• Title/Summary/Keyword: Baengnyeong-do (Island)

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Occurrence of Exotic Weeds in Several Islands in Korea (우리나라 주요 도서지역의 외래잡초 발생현황)

  • Kim, Chang-Suk;Lee, In-Yong;Oh, Yeong-Ju;Oh, Se-Mun;Kim, Suk-Chul;Park, Jae-Eup
    • Korean Journal of Weed Science
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    • v.30 no.2
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    • pp.59-67
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    • 2010
  • The distribution of exotic weeds in 4 island area such as Baengnyeong-do, Heuksan-do, Chuja-do, and Geomun-do in Korea was investigated. Baengnyeong-do, Heuksan-do, Chuja-do, and Geomun-do have different weed flora, 41 species included 13 families, 32 species included 11 families, 23 species included 9 families and 30 species included 12 families were observed in the 4 islands, respectively. 18 families 70 species were occurred in 4 island. Most troublesome exotic weeds were Ambrosia artemisiifolia var. elatior, Solanum carolinense, Cuscuta pentagona. Occurrence frequency of Conyza canadensis, Erigeron annuus, Dactylis glomerata, Bromus catharticus and Lolium multiflorum were the highest in each island, respectively. Also, result of divided life cycle, annual weeds were 28 species occupied 40% in total, biennial weeds were 21 species (30%) and perennial weeds were 21 species (30%).

Mosquito Species Composition and Plasmodium vivax Infection Rates on Baengnyeong-do (Island), Republic of Korea

  • Foley, Desmond H.;Klein, Terry A.;Lee, In-Yong;Kim, Myung-Soon;Wilkerson, Richard C.;Harrison, Genelle;Rueda, Leopoldo M.;Kim, Heung-Chul
    • Parasites, Hosts and Diseases
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    • v.49 no.3
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    • pp.313-316
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    • 2011
  • Vivax malaria is a significant military and civilian health threat in the north of the Republic of Korea (ROK). The island of Baengnyeong-do is the westernmost point of the ROK and is located close to the southwestern coast of the Democratic People's Republic of Korea (DPRK). Mosquitoes were collected using a black light trap on Baengnyeong-do, and Anopheles spp. were assayed by PCR, to identify the species, and screened for sporozoites of Plasmodium vivax. Of a subsample of 257 mosquitoes, Anopheles lesteri was the most frequently collected (49.8%), followed by Anopheles sinensis (22.6%), Anopheles pullus (18.7%), Anopheles kleini (7.8%), and Anopheles belenrae (1.2%). The overall sporozoite rate was 3.1%, with the highest rates observed in An. kleini (15.0%), An. sinensis (5.2%), and An. lesteri (1.6%). No sporozoite positive An. pullus or An. belenrae were observed. The results extend our knowledge of the distribution and potential role in malaria transmission of An. kleini, An. lesteri, and An. sinensis, for an area previously considered to be at a low risk for contracting vivax malaria.

Chemical Characteristics of PM1 using Aerosol Mass Spectrometer at Baengnyeong Island and Seoul Metropolitan Area (백령도 및 서울 대기오염집중측정소 에어로졸 질량 분석기 자료를 이용한 대기 중 에어로졸 화학적 특성 연구)

  • Park, Taehyun;Ban, Jihee;Kang, Seokwon;Ghim, Young Sung;Shin, Hye-Jung;Park, Jong Sung;Park, Seung Myung;Moon, Kwang Joo;Lim, Yong-Jae;Lee, Min-Do;Lee, Sang-Bo;Kim, Jeongsoo;Kim, Soon Tae;Bae, Chang Han;Lee, Yonghwan;Lee, Taehyoung
    • Journal of Korean Society for Atmospheric Environment
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    • v.34 no.3
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    • pp.430-446
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    • 2018
  • To improve understanding of the sources and chemical properties of particulate pollutants on the Korean Peninsula, An Aerodyne High Resolution Time of Flight Aerosol Mass Spectrometer (HR-ToF-AMS) measured non-refractory fine particle ($NR-PM_1$) from 2013 to 2015 at Baengnyeong Island and Seoul metropolitan area (SMA), Korea. The chemical composition of $NR-PM_1$ in Baengnyeong island was dominated by organics and sulfate in the range of 36~38% for 3 years, and the organics were the dominant species in the range of 44~55% of $NR-PM_1$ in Seoul metropolitan area. The sulfate was found to be more than 85% of the anthropogenic origin in the both areas of Baengnyeong and SMA. Ratio of gas to particle partition of sulfate and nitrate were observed in both areas as more than 0.6 and 0.8, respectively, representing potential for formation of additional particulate sulfate and nitrate. The high-resolution spectra of organic aerosol (OA) were separated by three factors which were Primary OA(POA), Semi-Volatility Oxygenated Organic Aerosol (SV-OOA), and Low-Volatility OOA(LV-OOA) using positive matrix factorization (PMF) analysis. The fraction of oxygenated OA (SOA, ${\fallingdotseq}OOA$=SV-OOA+LV-OOA) was bigger than the fraction of POA in $NR-PM_1$. The POA fraction of OA in Seoul is higher than it of Baengnyeong Island, because Seoul has a relatively large number of primary pollutants, such as gasoline or diesel vehicle, factories, energy facilities. Potential source contribution function (PSCF) analysis revealed that transport from eastern China, an industrial area with high emissions, was associated with high particulate sulfate and organic concentrations at the Baengnyeong and SMA sites. PSCF also presents that the ship emissions on the Yellow Sea was associated with high particulate sulfate concentrations at the measurement sites.

