• 제목/요약/키워드: Soil mineral

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수중 세슘 제거를 위한 층상 황화 금속 물질 자성화 연구 (A Study on Magnetization of Layered Metal Sulfide for the Removal of Cesium Ions from Aqueous Solution)

  • 전철민;박지원;류정호;장정윤;조동완
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제28권4호
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    • pp.1-5
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    • 2023
  • In the fabrication of magnetic adsorbent by incorporating iron species on base materials with layered structure, there can be a potential loss of adsorption capacity from the penetration of dissolved iron species into the structure. This work newly synthesized a magnetic adsorbent by incorporating nano magnetite and glucose into layered metal sulfide via hydrothermal treatment, and tested the removal efficiencies of cesium ions (Cs+) by the adsorbents fabricated under different conditions (final temperature and glucose mass ratio). As a result, the optimal fabrication condition was found to be mass ratio of 1 (layered metal sulfide): 0.1 (nano magnetite): 0.4 (glucose) and final temperature of 160℃. As-prepared adsorbent possessed good adsorption ability of Cs+ (54.8 mg/g) without a significant loss of adsorption capacity from attaching glucose and nano magnetite onto the surface.

Extraction Characteristics and Quantitational Methods for Total Petroleum Hydrocarbons in Soil

  • Jeon, Chi-Wan;Lee, Jung-Hwa;Song, Kyung-Sun;Lee, Sang-Hak;Lee, Jung-Min
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2003년도 International Symposium on Clean Environment
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    • pp.119-122
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    • 2003
  • Quantitation methods of total petroleum hydrocarbons to determinate oil contaminated level in soil were discussed. Extraction characteristics of several pretreatment methods and practical detection limit and reappearances in gas chromatography/mass spectrometry. with each pretreatment method were investigated. The obtained results showed that the newly adopted quantitation method and mechanical shaking extraction method using methanol with extraction solvent are more practical and applicable to real sample than the conventional methods. In applying these methods to gasoline, kerosene, fuel oil which are major source of soil contamination, the practical quantitation limit and % relative standard deviation was able to determine with range of 2.5 - 10 ppm, 5 - 7 %.

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다채널 지표토양 CO2 농도 모니터링(SCM) 시스템 개발 및 적용성 평가 연구 (Applicability of the Multi-Channel Surface-soil CO2-concentration Monitoring (SCM) System as a Surface Soil CO2 Monitoring Tool)

  • 성기성;유순영;최병영;박진영;한래희;김정찬;박권규;채기탁
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권1호
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    • pp.41-55
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    • 2015
  • Monitoring of $CO_2$ release through the ground surface is essential to confirm the safety of carbon storage projects. We conducted a feasibility study of the multi-channel surface-soil $CO_2$-concentration monitoring (SCM) system as a soil $CO_2$ monitoring tool with a small scale injection test. The background concentrations showed the distinct diurnal variation. The negative relation of $CO_2$ with temperature and the low $CO_2$ concentrations during the day imply that surface-soil $CO_2$ depends on photosynthesis and respiration. After 4.2 kg of $CO_2$ injection (1 m depth for 29 minutes), surface-soil $CO_2$ concentrations increased in the all five chambers, which were located less than 2.8 m of distance from each other. The $CO_2$ concentrations seem to be recovered to the background around 4 hours after the injection ended. To determine the leakage, the data from Chamber 2 and 5 with low increase rates were used for statistical analyses. Coefficient of variation for 30 minutes ($CV_{30min}$.) is efficient to determine a leakage signal, with reflecting the fast change in $CO_2$ concentrations. Consequently, SCM and $CV_{30min}$ could be applied for an efficient monitoring tool to detect $CO_2$ release through the ground surface. Also, this study provides ideas for establishing action steps after leakage detection.

베트남 북부 네안성 뀌홉지역 희토류 광화작용 (REE Mineralization of Quy Hop Area in Nghe An Province, Northern Vietnam)

  • 이재호;진광민;허철호
    • 한국광물학회지
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    • 제31권3호
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    • pp.193-213
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    • 2018
  • 베트남 북부 네안성 뀌홉지역에서 희토류 원소의 광화작용과 관련된 이상대 확인을 위해 토양지구화학탐사를 수행하였다. 시료채취 간격은 가로 250 m 13 line (총 4.2 km), 세로 300 m 25 line (총 7.5 km)으로 총 325개의 시료가 채취되었다. 또한, 토양지구화학탐사 결과를 바탕으로 총 희토류(Total rare-earth oxides, TREO) 함량이 높은 8개 격자점을 대상으로 피트탐사를 수행하여 73개의 토양시료를 채취하였다. 조사지역은 반찌응(Ban Chieng) 흑운모 화강암 복합체가 편암, 편마암, 석회암으로 구성된 부캉(Bu Kang)층을 관입하고 있다. 본 지역의 주요 광화작용은 주석, 루비, 그리고 화강암 복합체의 주변부 변질대에 분포하고 있는 것으로 사료되는 함희토류 모나자이트(Monazite)와 제노타임(Xenotime)의 산출이 특징적이다. 채취한 토양시료의 ICP-MS 분석 결과, 총 희토류 평균 함량은 지각의 총 희토류 함량(248 ppm)보다 평균 약 1.4배 높게 나타났다. 한편, 경희토류의 평균 함량은 44.6 ppm으로서 지각 평균(200 ppm)보다 결핍되어 있고, 중희토류는 평균 함량(44 ppm)이 지각평균(26 ppm)의 약 1.5배 부화되어있다. 피트탐사에서 채취한 토양시료에 대한 희토류원소의 화학성분 분석 결과, 6개의 피트에서 총 희토류 함량(TREO)이 1,000 ppm 이상의 값이 확인되었다. 이는 뀌차우(Quy Chau)지역의 탐사 및 분석 결과와 비교해보면, 북동-남서 방향으로 희토류 이상대가 발달하고 있는 것으로 사료된다.

