• Title/Summary/Keyword: and lysimeter

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Releasing a Genetically Engineered Microorganism for Bioremediation

  • Sayler, Gary;Burlage, Robert;Cox, Chris;Nivens, David;Ripp, Steven;Ahn, Yeonghee;Easter, Jim;Wrner, Claudia;Jarrell, John
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2000.11a
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    • pp.153-162
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    • 2000
  • A field study was performed to test effectiveness of a bloluminescent genetically engineered microorganism (GEM) for bioremediation process monitoring and control. The study employed Pseudomonas fluorescens HK44 that was the first strain approved for field application in the U.S. for bioremediation purposes. HK44 contains lux gene fused within a naphthalene degradative pathway, allowing this GEM to bioluminesce as it degrades naphthalene as well as substituted naphthalenes and other polycyclic aromatic hydrocarbons (PAHs) , Results showed that HK44 was maintained in both PAH-contarninated and uncontaminated soils even 660 days after inoculation. HK44 was able to produce bioluminescence in response to PAHs in soil. Although effectiveness of chemical remediation was not assessed due to heterogeneous distribution of contaminants, decreased concentration of naphthalene was shown in the soils, Taken together, HK44 was useful for in situ bioremediation process monitoring and control. This work is so far the only field release of a GEM for bioremediation purposes.

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Rainfall Erosion Factor for Estimating Soil Loss (토양유실량 여측(予測)을 위한 강우인자(降雨因子)의 분석(分析))

  • Jung, Pil-Kyun;Ko, Mun-Hwan;Im, Jeong-Nam;Um, Ki-Tae;Choi, Dae-Ung
    • Korean Journal of Soil Science and Fertilizer
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    • v.16 no.2
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    • pp.112-118
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    • 1983
  • Rainfall factor (R-factor), which is an index for the prediction of soil erosion in the Universal Soil Loss Equation (USLE), was computed from 21 years rainfall data at 51 locations in Korea. The values of R-factor are from 200 to 300 in the eastern part, and 300 to 700 in the western and southern part of the peninsula. Curvilinear regressions exist between annual rainfall and annual R-factor or between monthly rainfall and monthly R-factor. The R-factor can be estimated from the regression equation as a function of the amount of rainfall. According to the comparison between the actual soil loss measured by lysimeter and the soil loss predicted by the USLE, EI 30 for R-factor was recognized as a suitable factor for the USLE in korea.

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The Effect of Final Cover Installation on the Waste Landfill Stabilization (차단형 최종복토층 설치가 폐기물 매립지 안정화에 미치는 영향)

  • Yoon, Seok-Pyo;Jung, Jinmo;Wei, Jieling
    • Journal of the Korea Organic Resources Recycling Association
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    • v.25 no.2
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    • pp.33-40
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    • 2017
  • In Korea, it is required to install the final cover layer immediately after the end of use of the waste landfill, and to conduct aftercare for 30 years. However, the installation of the final cover layer minimizing the penetration of the rainfall will delay the decomposition of the buried organic wastes and reduce the amount of pollutants released into the leachate. Therefore, at the end of the aftercare period, pollutants might be discharged and cause the pollution of the surrounding environment. In this study, using lab-scale lysimeters, the amount of pollutants discharged into the leachate was observed. At the initial stage, same artificial rainfall was injected, and after 7 months later, different reduced artificial rainfall was injected for 8.4 months assuming as the final soil layer was installed. From the results, it was advantageous in terms of environmental management after the end of the aftercare period to install a temporary cover layer that permits the infiltration of rainfall to some extent rather than to install the final cover layer immediately after the end of use of the waste landfill.

Development of Estimating Method for Areal Evapotranspiration using Satellite Data (인공위성 자료를 활용한 광역증발산량의 산정방법 개발)

  • Shin, Sha-Chul;An, Tae-Young
    • Journal of the Korean Association of Geographic Information Studies
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    • v.10 no.2
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    • pp.71-81
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    • 2007
  • One of the most important hydrologic components is evapotranspiration. It is a process by which water is evaporated from moist land surfaces and transpired into atmosphere by plants. There are many methods of estimating evapotranspiration rate and its potential such as the methods of soil-moisture sampling, lysimeter measurements, water balance, energy balance, groundwater fluctuations and evapotranspiration. But it is very difficult to estimate evapotranspiration in terms of regional discrete characteristics of topography and/or vegetation. The evapotranspiration is strongly affected by ground covering vegetation, and the degree of vegetation growth. In order to grasp vegetation condition over a vast study area, NDVI (Normalized Difference Vegetation Indices) calculated from the data obtained from NOAA/AVHRR were utilized. Through multi-regression analysis, we developed a model equation to estimate the evapotranspiration using NDVIs and temperature data.

