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김계훈(Kye Hoon Kim),윌리암 밀러(W . P . Miller) 한국응용생명화학회 1995 Applied Biological Chemistry (Appl Biol Chem) Vol.38 No.2
Single-drop splash/detachment studies and multiple-drop splash/detachment experiments were carried out to measure detachment by single and multiple drops. A raindrop tower 7.0 m in height was used to study soil splash by single drop raindrop impact over time on repacked soil samples in containers 76.2 ㎜ in diameter. The waterdrop diameter and kinetic energy were ≤1 ㎜ and 1.22×10^(-3) J drop^(-1), respectively. The samples consisted of five agricultural topsoils sieved to $lt;2 ㎜, varying from sandy loam to clay loam in texture. The average weight of splashed soil particles after 75 drops did not show any significant difference between the five soils. The average weight of particles splashed by the first 15 drops showed that the sandy Pelham soil splashed to a greater degree than the others, and was therefore more detachable (p=0.05) than the other soils. The average weight of particles splashed by the last 15 drops also showed that the Pelham soil was the most detachable, with Cecil, Appling, Dyke, and Worsham soils being progressively less detachable. The effect of multiple drops on detachment was studied under a nozzle-type rainfall simulator at 74.9 ㎜ h^(-1) intensity for 85 min using the same soils as the single drop experiments. The total soil splash value for 85 min on Appling, Cecil, Dyke, Pelham, and Worsham soils were 6121, 6206, 4183, 5160, and 3247 g m^(-2), respectively. There were no obvious relationships between soil loss measured from the different experiments.
LevelⅠFugacity Model을 이용한 Biopile 내 유기화합물 5종의 분포 예측
김계훈(Kye-Hoon Kim),김호진(Ho-Jin Kim),Simon J.T. Pollard 한국토양비료학회 2008 한국토양비료학회지 Vol.41 No.3
본 연구는 level I fugacity model을 이용하여 유류오염 토양에서 많이 존재하며 생태적 위해성이 큰 다섯가지 유기성 오염물질(anthracene, benzene, benzo[a]pyrene, 1-methylphenanthrene, phenanthrene)이 기상, 액상, 고상 및 비수용성액체(NAPL)의 네 가지 상(phase)으로 구성된 biopile 내에서 어떻게 분포하는가를 예측하기 위하여 수행하였다. 이를 위하여 영국 내에서 장기간 유류로 오염된 세 지역으로부터 토양 시료를 채취, 분석하였고 토양 분석 결과와 관련 인자를 level I fugacity model에 입력하여 fugacity 및 오염물질의 토양 중 분포를 구하였다. 다섯 오염물질의 fugacity 간에는 큰 차이가 있었으나 동일 오염물질은 시료 간 fugacity에서 별다른 차이를 보이지 않았다. 모든 오염물질은 NAPL과 고상에 주로 존재하였으며 토양시료간의 유기탄소함량 차이가 오염물질의 분배 동태에 큰 영향을 미쳤다. Benzene은 기상과 액상에 높은 농도로 존재함으로써 위해성에 근거한 기상과 액상 중 benzene 관리의 중요성을 나타내었다. 반면 다른 오염물질은 기상과 액상에 거의 존재하지 않음을 보임으로써 지하수 오염 가능성을 현저하게 감소시켰다. 본 연구의 결과는 위해성이 큰 오염물질과 복원 처리를 토양 내 오염물질 잔류 농도 간에 관련이 있음을 보였으며 또한 유류오염 토양의 위해성 평가 과정에서 NAPL과 고상을 고려하는 일의 중요성도 나타내었다. The purpose of this study was to predict environmental distribution of anthracene, benzene, benzo[a]pyrene, 1-methylphenanthrene and phenanthrene in a four phase biopile system ? air, water, soil and non aqueous phase liquid (NAPL) phase using level I fugacity model. Soil samples used for this study were collected from three sites in the United Kingdom which were historically contaminated with petroleum hydrocarbons. The level I fugacities (f) for the five contaminants were markedly different, however, the fugacities of each contaminant in three soil samples did not show significant difference. NAPL and soil were the dominant phases for all five contaminants. Results of this study indicated that difference in percentage of organic carbon strongly influenced the partitioning behavior of the contaminants. The presence of benzene calls for an urgent need for risk-based management of air and water phase. Whereas insignificant amount of chemicals leached in the water phase for other organic contaminants showing greatly reduced potential of groundwater contamination. Furthermore, this study helped us to confirm the association of risk critical contaminants with the residual saturation in treated soils. They also can be used to emphasize the importance of accounting for the partitioning behavior of both NAPL and soil phases in the process of the risk assessment of the sites contaminated with petroleum hydrocarbons.