잔적 및 붕적모재 토양의 점토광물 특성구명 (Clay Mineral Composition of the Soils Derived from Residuum and Colluvium)

  • 장용선;손연규;정석재;이계준;김명숙;김선관;이주영;편인환
    • 한국토양비료학회지
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    • 제39권5호
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    • pp.245-252
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    • 2006
  • 우리나라 토양의 분류체계를 보완하고 점토광물 조성과 분포를 파악하기 위하여 우리나라 390개 토양통 중 잔적 및 붕적토에서 유래된 26개 토양통을 대상으로 토양 층위별료 시료를 채취하여 집적층을(B층) 토양의 이화학적 특성, 토양 중 점토의 광물조성과 화학성분을 분석하였다. 잔적 및 붕적모재별로는 화강암과 화강편마암, 회장암에서 유래된 토양에서 kaolin과 quartz, 유문암, 3기층, 석영반암, 응회암에서 유래된 토양에서 quartz과 kaolin, 석회암, 혈암, 사암, 역암 등 퇴적암에서 유래된 토양에서 illite와 chlorite가 주요한 점토광물이었다. 토양통별 점토광물조성을 군집분석 (CA, cluster analysis)을 통하여 (1) illite, kaolin, vemiculite를 주광물로 하는 혼합점토광물군 (MIX), (2) kaolin을 주광물로 illite가 많은 kaolin군 (KA), (3) chlorite와 illite가 주광물인 chlorite군 (CH), (4) kaolin과 illite를 주광물로 smectite가 함유된 smectite군 (SM) 등 4개의 점토광물 조성군으로 구분하였다. 우리나라 토양의 대부분은 kaolin을 주광물로 하는 토양과 illite, kaolin, vemiculite가 함유된 토양이었으며, illite와 kaolin을 주광물로 하는 토양에서 CEC가 낮았고 vemiculite와 smectite가 함유된 점토에서 규반비가 높았다.

모형실험장치를 이용한 불포화토의 강우 침투특성 분석 (Analysis of rainfall infiltration characteristics for unsaturated soils using a column test equipment)

  • 박규보;채병곤;김경수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.736-742
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    • 2010
  • This study was conducted to characterize on the relationships of rainfall intensity and infiltration rate of rainfall dependent on unit weight change in the gneissic weathered soil by a column test equipment. In this study, volumetric water content and pore water pressure were measured using TDR sensors and tensiometers at regular time intervals. Rainfall conditions including continuous rainfall and repeated rainfall were selected in order to know the effect of antecedent rainfall. In the condition of rainfall intensity 20mm/h and the unit weights of soil as $1.35g/cm^3$, $1.55g/cm^3$ and $1.61g/cm^3$, average rainfall infiltration rate was $2.814{\times}10^{-3}cm/sec$, $1.969{\times}10^{-3}cm/sec$ and $1.252{\times}10^{-3}cm/sec$ respectively. The higher rainfall intensity and lower unit weight of soil, the faster average infiltration rate. Overflow in the column was happened except rainfall condition of rainfall intensity 20mm and soil unit weight $1.35g/cm^3$. Increasing the soil unit weight, overflowed water was increased and occurrence time was faster.

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사고 누출 화학물질의 지하수 및 토양 환경 내 거동 및 환경 독성 특성 III: 유기화학물질을 중심으로 (Fate and Toxicity of Spilled Chemicals in Groundwater and Soil Environment III: organics)

  • 정슬기;문희선;신도연
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제24권1호
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    • pp.1-9
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    • 2019
  • This study presents a technical perspective to the fate characteristics of phenol and m-cresol, which represent some of the most common organic chemicals found in chemical spill accidents, and likely to persist in soil and groundwater due to their highly stable physicochemical properties. Some cases of domestic and foreign chemical accidents linked to phenol and m-cresol contamination were compiled. Due to their low organic carbon-water partitioning coefficient (Koc), phenol and m-cresol tend to migrate into groundwater and remained as dissolved phase. On the other hands, phenol and m-cresol can be readily decomposed by microbes in soil and groundwater under appropriate conditions. Therefore, the fate characteristics of these chemicals are highly contingent on environmental conditions. Thus, if a great quantity of leakage is occurred by chemical accidents, the up-to-date and correct information about fate characteristics taking into account both the chemical and environmental conditions is greatly needed to minimized the potential hazards from these chemicals.