• 제목/요약/키워드: Particle site distribution

검색결과 104건 처리시간 0.027초

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.

Investigation of Soil Physico-chemical Properties in Saemangeum Reclaimed Tidal Land in Korea

  • Ahn, Byung-Koo;Lim, Yeon-Yi;Ko, Do-Young;Lee, Chang-Kyu;Kim, Jin-Ho;Song, Young-Ju;Lee, Jin-Ho
    • 한국토양비료학회지
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    • 제49권4호
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    • pp.347-354
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    • 2016
  • This study was conducted to investigate the physical and chemical properties of soils in Saemangeum reclaimed lands. The investigated areas were total 5,020 ha which included 220 ha for Agricultural Life site, 2,450 ha for Tourism & Leisure site, 1,130 ha for Industrial & Research site, 820 ha for Bioenergy crop production site, and 400 ha for Rural City site. Soil samples consisting of the upper 20 cm from the surface were collected in every $200m{\times}500m$ of the each site in March and September, 2015. Particle size distribution of soils in the reclaimed land was 83.2% sand, 8.6% silt and 8.2% clay in average. Soil texture was distributed as 40.8% sandy soil, 35.5% loamy sand, and 19.7% sandy loam. Based on the investigation of soil chemical properties conducted in March, 2015, soil pH, electrical conductivity of a saturated soil paste extract (ECe), and exchangeable (Exch.) $K^+$ and $Mg^{2+}$ concentrations were higher than those of the optimum levels for upland soil, whereas soil organic matter content, available (Avail.) phosphate concentration, and Exch. $Ca^{2+}$ concentration were lower than those of the optimum ranges. Depending on the results of the soil chemical properties measured in September, 2015, soil pH, ECe, and Exch. $K^+$ concentration were higher than those of the optimum levels, but soil organic matter, Avail. phosphate, and Exch. $Ca^{2+}$ concentration were lower than the optimum ranges. In addition, distribution of sodic soil ranged between 41.4% and 50.0%, and saline soils were from 16.4 to 31.8%. Soils with pH values above 7.0 increased from 15.3% in March to 35.2% in September. Soils with ECe values over $4.8dS\;m^{-1}$ increased from 45.6% to 50.7%, whereas soils with the values below $2.0dS\;m^{-1}$ decreased from 42.8% to 36.9%.

국내 소규모 군사격장 복합오염물질(화약물질 및 중금속)의 분포 및 거동 (Distribution and Behavior of Mixed Contaminants, Explosives and Heavy Metals, at a Small Scale Military Shooting Range)

  • 박석효;배범한;김민경;장윤영
    • 한국물환경학회지
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    • 제24권5호
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    • pp.523-532
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    • 2008
  • A phase II site investigation and feasibility study was conducted at a military mortar shooting range near the demilitarized zone (Kyunggi, South Korea) to assess the extent of contaminants migration to the nearby Imjin river in which a flood control dam is under construction. The results showed that silty-clay soils around target areas were co-contaminated with heavy metals (Cd, Cu, and Pb) and explosives (HMX, RDX, and TNT). The total amount of contaminant was estimated to be 497.1 kg-RDX, 20.6 kg-HMX, 1.4 kg-TNT, 35.2 kg-Cd, 4,331 kg-Cu, and 5,115 kg-Pb, respectively. Both heavy metals and explosives were almost equally distributed on each soil particle size fraction. Neither subsurface soil samples nor ground water samples showed signs of contamination above the environmental criteria. The major migration route of contaminants was soil particles in surface run-off during rain at which a mass discharge rate of 30.0 mg-RDX/hour was observed.

UHF Sensor를 이용한 SF6 절연 MV 개폐기의 부분방전 검출 시스템 (Partial Discharge Monitoring for $SF_6$ Insulated MV Switchgear using UHF sensors)

  • 이도훈;강원종;신양섭;김영근;오일성;김동명;권태호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 제38회 하계학술대회
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    • pp.2040-2041
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    • 2007
  • In this paper, the UHF PD(Partial Discharge) sensors for $SF_6$ insulated MV $SF_6$ switchgear have been proposed and related investigations have been performed in order to detect the PD which were produced inside the MV $SF_6$ switchgear. Firstly, the internal type UHF PD sensor based on spiral antenna theory has been developed. This type sensor is highly sensitive and has lowly effect on by on-site noise. Secondly, the external type UHF PD sensor was developed based on log periodic antenna concept. This type sensor is removable and detectable for operating switchgear. These sensors were designed and simulated using RF simulation tool. In order to verify the sensitivity of these sensors, we performed the on-site test using the mock-up switchgears including the artificial defects which were the protrusion on high voltage conductor, free moving metal particle and surface defect on insulator. These mock-up switchgear were installed on the test distribution line.

