on the cathode electrode. Furthermore, several electroactive acetate-producing microorganisms were identified based on denaturing- gradient-gel-electrophoresis (DGGE) and 16S rRNA sequence analyses. These results suggest that the mud flat can be used effectively as a microbial source for bioelectrochemical CO2 conversion.

Effects of Additive and Preheat on the Partially Premixed $CH_4-Air$ Counter Flow Flames Considering Non-gray Gas Radiation

  • Park Won-Hee;Chang Hee-Chul;Kim Tae-Kuk
    • Journal of Mechanical Science and Technology
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    • v.20 no.2
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    • pp.242-250
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    • 2006
  • Detailed structures of the counterflow flames formed for different inlet fluid temperatures and different amount of additives are studied numerically. The detailed chemical reactions are modeled by using the CHEMKIN-II code. The discrete ordinates method and the narrow band based WSGGM with a gray gas regrouping technique (WSGGM-RG) are applied for modeling the radiative transfer through non-homogeneous and non-isothermal combustion gas mixtures generated by the counterflow flames. The results compared with those obtained by using the SNB model show that the WSGGM-RG is very successful in modeling the counterflow flames with non-gray gas mixture. The numerical results also show that the addition of $CO_2\;or\;H_2O$ to the oxidant lowers the peak temperature and the NO concentration in flame. But preheat of fuel or oxidant raises the flame temperature and the NO production rates. $O_2$ enrichment also causes to raise the temperature distribution and the NO production in flame. And it is found that the $O_2$ enrichment and the fuel preheat were the major parameters in affecting the flame width.

The results of cardiopulmonary exercise test in healthy Korean children and adolescents: single center study

  • Lee, Jun-Sook;Jang, So-Ick;Kim, Seong-Ho;Lee, Sang-Yun;Baek, Jae-Suk;Shim, Woo-Sup
    • Clinical and Experimental Pediatrics
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    • v.56 no.6
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    • pp.242-246
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    • 2013
  • Purpose: The cardiopulmonary exercise test (CPET) is an important clinical tool for evaluating exercise capacity and is frequently used to evaluate chronic conditions including congenital heart disease. However, data on the normal CPET values for Korean children and adolescents are lacking. The aim of this study was to provide reference data for CPET variables in children and adolescents. Methods: From August 2006 to April 2009, 76 healthy children and adolescents underwent the CPET performed using the modified Bruce protocol. Here, we performed a medical record review to obtain data regarding patient' demographics, medical history, and clinical status. Results: The peak oxygen uptake ($VO_{2Peak}$) and metabolic equivalent ($MET_{Max}$) were higher in boys than girls. The respiratory minute volume $(V_E)/CO_2$ production ($VCO_2$) slope did not significantly differ between boys and girls. The cardiopulmonary exercise test data did not significantly differ between the boys and girls in younger age group (age, 10 to 14 years). However, in older age group (age, 15 to 19 years), the boys had higher $VO_{2Peak}$ and $MET_{Max}$ values and lower $V_E/VCO_2$ values than the girls. Conclusion: This study provides reference data for CPET variables in case of children and adolescents and will make it easier to use the CPET for clinical decision-making.

Enhancement of Dissolution Properties of Ketoprofen from Ground Mixtures with Chitin or Chitosan

  • Koh, Ik-Bae;Shin, Sang-Chul;Lee, Yong-Bok
    • Journal of Pharmaceutical Investigation
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    • v.16 no.1
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    • pp.36-41
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    • 1986
  • The ground mixtures of ketoprofen with chitin or chitosan were prepared by grinding in a ball mill to increase the dissolution rate. The ground mixture showed a faster and more enhanced dissolution rate than the physical mixture or intact ketoprofen. The X-ray diffraction peaks indicated the production of the amorphous form of ketoprofen in the ground mixture. An interaction, in the ground mixture, such as association between the functional groups of ketoprofen and chitin or chitosan might occur in the molecular level. The endothermic peak due to the fusion of ketoprofen disappeared in the ground mixture indicating the different thermal property. The co-grinding technique with chitin or chitosan provided a promising way enhancing the dissolution rate of practically insoluble drug.

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BIOLOGICAL ACTIVITIES OF L-THEANINE (SUNTHEANINETM), AN AMINO ACID OF GREEN TEA, IN HUMANS