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Water Requirement of Red Pepper Cultivated in House (시설재배 고추의 생육시기별 물요구량 산정)

  • Eom, Ki-Cheol;Jung, Pil-Kyun;Choi, Sung-Ho;Kim, Tae-Wan;Yoo, Sung-Yung;Park, So-Hyun;Hur, Seung-Oh;Ha, Sang-Keun
    • Korean Journal of Soil Science and Fertilizer
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    • v.43 no.6
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    • pp.848-851
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    • 2010
  • The essential factor for house cultivation is water management. Water requirement of crop is the most important for the water management. The water requirement of crop is different according to the area as well as climate condition and growth stage. However, the measurement of PET (Potential Evapo-Transpiration) and crop coefficient (Kc) is very difficult especially in house cultivation. Therefore, the PET and Kc of red pepper are estimated based on the lysimeter experiments carried out by the RDA for 11 years about the ratio of house cultivation to wild cultivation. Periodic PET, mean water requirement (MWR) and accumulated water requirement (AWR) of red pepper cultivated in house are evaluated.

Water Saving Irrigation Manual of Spring Chinese Cabbage (봄배추의 물 절약형 관개기준 설정)

  • Eom, Ki-Cheol;Jung, Pil-Kyun;Koh, Mun-Hwan;Kim, Sang-Hee;Yoo, Sung-Yung;Park, So-Hyun;Hur, Seung-Oh;Ha, Sang-Keun
    • Korean Journal of Soil Science and Fertilizer
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    • v.43 no.6
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    • pp.812-822
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    • 2010
  • Water management is the most important and difficult problems in crop cultivation. The farmers are doing irrigation, those when to irrigate and how much to irrigate, depending on their experiences. The irrigation manual as water saving is possible, those irrigation interval and amount of irrigation, are developed based on the lysimeter experiments carried out by the RDA for 11 years about potential evapotranspiration, crop coefficient. The manual can be used with easy to the farmer without soil sampling and any kinds of sensors measuring soil water status.

Effects of Vegetative Buffers on Reducing Soil Erosion and Nutrient Loss of Highland Field in Korea (고랭지밭의 토양침식 저감을 위한 완충식생대의 효과)

  • Jin, Yong-Ik;Lee, Jeong-Tae;Lee, Gye-Jun;Hwang, Seon-Woong;Zhang, Yong-Seon;Park, Chang-Young;Seo, Myung-Chul;Ryu, Jong-Soo;Jeong, Jin-Cheol;Chung, Ill-Min
    • Korean Journal of Soil Science and Fertilizer
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    • v.42 no.4
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    • pp.231-238
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    • 2009
  • This study was carried out to investigate the effect of vegetative buffer to reduce runoff and soil and nutrient loss at highland agricultural area. The soil of experimental field was classified as Ungyo series (Fine, Humic Hapludults). An area of each field with lysimeter was $50m^2(width\;2.5m{\times}length\;20m)$ and was a gradient of 17%. Chinese cabbage (Brassica campestris L.) was cultivated by general management in each field. For establishing vegetative buffer, rye (Secalecereale L.), tall fescue (Festucaarundinacea Schreb) and orchard grass (Dactylis glomerata L.) were planted at the edge of field. Rye buffers were 1m, 2m and 4m wide. Both orchard grass and tall fescue buffers were 2m wide. Vegetative buffers were set up in September 2005 and chinese cabbage was planted in June 2006. Soil loss, runoff and nutrient loss were measured from June to August in 2006. Since the precipitation amount was heavy in July, amounts of runoff, soil erosion and nutrient loss were the highest in July during this study period. In comparison with control, vegetative buffers of rye 2m, orchard grass 2m and tall fescue 2m reduced runoff by 3%, 1% and 2%, respectively. In comparison among width of rye buffer, rye 1m, rye 2m, and rye 4m reduced by 1%, 4% and 13%, respectively. Vegetative buffers of rye 2m, orchard grass 2m and tall fescue 2m showed the reducing of soil loss by 59%, 46% and 28%, respectively. In comparison among width of rye buffer, the highest reducing effect of 88% was observed in 4m treatment. Additionally, vegetative buffer reduced N, P and K losses in runoff and eroded soil which were 10 to 54%, 7 to 24% and 11 to 21%, respectively. In different widths, wider vegetative buffer showed lower loss of N, P and K in runoff and eroded soil. As a result of this study, the vegetative buffer of rye was most effective for reducing runoff and soil loss in comparisons with other plants. In addition, wider range of buffers recommended for reducing runoff and soil loss, if possible.