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SPT-업홀 토모그래피 기법을 이용한 지반의 2차원 전단파 속도 분포의 도출 (Evaluation of Near Subsurface 2D Vs Distribution Map using SPT-Uphole Tomography Method)

  • 방은석;김종태;김동수
    • 대한토목학회논문집
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    • 제26권3C호
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    • pp.143-155
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    • 2006
  • SPT-업홀 기법은 표준관입시험시 발생하는 지중의 타격 에너지를 가진원으로 이용하고 지표면에 설치된 속도계로 신호를 획득, 지반의 전단파 속도 주상도를 도출하는 기법이다. 기존의 SPT-업홀 기법은 1차원 해석 기법이므로 지반이 수평하지 않은 경우에는 그 신뢰성이 떨어지게 된다. 본 논문에서는 수평적으로 불균질한 경우에도 SPT-업홀 기법을 수행할 수 있도록 토모그래피 기법을 도입하여 결과를 분석하고자 하였으며 시추공-지표면 주시 토모그래피 기법으로 시추공 주변 지반의 전단파 속도 분포를 삼각형 형태로 도출할 수 있게 된다. SPT-업홀 기법의 토모그래피 기법 적용을 위해 새로운 현장 시험법 정립, 전단파 성분의 초동 정보 획득 방안 및 토모그래피 기법 프로그램의 적용 방안 등을 확립하였다. 일반적인 지반 형상을 대표하는 다층구조의 수평 모델, 상향 경사 모델, 하향 경사 모델에 대한 유한요소해석을 통하여 정립된 SPT-업홀 토모그래피 기법을 검증하고자 하였다. 최종적으로 실제 현장에서 SPT-업홀 토모그래피 기법을 수행하여 2차원적인 전단파 속도 분포를 도출하였으며 시험 측선에서 다수의 시추를 통해 파악한 지반의 2차원 형상과 비교를 통해 결과의 신뢰성에 대해 검증하였다.

유류오염 토양의 복원을 위한 열탈착 처리기술

  • 유동준;김영웅;박용규;오방일;구자공
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2001년도 추계학술발표회
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    • pp.111-114
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    • 2001
  • Thermal desorption process is valuable for the remediation of oil contaminated site. The system is physical separation process by volatizing oil contaminants from soil matrixes and is not designed to provide high levels of oil destruction. The process is not incineration, because the decomposition of oil materials is not the desired result, although some decomposition may occur. The physical and chemical properties that influence the design and operation of the system include boiling points, soil sorption characteristics, aqueous phase solubility, thermal stability, contaminating oil concentration, moisture contents, particle size distribution and etc.

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깁사이트를 원료로 한 고온촉매용 담체의 제조 II, 비정질 알루미나의 담체 전구체로서의 특성 (Preparation of High-Temperature catalytic Support from Gibbsite II. Properties of Amophous Alumina as Precursor of Catalyst Support)

  • 김성연;김연식
    • 한국세라믹학회지
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    • 제33권1호
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    • pp.92-100
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    • 1996
  • Amorphous alumina(AA) the precursor of ${\gamma}$-alumina for catalyst support was made in the newly designed ball filled heating column. Some properties of AA as precursor were investigated. In observation of microstruc-ture and pore structure of AA and its derivatives scanning electronic microscope(SEM) and transmission electronic microscope(TEM) were used. It was found that the width of one particle in AA was 45~60$\AA$ and the average distance among the particles ranged 9~12 $\AA$ which suggested a micropore structure. When AA was reacted with water the shape of the surface was found to be altered and acicular bioehmite was formed inside AA which contributed inproved formability. Pore distribution was evaluated for the three samples of AA ground and granulated lump and La2O3 coated alumina. Acid sites were quantitatively determined by ammonia TPD method and the effect of impurity of Na on acid sites was discussed. Water adsorption capacity was evaluated in terms of a desiccant.

