• 제목/요약/키워드: Environmental soil

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지반-구조물 상호작용을 고려한 터널 구조물의 동적 해석 (Dynamic Analysis of Tunnel Structures Considering Soil-Structure Interaction)

  • 김현중;박장호;신영석
    • 한국안전학회지
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    • 제20권1호
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    • pp.101-106
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    • 2005
  • When a underground structure is constructed at the site composed of soft soil, the behavior of a underground structure Is much affected by the motion of soft soil. Therefore, the effect of soil-structure interaction is an important consideration in the design of a underground structure such as tunnel at the site composed of soft soil. This paper presents the results of the study on dynamic response of tunnel structures and soil-structure interaction effects. The computer program SASSI was used in seismic analysis of tunnel structures because it is more capable of analyzing dynamic response or structures considering soil-structure interaction. As regards the results, the flexibility of surrounding soil affects dynamic response characteristics of tunnel structures and response of tunnel structures can be amplified.

토양생태 등급 정보가 친환경도로노선 선정에 미치는 영향에 관한 민감도 분석 (Sensitivity Analysis of the Effect of Soil Ecological Quality Information in Selecting Eco-Friendly Road Route)

  • 기동원;강호근;이상은;허준;박준홍
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제13권3호
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    • pp.37-44
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    • 2008
  • 국토개발사업의 사전 계획 과정에서 개발할 것인지 보전할 것인지에 대한 의사결정은 인간 활동에 영향을 줄 수 있는 편리함과 이익을 고려해야 할 뿐만 아니라, 자연환경생태에 미칠 수 있는 영향을 종합적으로 예측하고 평가할 수 있는 자료기반 및 통합적 평가기법을 요구한다. 동식물생태와 지형경관요소들은 환경부의 생태자연도를 통해서 환경영향평가에 현재 활용되고 있지만, 자연생태의 주요 구성요소 중 하나인 토양생태는 정량적인 자료와 지형정보와 연계된 정보의 부재로 환경영향평가에서 고려되지 못하고 있다. 본 연구에서는 토양생태를 포함한 자연환경과 생활환경 요소들을 망라해서 총체적 환경성을 평가할 수 있는 수치지도를 작성하고 토양생태 등급의 가중치가 친환경도로 노선 선정에 미치는 영향에 대해서 민감도 분석을 수행하였다. 그 결과 자연환경 요소들 중 토양생태의 가중치가 14% 이상 만 되어도 최적 친환경노선 선정에 민감하게 영향을 미쳤다. 본 연구의 결과를 통해서 이제까지 환경영향 평가에서 무시되어 오던 토양생태 정보가 친환경 건설개발사업의 계획 및 기초설계 단계에서 중요하게 고려되어야 할 생태요소임을 입증할 수 있었다.

디젤오염토양 복원 효율 증진을 위한 음이온/비이온 계면활성제 토양세척공정에 초음파 적용 영향 (The Effect of Ultrasound Application to Anionic/Non-ionic Surfactant Aided Soil-washing Process for Enhancing Diesel Contaminated Soils Remediation)

  • 조상현;손영규;남상건;최명찬;김지형
    • 한국환경과학회지
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    • 제19권2호
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    • pp.247-254
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    • 2010
  • Ultrasound and Surfactant aided soil washing process has been shown to be an effective method to remove diesel from soils. The use of surfactants can improve the mobility of diesel in soil-water systems by increasing solubility of adsorbed diesel into surfactant micelles. However, a large amount of surfactant is required for treatment. In addition, synthetic surfactants, specially anionic, are more toxic and the surfactant wastewater is hard to treat by conventional wastewater treatments even by AOPs. Ultrasound improves desorption of the diesel adsorbed on to soil. The mechanisms are based on physical breakage of bonds by hot spot, directly impact onto soil particle surface, the fragmentation of long-chain hydrocarbons by micro-jet and microstreaming in the soil pores. The use of ultrasound as an enhancement method in both anionic and nonionic surfactant aided soil-washing processes were studied. And all experiments were examined proceeded under CMC surfactant concentration, frequency 35 khz, power 400 W, Soil-water ratio 1:3(wt%), particle size 0.24 ~ 2mm and initial diesel concentration. 20,000 mg/kg. Combination with ultrasound showed significant enhancements on all the processes. Especially, nonionic surfactant Triton-X100 with ultrasound showed remarkable enhancements and diesel removal rate enhanced by ultrasound helps desorpting of surfactant adsorbed onto soils which prevented decreasing surfactant activity.