Effect of Dry Fog Injection on Waste Decomposition in an Aerobic Landfill (호기성매립지에서 드라이포그 주입에 의한 폐기물분해 촉진에 관한 연구)

  • Park, Jin-Kyu;Lee, Byung-Sun;Yoon, Seok-Pyo;Lee, Nam-Hoon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.26 no.2
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    • pp.43-51
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    • 2018
  • The objective of this research was to assess the effect of moisture content and water injection method into the landfill on waste decomposition in an aerobic landfill. Firstly, respirometric experiments were performed in order to assess the effect of initial moisture content (20%, 30%, 40% and 50% respectively) on landfilled waste decomposition. The cumulative oxygen uptake and oxygen uptake rate were highly increased with the increase of initial moisture content. Secondly, lysimeter experiments showed that in comparison with the vertical injection method, dry fog system enhanced decomposition of organic wastes. Also, dry fog system provided uniform moisture distribution more than the vertical injection method within landfill.

Water Saving Irrigation Manual of Autumn Chinese Cabbage (가을배추의 물 절약형 관개기준 설정)

  • Jung, Pil-Kyun;Eom, Ki-Cheol;Son, Yeon-Ku;Koh, Mun-Hwan;Kim, Sang-Hee;Park, So-Hyun;Yoo, Sung-Yung
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.5
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    • pp.679-687
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    • 2011
  • The water management of crop is different according to the area as well as climate condition and growth stage, however it is the most important and difficult problems for the farmers. The optimum irrigation manual those irrigation interval and amount of irrigation as water saving, are developed based on the lysimeter experiments carried out by the RDA for 11 years about PET (Potential Evapo-Transpiration), crop coefficient (Kc). The average PET (Potential Evapo-Transpiration) during 30 years of 45 regions for the autumn chinese cabbage cultivation was a $2.17mm\;day^{-1}$.

Actual Evapotranspiration of Sesame Crop Cultured With and Without Transparent Plastic Film Mulch (투명(透明) 프라스틱 필름 피복(被覆)에 따른 참깨의 실증발산량(實蒸發散量) 변화(變化))

  • Oh, Dong-Shin;Kwon, Yong-Woong;Im, Jung-Nam;Ryu, Kwan-Shig
    • Korean Journal of Soil Science and Fertilizer
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    • v.29 no.1
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    • pp.34-43
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    • 1996
  • Determining the actual evapotranspiration(ETa) of a crop, and appropriate water management of the crop based on the ETa are very important For increasing the yield. The present study aimed at determining ETa and crop coefficient of sesame growing under different climatic conditions with the transparent thin polyethylene film mulch(0.03 mm thick) and without this mulch. Bottomless cylindrical lysimeters(105cm in diameter, 120cm in height, protruded 20 cm above the soil surface) were installed on the field of sandy loam "Bonyang series" soil with a moderate drainage. The determination of ETa was performed by measuring each component of a model equation, $ETa=(R+I)-\{Ro+(D1+D2)\}+C{\pm}{\Delta}S$. Sesame, cv. "Ansan" was sown in two rows with the spacing of $50{\times}15cm$ on May 10 in 1991 and 1992. The mulching covers 80% of the soil surface. Sesame consumed the water of 139.0 mm(1.53 mm/day) and 171.2 mm(1.59 mm/day) in ETa without the film mulch, but that of 132.6 mm(1.46 mm/day) and 199.8 mm(1.85 mm/day) with its mulching through both years of 1991 and 1992, respectively. The ETa's accounted for 52 and 69% of the potential evapotranspiration(ETp) in the mulched crop, and 54 and 59% of ETp in the non-mulched crop 1991 through 1992, respectively. Its ETa's were much more and their gap between the mulching and non-mulching treatment was larger in 1992 than in 1991 as a result of the better climatic condition of 1992.

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