A Study on Chemical Characteristics of Aerosol Composition at West Inflow Regions in the Korean Peninsula II. Characteristics of Inorganic Aerosol Acidity and Organic Aerosol Oxidation (한반도 서부유입권역에서 대기 중 에어로졸 성분의 화학적 특성 연구 II. 입자의 산성도 및 산화 특성)

  • Choi, Jin-Soo;Kim, Jeong-Ho;Lee, Tae-Hyoung;Choi, Yong-Joo;Park, Tae-Hyun;Ahn, Joon-Young;Park, Jin-Soo;Kim, Hyun-Jae;Koo, Youn-Seo;Kim, Shin-Do;Hong, You-Deog;Hong, Ji-Hyung
    • Journal of Korean Society for Atmospheric Environment
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    • v.32 no.5
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    • pp.485-500
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    • 2016
  • We examined acidity state of inorganic aerosol and oxidation state of organic aerosol by High Resolution Time of Flight Aerosol Mass Spectrometer (HR-ToF-AMS) at Baengnyeong Super site from Jan 2012 to Dec 2013. Additionally, we carried out the analysis for the aerosol component group of organic matter ($C_xH_y$, $C_xH_yO_1$, $C_xH_yO_z$, $C_xH_yO_zN_p$) and elemental composition to calculate H/C, O/C, N/C, OM/OC and identify the oxidation state. The aerosol chemical composition in this study is dominated by sulfate ($SO_4{^{2-}}$), nitrate ($NO_3{^-}$) plays a smaller role in aerosol acidity. Ammonium ($NH_4{^+}$) was found in a formation of $(NH_4)_3H(SO_4)_2$. However, the binding formations of $NH_4NO_3$ and $NH_4Cl$ increase in the winter. $C_xH_yO_1$ indicating the oxidized state of $PM_{1.0}$ has the highest ratio of 41% while $C_xH_y$ indicating the non-oxidized state has a lower ratio of 36%, meaning that the oxidation level of $PM_{1.0}$ in Baengnyeong Island is high. The ratio between H/C and O/C was 1.33 and 0.78 respectively, showing the characteristic of LV-OOA (Low volatility-Oxygenated Organic Aerosol). Acidic and oxidized aerosols sampled during this field study were largely anthropogenic in origin from Chinese continent and photochemically aged.

Influences of Pretreatment Procedures, and Refractive and Absorptive Indices in Grain Size Analysis of Sandy Samples by Laser Diffraction Grain Size Analyzer (레이저 회절 입도분석기를 이용한 사질 시료의 입도분석에 있어서 전처리 및 굴절율과 흡수율의 영향)

  • Yoon, Soon-Ock;Hwang, Sangill;Park, Chung-Sun
    • Journal of the Korean Geographical Society
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    • v.48 no.6
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    • pp.819-836
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    • 2013
  • This study aims to compare the inf luences of pretreatment procedures, and refractive and absorptive indices in grain size analysis of sandy samples collected from Sagot Beach, Baengnyeong Island by laser diffraction grain size analyzer, and propose the proper procedure and method in grain size analysis of sandy samples. The analyzed samples do not indicate large differences by the three pretreatment procedures applied in this study. However, the organic matters should be removed by hydrogen peroxide, because the samples without hydrogen peroxide pretreatments show differences from the samples with hydrogen peroxide pretreatments. The results with a refractive index of 1.3 and absorptive index less than 0.01 also indicate differences from those with other indices. Compared to the differences in fine samples, these differences are not significant and thus, it can be concluded that the results in grain size analysis of sandy samples are not greatly influenced by the refractive and absorptive indices. However, other indices out of the ranges should be applied.

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