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Characteristics of micro-plastics in stormwater sediment basin: Case study of J wetland

  • Jiyeol Im;Kyungik Gil
    • Membrane and Water Treatment
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    • 제14권4호
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    • pp.147-153
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    • 2023
  • Urbanization has been causing such new pollutants as micro-plastic, thus the environmental impact of new pollutants on ecosystem is rapidly increasing. When it comes to micro-plastic, a representative artificial trace pollutant, its risk has been increased at a much faster rate, however the depth study associated with stormwater sediment and wetland was relatively rare. In this research, soil samples from storm water sediment were analyzed for distribution characteristics of micro-plastics in the J wetland (registered as Ramsar wetland, May 2021 and a representative environmental site in South Korea). Analyzed soil samples found approximately 201 ± 93 particle/kg (based on unit weight, Total micro plastic particles / Total Sample weight) micro-plastics in the samples. When considering the total quantitative numbers in stormwater sediment in the entire area of the J wetland, over 15,000 micro-plastics were estimated to be contaminating such area. In addition, in terms of qualitative numbers, micro-plastics were contaminating the J wetland with 94.7 % ratio of styrofoam type (43.9%) and polyethylene type (50.8%). These research results can be used as base data sets for controlling micro-plastics in the J wetland.

Effect of arbitrarily manipulated gap-graded granular particles on reinforcing foundation soil

  • Xin, Zhen H.;Moon, Jun H.;Kim, Li S.;Kim, Kab B.;Kim, Young U.
    • Geomechanics and Engineering
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    • 제17권5호
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    • pp.439-444
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    • 2019
  • It is generally known that high strength soil is indicative of well-graded particle size distribution. However, there are some special cases of firm ground despite poor grade distribution, especially a specific gap-graded soil. Based on these discoveries, this study investigated the development of an additive of gap-graded soils designed to increase soil strength. This theoretical concept was used to calculate the mixed ratio required for optimal soil strength of the ground sample. The gap-graded aggregate was added according to Plato's polyhedral theory and subsequently calculated ratio and soil strength characteristics were then compared to characteristics of the original soil sample through various test results. In addition, the underground stress transfer rate was measured according to the test conditions. The test results showed that the ground settlement and stress limit thickness were reduced with the incorporation of gap-graded soil. Further field tests would confirm the reproducibility and reliability of the technology by using gap-graded soil to reinforce soft ground of a new construction site. Gap-graded soil has the potential to reduce the construction cost and time of construction compared to other reinforcing methods.

펄프 섬유의 세포벽 미세공극 충전 (Cell Wall Micropore Loading of Pulp Fibers)

  • 이종만;조병묵
    • Journal of the Korean Wood Science and Technology
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    • 제20권4호
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    • pp.57-64
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    • 1992
  • The unique cell wall micropores of pulp fiber can be utilized as loading site in variety of important practical application which could be the basis of new papermaking technologies. One of these includes the manufature of paper containing higher levels of in situ filler precipitated. Hardwood pulp fiber were first impregnated with the solution of sodium carbonate($Na_2CO_3$). The micropores in cell wall of pulp fibers were filled with the liquid salt solution. The second calcium nitrate($Ca(NO_3)_2$) solution formed an insoluble calcium carbonate($CaCO_3$) precipitate within the cell wall micropores by interacting with the first sodium carbonate solution. The effects of chemical concentration and dryness of pulp fibers on the retention of cell wall micropore loaded filler were investigated. The paper properties of cell wall micropore loaded pulp fibers were compared with those of conventionally loaded and lumen loaded pulp fibers. Also the presense of the fillers within the cell wall micropore was observed by SEM. Increasing the chemical concentration to generate the calcium carbonate increased the retention of filler in cell wall micropore loaded pulp fibers. The particle size distribution of precipitated calcium carbonate ranged from $0.1{\mu}m$ to $80{\mu}m$. But, the average particle size of cell wall micropore loaded calcium carbonate was $4{\mu}m$. The paper made from never dried pulp fibers, the cell wall micropores which were filled with calcium carbonate, had better mechanical and optical properties than those of conventionally loaded or lumen loaded pulp fibers.

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