토양 혼합여재를 이용한 질소산화물 제거특성 (Removal Characteristics of NOx Using a Mixed Soil-Biofilter)

  • 조기철;신은상;황경철;조일형;이내현;여현구
    • 환경위생공학
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    • 제21권3호
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    • pp.15-26
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    • 2006
  • As traffic in city-centre around the world continues to increase, so levels of atmospheric pollutants continue to rise. High concentrations of NOx can have negative effects on human health, and we must find new ways to reduce their levels in the air we breathe. Nitrogen oxide gas (NOx), consisting of nitrogen monoxide (NO) and nitrogen dioxide $(NO_2)$ produced using $O_3$ oxidation, at a low concentration corresponding to that on roads as a result of exhaust from automobiles, was carried out to evaluate the removal characteristics of NOx through a laboratory-scale biofilter packed with soil as a packing material. A mixture media (yellow soil (30%): soil (40%): compost (10%): a used briquet (20%)) was applied. After about 1day of operation, the removal efficiency for $NO_2$ in all experiments with a constant condition ($25^{\circ}C$ and water humidity (60%)) was over 98%. The retention times of the section between phase I and phase II for formation and reduction of $NO_3$ NO and $NO_2$ on the initial $NO_3$ concentration was 50min $(O_3:195\;ppb),\;55min\;(O_3:925\;ppb),\;65min\;(O_3:1743\;ppb),\;70min\;(O_3:2616\;ppb),\;75min\;(O_3:3500\;ppb)$, respectively The soil biofilter system is a unique technology that purifies urban air by utilizing the natural processes that take place in the soil. Although some of the processes are quite complex, they can broadly be summarized as adsorption onto soil particles, dissolution into soil pore water, and biochemical.

Remediation of heavy metal-contaminated soils using eco-friendly nano-scale chelators

  • Lim, Heejun;Park, Sungyoon;Yang, Jun Won;Cho, Wooyoun;Lim, Yejee;Park, Young Goo;Kwon, Dohyeong;Kim, Han S.
    • Membrane and Water Treatment
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    • 제9권3호
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    • pp.137-146
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    • 2018
  • Soil washing is one of the most frequently used remediation technologies for heavy metal-contaminated soils. Inorganic and organic acids and chelating agents that can enhance the removal of heavy metals from contaminated soils have been employed as soil washing agents. However, the toxicity, low removal efficiency and high cost of these chemicals limit their use. Given that humic substance (HS) can effectively chelate heavy metals, the development of an eco-friendly, performance-efficient and cost-effective soil washing agent using a nano-scale chelator composed of HS was examined in this study. Copper (Cu) and lead (Pb) were selected as target heavy metals. In soil washing experiments, HS concentration, pH, soil:washing solution ratio and extraction time were evaluated with regard to washing efficiency and the chelation effect. The highest removal rates by soil washing (69% for Cu and 56% for Pb) were achieved at an HS concentration of 1,000 mg/L and soil:washing solution ratio of 1:25. Washing with HS was found to be effective when the pH value was higher than 8, which can be attributed to the increased chelation effect between HS and heavy metals at the high pH range. In contrast, the washing efficiency decreased markedly in the low pH range due to HS precipitation. The chelation capacities for Cu and Pb in the aqueous phase were determined to be 0.547mmol-Cu/g-HS and 0.192mmol-Pb/g-HS, respectively.

경북북부 인삼 재배 토양 중 Dioxins의 잔류 (Residues of Dioxins in Soil Cultured Ginseng of North Gyeongbuk)

  • 김정호
    • 한국환경과학회지
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    • 제21권4호
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    • pp.451-459
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    • 2012
  • PCDDs(Polychlorinated dibenzo-$p$-dioxins) and PCDFs(polychlorinated dibenzofurans) are measured in soil of Yeungju and Sangju on North Gyeongbuk to investigate the risk assessment of dioxins. Dioxins are analyzed by HRGC/HRMS(high resolution gas chromatography - high resolution mass spectrometer). 2,3,7,8-T4CDD and 1,2,3,7,8-Pe5CDD in soil on Yeungju and Sangju are not detected. Also, 2,3,7,8-T4CDF is not detected in soil on Yeungju and Sangju. PCDDs and PCDFs in Yeungju soil are 1.957 pg/g and 0.294 pg/g, respectively. Total of dioxins in Yeungju soil are 2.251 pg/g. PCDDs and PCDFs in Sangju soil are 1.220 pg/g and 0.420 pg/g, respectively. Total of dioxins in Sangju soil are 1.640 pg/g. PCDDs and PCDFs in Yeungju soil are 0.0049 pg WHO-TEQ/g and 0.0123 pg WHO-TEQ/g, respectively. Total of dioxins with PCDDs and PCDFs in Yeungju soil are 0.0172 pg WHO-TEQ/g. PCDDs and PCDFs in Sangju soil are 0.0065 pg WHO-TEQ/g and 0.0213 pg WHO-TEQ/g, respectively. Total of dioxins with PCDDs and PCDFs in Sangju soil are 0.0278 pg WHO-TEQ/g. Amount for pg/g concentration unit of PCDDs is higher than amount of PCDFs in soil. But, WHO-TEQ of PCDFs is higher than WHO-TEQ of PCDDs in soil.