  • Ogasawara Yutaka;Okubo Tsutomu;Ueda Tomoko;Ozeki Makoto;Jueja Lekh R;Yokogoshi Hidehiko;Matsumoto Seiichi
    • Proceedings of the Korean Society of Food Science and Nutrition Conference
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    • 2001.12a
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    • pp.38-47
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    • 2001
  • L-theanine is a unique amino acid, found almost solely in tea plants. It is the main component responsible for the exotic taste of green tea. In our studies of L-theanine, we have found a variety of biological activities including relaxation and the alleviation of PMS. In general, animals generate very weak electric pulses on the surface of the brain, called brain waves. Brain waves are classified into four types, namely $\alpha$, $\beta$, $\delta$ and $\theta$-waves, based on their frequency. Brain waves correlate with individual mental conditions. For example, generation of $\alpha$-waves is considered an index of relaxation. In human volunteers, $\alpha$-waves were generated on the occipital and parietal regions of the brain surface within 40 minutes after the oral administration of 50 or 200 mg Suntheanine$^{TM}$ without causing drowsiness. Premenstrual Syndrome (PMS) is a symptom unique to women which appears in the luteal phase from the ovulation period through the first day of menstruation. It possesses characteristics of having a peak just prior to menstruation and disappearing 1 - 2 days following the start of menstruation. Symptoms of PMS are generally categorized as mental, physical and social symptoms. When comparing the reported Symptoms of PMS by the methods of MDQ score, the Suntheanine$^{TM}$ group was found to have a lower incidence of PMS symptoms, including physical, mental and social symptoms. Overall, a significant alleviation of PMS symptoms by the administration of 200 mg Suntheanine$^{TM}$ was observed. With the successful industrial production of L-theanine, we are now able to supply Suntheanine$^{TM}$, offering a tremendous opportunity for designing functional foods targeting relaxation and the alleviation of PMS.

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Growth and Production of Pseudoblennius cottoides in an Eelgrass (Zostera marina) Bed of Dongdae Bay, Korea (동대만 잘피밭에 서식하는 가시망둑(Pseudoblennius cottoides)의 성장과 생산량)

  • Kim, Ha-Won;Huh, Sung-Hoi;Kwak, Seok-Nam;Lee, In-Cheol
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.20 no.5
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    • pp.461-467
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    • 2014
  • The growth and production of Pseudoblennius cottoides (1.80~10.01 cm TL) were investigated in an eelgrass bed of Dongdae Bay, Korea throughout 2006. A total 702 P. cottoides were collected with a small beam trawl. Growth in fish total length was expressed as: $TL=0.0539d^{0.9105}$. The relationships between total length body weight was estimated as $W=0.0079TL^3.1103$. The densities, biomass, daily, annual production, and P/B ratio were $0.06{\pm}0.062/m^2$, $0.10{\pm}0.144g/m^2$, $0.0005{\pm}0.0006g\;AFDW/m^2/day$, $0.1833g\;AFDW/m^2/year$, and 1.813, respectively. Monthly production of P. cottoides were greatly peak in May, July and September (0.0029, 0.0031 and $0.0019g\;AFDW/m^2/day$) when the biomass was high, and the lowest value in December (0.00004g AFDW/m^2/day) when the biomass was low. Monthly change in production of P. cottoides was positively correlated with biomass and temperature.

The Production and Spatial Heterogeneity of Litterfall in the Mixed Broadleaved-Korean Pine Forest of Xiaoxing'an Mountains, China

  • Jin, Guangze;Zhao, Fengxia;Liu, Liang;Kim, Ji Hong
    • Journal of Korean Society of Forest Science
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    • v.97 no.2
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    • pp.165-170
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    • 2008
  • Litterfall has been recognized an important part of the forest ecosystem production, playing a major pathway in energy flow and nutrient cycling through the ecosystem. This study was carried out to examine the quantity and components, temporal variation, and spatial heterogeneity of the litterfall in the mixed broadleaved-Korean pine forest. The data were collected from the 9ha permanent experimental plot, of which on the center area, i.e. $150m{\times}150m$, the total number of 319 circular litterfall traps with the size of $0.5m^2$ were established to collect falling litterfall. The results showed that the annual amount of litterfall was totalized 3,033.7 kg/ha, occupying broad-leaves of 39.3%, conifer-leaves of 29.5%, others of 18.5%, branches of 10.4%, and seeds of 2.3%. The peak point of the litterfall production was made at the end of September, proportionating 32.2% of total amount. The analysis of semivariogram revealed the existence of high spatial heterogeneity, calculated the scale of spatial heterogeneity ranged from 11.6 m to 29.1 m. The result of proportion (C/[Co+C]) showed that spatial heterogeneity of autocorrelation in total spatial heterogeneity were from 97.0% to 100%. The relatively heavy branches and others had significant differences in litterfall production between the areas of canopy gap and closed canopy in the 95% probability level, but the other components did not show statistical differences.

Biogeochemical Cycles during the mid-Cretaceous Oceanic Anoxic Event 2 (백악기 중기 해양 무산소 사건 2 동안의 생지화학적 순환)

  • Joo, Young Ji
    • Journal of the Korean earth science society
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    • v.43 no.5
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    • pp.569-578
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    • 2022
  • Oceanic Anoxic Event 2 (OAE2) represents a period of mid-Cretaceous when black shale was deposited worldwide. This short period of perturbations in the global biogeochemical cycles spans the Cenomanian-Turonian boundary, marking the peak of the Cretaceous greenhouse, which is characterized by elevated atmospheric pCO2, sealevel highstand, and expansion of oxygen minimum zone. Since the pioneering work in the 1970s, numerous studies have investigated the cause and consequences of the event based on geochemical and isotope proxies, and it is now widely accepted that the enhanced primary production and volcanism during the Cenomanian-Turonian boundary interval were the key environmental factors that triggered OAE2. This study briefly reviews previous OAE2 studies of the carbon, sulfur, and trace metal cycles for mechanistic understanding of the biogeochemical processes during the event.