• Title/Summary/Keyword: 오염정화

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Removal of Heavy Metal Contaminants from Cohesive Soil by Electrokinetics (Electrokinetic 기술에 의한 점성토의 중금속 오염물 제거)

  • 정하익;강병희
    • Geotechnical Engineering
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    • v.13 no.6
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    • pp.123-138
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    • 1997
  • Electroosmotic tests were performed on saturated marine clay specimens contaminated with lead to investigate the efficiency of the electrokinetic technique for removal of heavy metals from the cohesive soils. For this purpose, testing program included variable conditions such as the concentration of lead (500, 5, 000, 50, 000mg/kg), the level of electrical current (10, 50, 100 mA), operating duration (5, 15, 30days), and the application of three dirtferent chemicals for enhancement in efficiency. The pH of inflow and outflow, electroosmotic flow and electrical conductivity during the test, and the pH and the concentration of lead across the specimen after the test are presented. Test results came to the conclusion that the electrokinetic technique was very effective to remove heavy metals such as lead from the contaminated cohesive soil. Adding ecetic acid at the cathod to dissolve the procipitates of lead hydroxide as found to be effective for the enhancement of the efficiency in remediation.

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Parameters for Evaluating the Sink Capacity of Broad Leaves Trees for the Gas Phase Air Pollutants (가스상 대기오염물질에 대한 활엽수의 정화능력 평가인자)

  • Kim, Jeong-Gyu;Koh, Kang-Suk
    • Korean Journal of Environmental Agriculture
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    • v.15 no.4
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    • pp.472-478
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    • 1996
  • It was conducted to compare the availabilities of parameters for evaluating the sink capacity of the broad leaves trees such as Acer saccharium, Ailanthus altissima, Ginkgo biloba, Platanus occidentalis and Salix pseudolasiogyne. These trees, repoted as resistant species to air pollutants, were exposed to $SO_2$, $NO_2$ and CO within a phytotron at $25^{\circ}C$ with 70% of relative humidity. Since the amount of ad- or absorbed gas does not always agree with the amount of accumlated pollutants in leaves and with the stomatal density, it is assumed that the amount of ad- or absorbed gas is the most basal index to evaluate the sink capacity of trees. The stomatal diffusive resistance, which has a good agreement with the amount of ad- or absorbed gas, is also available for evaluating the sink capacity of broad leaves trees.

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The assessment of applicable for waste LCD glass media by using foaming technology in non-point source (발포기술이 적용된 폐 LCD 유리 여재의 비점오염원에 대한 적용성 평가)

  • Yang, Jung-Min;Ahn, Tae-Woong;Choi, I-Song;Oh, Jong-Min
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1817-1821
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    • 2009
  • 최근 전자제품 사용의 증가로 인해 버려지는 전자제품의 양도 함께 증가하고 있으며 이렇게 늘어난 전자폐기물이 부적절한 방식으로 처리될 경우 우리에게 악영향을 미치는 위험물질이 될 수 있다. 본 연구에서는 이러한 전자폐기물 중 하나인 폐 LCD 유리를 이용한 수질정화용 여재를 이용하여 전자폐기물에 의한 오염을 줄이고, 동시에 강우시 표면 유출로 인하여 발생되는 비점오염을 제어하고자 하였다. 본 연구에서 이용한 수처리 여재는 기존 수처리 여재의 단점을 보완하는 대체 여재 개발이라는 목적에 적합할 것으로 판단된다. 이에 본 연구에서 발포기술이 적용된 폐 LCD 유리 여재의 비점오염에 의한 수질정화능력평가를 하기 위해 실험 장치를 구성하여 실험하였다. 반응조는 직경 0.10 m, 높이 0.75 m 크기(총용량= 5.89 $\ell$)로 두께 10mm의 투명 아크릴판으로 3조를 제작하였다. 유입수는 미량 펌프를 이용하여 유입하였다. 각 반응조의 체류시간에 의한 수질정화능력을 평가하였다. 연구 결과, 오염물질에 대한 제거효율 범위는 SS $64.1%\sim88.2%$, BOD $29.8\sim52.4%$, COD $56.8\sim66.1%$, T-N $39.4\sim\;52.3%$, T-P $14.1\sim36.8%$로 나타났다. 체류시간이 가장 길었던 반응조의 경우, 대부분의 측정항목에서 높은 처리 효율을 볼 수 있었다. 초기에 처리 효율이 낮은 것은 미생물이 부착되지 않았기 때문이라고 판단되며, 실험의 중반과 후반에서 미생물이 부착이 되는 시점부터 높은 처리효율을 보이는 것으로 나타났다.