비소 오염 토양의 복원을 위한 자철석과 바닥재 활용 (Remediation of As-contaminated Soil Using Magnetite and Bottom Ash)

  • 오세진;강민우;이종철;이훈호;노현석;전유권;김동진;이상수
    • 한국환경농학회지
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    • 제41권4호
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    • pp.223-229
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    • 2022
  • BACKGROUND: Mining activities, smelter discharges, and sludges are the major sources of heavy metal contamination to soils. The objective of this study was to determine the efficiency of magnetite and bottom ash derived from coal ash in remediating As-contaminated soil. METHODS AND RESULTS: An incubation experiment was conducted for 10 weeks. Magnetite and bottom ash at different rates and ratios were applied to each plastic bottle repacked with 1,000 g of dried As-contaminated soil. After 3-weeks of incubation, the concentrations of available As were measured by using Mehlich-3, SBET, and sequential extraction methods. All of the subjected soil amendments resulted in significant decreases in available As concentration compared to the controls. The addition of magnetite at the highest rate was the best to stabilize As in the soils; however, the values of As concentration varied with the extraction methods. CONCLUSION(S): To ensure the stabilization accuracy of heavy metals in soil, both single and sequential extractions are recommended. The magnetite derived from fly coal ash can also be applicable as a heavy metal stabilizer for the As-contaminated soil.

GC/ECD 및 GC/MS을 이용한 토양 중 PCBs 분석방법 고찰 (Analytical method of the polychlorinated biphenyls in soil using GC/ECD and GC/MS)

  • 김태승;신선경;윤정기;김종하;김형섭;이정아
    • 분석과학
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    • 제20권2호
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    • pp.91-108
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    • 2007
  • 토양 중 PCBs 분석방법을 검토하기 위해 우리나라 토양오염공정시험방법 및 선진국의 분석방법을 비교 검토하고 결과를 근거로, 추출 및 전처리방법, 칼럼정제방법, 분석용 칼럼 조건, 기기분석 조건 및 정량방법을 검토하였다. 또한 검토된 방법에 따라 토양 중 PCBs 세부분석지침(안)을 제시하고, 제시된 세부분석지침(안)에 의해 PCBs 제품으로 오염시킨 토양 5건 시료와 토지이용도별 및 오염원별 23건의 시료를 전처리하여 분석하였다. 기체크로마토그래피/전자포획검출법(GC/ECD)에 의한 토지이용도별 및 오염원별 PCBs 분석결과는 모든 시료에서 피크패턴(GC/ECD)을 확인 할 수 없었으나, 기체크로마토그래피/질량분석법(GC/MS)에 의한 개별이성체 정량결과는 $0.002{\sim}0.487{\mu}g/kg$ 범위로 검출되었다.

오염물질 확산방지를 위한 운영중 군 사격장 환경관리방안에 대한 고찰 (An Environmental Management Protocol for the Mitigation of Contaminants Migration from Military Operational Ranges)

  • 정재웅;문희선;남경필
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권6호
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    • pp.8-18
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    • 2015
  • Pollutants such as heavy metals and explosives originating from the military operational ranges can be migrated to adjacent surface water body or offsite soil, and can affect to local residents and aquatic ecosystem. Therefore, Korea Ministry of the National Defense has established various guidelines for environmental management including the installation of pollutant migration prevention facilities (PMPFs) and monitoring methodologies for heavy metals in the operational range soil and effluent and sediment of PMPFs. However, current guidelines neither address the explosive compounds such as 2, 4, 6-trinitrotoluene (TNT) and hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) nor suggest detailed environmental investigation protocol. This paper introduces the new “Environmental Management Manual for Military Firing Ranges”, which includes the environmental criteria for explosives as well as the detailed investigation protocol for the affected environmental media including soil, effluent and sediment of PMPFs.

Fluoride in soil and plant

  • Hong, Byeong-Deok;Joo, Ri-Na;Lee, Kyo-Suk;Lee, Dong-Sung;Rhie, Ja-Hyun;Min, Se-won;Song, Seung-Geun;Chung, Doug-Young
    • 농업과학연구
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    • 제43권4호
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    • pp.522-536
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    • 2016
  • Fluorine is unique chemical element which occurs naturally, but is not an essential nutrient for plants. Fluoride toxicity can arise due to excessive fluoride intake from a variety of natural or manmade sources. Fluoride is phytotoxic to most plants. Plants which are sensitive for fluorine exposure even low concentrations of fluorine can cause leave damage and a decline in growth. All vegetation contains some fluoride absorbed from soil and water. The highest levels of F in field-grown vegetables are found up to $40mg\;kg^{-1}$ fresh weight although fluoride is relatively immobile and is not easily leached in soil because most of the fluoride was not readily soluble or exchangeable. Also, high concentrations of fluoride primarily associated with the soil colloid or clay fraction can increase fluoride levels in soil solution, increasing uptake via the plant root. In soils more than 90 percent of the natural fluoride ranging from 20 to $1,000{\mu}g\;g^{-1}$ is insoluble, or tightly bound to soil particles. The excess accumulation of fluorides in vegetation leads to visible leaf injury, damage to fruits, changes in the yield. The amount of fluoride taken up by plants depending on the type of plant, the nature of the soil, and the amount and form of fluoride in the soil should be controlled. Conclusively, fluoride is possible and long-term pollution effects on plant growth through accumulation of the fluoride retained in the soil.