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Case Study on the Treatment of Acid Rock Drainage from an Embankment with Pyrite Rocks (황철석 암버럭을 이용한 고속도로 성토체의 산성배수 처리 사례 연구)

  • Gong, Jeong-Sik;Kim, Tae-Hyung;Song, Young-Suk
    • The Journal of Engineering Geology
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    • v.31 no.4
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    • pp.523-532
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    • 2021
  • The treatment of acid rock drainage was reviewed and evaluated for the case of pyrite rocks distributed in a highway embankment. During the highway's construction, neutralization using alkaline water repellent was applied to the embankment section to prevent acid rock drainage. However, it still occurred long after the construction was completed owing to rain infiltration, and the acid rock drainage polluted the surrounding soils and streams. To solve this problem, treatment facilities such as SAPS (Successive Alkalinity Producing Systems) or ecological wetlands and sand filtration were installed. After the installation of the treatment facilities, the effluent and soils contaminated by acid rock drainage nearby the outlet of the facilities were analyzed and evaluated for a period of years. Measurements of the pH of the effluent and analysis of the heavy metal contamination of the soils confirmed that the neutralization treatment for acid rock drainage is being performed properly and that contamination of heavy metals in the acid rock drainage is also being stably controlled by the treatment facilities.

Phytoremediation of Soils Contaminated with Heavy Metal by Hosta longipes in Urban Shade (도시 내 음지 중금속 오염지에 대한 비비추의 식물정화 효과)

  • Ju, Jin-Hee;Yoon, Young-Han
    • Journal of Environmental Policy
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    • v.12 no.4
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    • pp.119-132
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    • 2013
  • Hosta longipes is one of the most popular ornamental perennials in use in Korea today, and is mainly used as a groundcover plant in urban shaded places. In this study, the pytoremediation effect of Hosta longipes was tested using four concentrations (Control, 100, 250 and $500mg{\cdot}kg^{-1}$) of Cd, Pb and Zn in soil. The plants were planted in $300mm{\times}200mm{\times}250mm$ drainless-containers, which were filled with a artificial amended soil for 7 months. The results showed that the contents of heavy metals cadmium and lead in the shoot of Hosta longipes increased with increasing heavy metal concentration levels exception of zinc. The amount of zinc, cadmium, and lead accumulated in roots were increased with heavy metal concentration levels up in soil. The shoot/root ratios(TF; translocation factor) values were found to be more than 80% of total Zn, Cd, and Pb take up by Hosta longipes. These results indicated that root is the major part for accumulation of heavy metal. The removal contents of zinc, cadmium, and lead increased significantly with the increasing heavy metal concentration in the soil, which was planted with Hosta longipes. The heavy metal concentration accumulation in plant/soil ratios (BF; bioaccumulation factor) values for three metals were found to be more than 30% in cadmium and lead, but lower in zinc treatments. The different responses of Hosta longipes suggest that in heavy metal contaminated soils the plant adsorbs available metals depending on the concentration soils in which they are present. Therefore, this species can be an efficient phytoremediator for soils contaminated with cadmium and lead in urban shaded places.

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Development of Low Temperature Thermal Desorption System and Remediation of Soil Contaminated with Petroleum Hydrocarbon (열순환식 저온열탈착 정화장치의 개발 및 유류오염 토양 현장 적용)

  • Kim, Guk-Jin;Lee, Sun-Hwa;Park, Kwang-Jin;Kim, Chi-Kyung;Lee, Cheol-Hyo;Kim, Do-Sun;Cho, Seok-Hee;Chang, Youn-Young
    • Journal of Soil and Groundwater Environment
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    • v.13 no.4
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    • pp.62-68
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    • 2008
  • The Low Temperature Thermal Desorption (LTTD) System equipped with a soil transfer unit, a rotary kiln, RTO, cyclones and a bag filter etc. was developed. The LTTD system was designed to be economically operated using LPG as a fuel and recirculating the discharged gas from the LTTD system through RTO. For the performance test of LTTD system the soil contaminated with light and heavy oils (2,690 mg TPH/kg soil) and with particle sizes below 50 mm was fed into the rotary kiln of LTTD system at 7$m^3$/hr with retention time of 15 minutes. Operation temperatures of LTTD system for the removal of soil TPH were $567^{\circ}C$ and $692^{\circ}C$. The residual TPH after treatment was 46 mg/kg and 32mg/kg respectively at each temperature condition, which shows high TPH removal efficiencies of the developed LTTD as 98.3% and 98.9%.

The Fundamental Study on th e Soil Remediation for Copper Contaminated Soil using Nanobubble Water (나노버블수에 의한 구리 오염 토양의 정화에 관한 기초 연구)

  • Jeong, So-Hee;Kim, Dong-Chan;Han, Jung-Geun
    • Journal of the Korean Geosynthetics Society
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    • v.16 no.1
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    • pp.31-39
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    • 2017
  • The fundamental study for an application of nanobubble as a soil remediation enhancer on heavy metal contaminated soil was carried out. The existence and long-term stability of hydrogen nanobubbles were investigated by particle analysis and zeta-potential analysis. And the removal efficiency of copper using nanobubble water(NBW) and distilled water(DW) were compared and analyzed through a batch desorption test. As a result, it is confirmed that nanobubble which was fabricated by compression-dissolution type generator can exist for more than 14 days. The results of batch test show that copper removal of NBW was higher than that of DW irrespectively to soil type and increased as solid-liquid ratio and contact time increased, respectively. According to the pH change, the removal of copper on sand was higher on the acid side but the removal difference was slightly lower on the clay. It is considered that a high efficiency of NBW in copper removal is due to the large surface area and high zeta-potential of nanobubbles. Therefore, the nanobubble can be applied to soil remediation for heavy-metal contaminated soil as an eco-friendly enhancer.

A Field Study on the Enhancement of Landfarming Performance Using Oil-degradable Microbes Adapted to Various Temperature Range (생장 온도 범위별 최적의 유류분해 미생물을 이용한 토양경작 정화기술의 효율성 제고에 관한 현장 적용성 연구)

  • Yu, Jae-Bong;Kim, Jeong-Ho;Kim, Guk-Jin;Oh, Seung-Taek;Lee, Cheol-Hyo;Park, I-Kyong;Chang, Yoon-Young
    • Journal of Soil and Groundwater Environment
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    • v.14 no.5
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    • pp.10-17
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    • 2009
  • Bioremediation has been applied as a proven technology in remediation of TPH contaminated soil. However, the efficiency of biodegradation is dependent on temperature as microbial activity is depressed at lower temperature ranges ($30^{\circ}C{\sim}80^{\circ}C$). The objective of this study was to develop microbes with enhanced activities at the stated temperature conditions and to evaluate the remediation effectiveness of these microbes in TPH contaminated soil. Experiments were conducted to isolate hydrocarbon degradable microbial consortia cultured under different temperature conditions. It was found that there were 5 strains of mesophilic ($30^{\circ}C$) and 3 strains of psychrophilic ($80^{\circ}C$) microbes. The TPH concentration was reduced from 4,044 mg/kg to 1,084 mg/kg, (73.2%) in 10 days by using mesophilic microbial consortia and from 5,427 mg/kg to 1,756 (67.6%) in 50 days with psychrophilic microbial consortia in laboratory cultures under controlled conditions. This rate determination excluded physical degradation such as venting and dilution. A field study was then performed to examine the feasibility of applying these microbes in the land-farming process. In this case, 87.1% of the 2,560 mg/kg TPH contaminated soil was degraded in 56 days. The biodegradation rate coefficient (k) was $0.0374\;day^{-1}$. Findings of this study provide viable options for applying microbes for bioremediation of TPH in lower temperature conditions.