• Title/Summary/Keyword: 모래성토양

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The Change of Soil Physicochemical Properties by Mixture Ratio of Inorganic Soil Amendments (무기성 토양개량제들의 혼합비율에 따른 토양이화학성의 변화)

  • Kim, Young-Sun;Kim, Tack-Soo;Ham, Suon-Kyu
    • Asian Journal of Turfgrass Science
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    • v.23 no.2
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    • pp.271-278
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    • 2009
  • This study was conducted to investigate the effect of the mixture ratio of the inorganic soil amendments on the soil physicochemical properties. In this experiment, three kinds of soil amendments which had similar pH, EC and particle size, the A, B and C, were tested. The mixture ratio of soil amendment were 0%, 3%, 5%, 7% and 10% (V/V) incorporated with sand which met to the USGA(United State of Golf Association) particle standard. To analyze the effects of amendment on chemical soil properties, pH, EC(electrical conductivity) and CEC(cation exchangeable capacity) were measured. The porosity, bulk density and hydraulic conductivity also measured to analyze the changes of physical properties. In the chemical properties, pH was significantly related to the mixture ratios of amendments, A and C(P<0.05), CEC and EC also related to the ratios of C(P<0.01). When the results were applied to the USGA standard of the soil physical properties, the optimum mixture ratios of each amendment were 3% in A and B, and 7~10% in C. To analyze the corelation of mixture ratio versus to physical character, volume of porosity was significantly related to the ratio of B (P<0.05), and showed similar corelation in porosity and hydraulic conductivity with ratio of C(P<0.05). These results indicate that types and mixture ratio of inorganic soil amendments should affect on soil physio-chemical properties of root zone on USGA sand green.

An Experimental Study on Filtration Efficiency of Sand Filter Layers to TSS and COD in Non-point Source Pollutant (분산형 빗물 저류조용 모래 여과층을 적용한 도심지 비점오염원의 TSS와 COD 정화효율에 대한 실험적 연구)

  • Ahn, Jaeyoon;Lee, Dongseop;Han, Shinin;Choi, Hangseok
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.34 no.5
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    • pp.1477-1488
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    • 2014
  • Prevalent construction of impermeable pavements in urban areas causes diverse water-related environmental issues, such as lowering ground water levels and shortage of water supply for the living. In order to resolve such problems, a rainwater reservoir can be an effective and useful solution. The rainwater reservoir facilitates the hydrologic cycle in urban areas by temporarily retaining precipitation-runoff within a shallow subsurface layer for later use in a dry season. However, in order to use the stored water of precipitation-runoff, non-point source pollutants mostly retained in initial rainfall should be removed before being stored in the reservoir. Therefore, the purification system to filter out the non-point source pollutants is essential for the rainwater reservoir. The conventional soil filtration technology is well known to be able to capture non-point source pollutants in a economical and efficient way. This study adopted a sand filter layer (SFL) as a non-point source pollutant removal system in the rainwater reservoir, and conducted a series of lab-scale chamber tests and field tests to evaluate the pollutant removal efficiency and applicability of SFL. During the laboratory chamber experiments, three types of SFL with the different grain size characteristics were compared in the chamber with a dimension of $20cm{\times}30cm{\times}60cm$. To evaluate performance of the reservoir systems, the concentration of the polluted water in terms of TSS (Total Suspended Solids) and COD (Chemical Oxygen Demand) were measured and compared. In addition, a reduction in hydraulic conductivity of SFL due to pollutant clogging was indirectly estimated. The optimum SFL selected through the laboratory chamber experiments was verified on the in-situ rainwater reservoir for field applicability.

Experimental Study on Reduction Effects of Non-Point Pollutants by Improvement of Infiltration Capacity of Soil Filter Strip (토양여과대의 침투능 향상을 통한 비점오염물질 저감 효과에 관한 실험적 연구)

  • Woo, Su-Hye;Choi, I-Song;Oh, Jong-Min
    • Korean Journal of Ecology and Environment
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    • v.40 no.2
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    • pp.264-272
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    • 2007
  • Runoff of non-point pollutants has affected bad influence to water quality of river as reaching within short time. For this reason, reducing them prior to reaching aquatic systems or treating them after collection from discharge process of pollutants are desirable for efficient treatment of pollutants. This study was carried out to develop an ecotechnological method to prevent further aggravation of water quality by non-point source through vegetation filter strips. This study has placed a focus on improving infiltration capacity of soil for the optimum condition of vegetation filter strips. Therefore, we used titled soil filter strips instead of vegetation filter strips in this study. The three types of soil tilter strips were used in a bench scale experiment before applying to the field. The reduction efficiency of pollutants in soil filter strips (SS $84.5{\sim}92.5%$, BOD $67.9{\sim}80.6%$, T-N $43.4{\sim}76.6%$, T-P $40.6{\sim}87.4%$, Cu $28.3{\sim}48.1%$ Fe $92.1{\sim}97.7%$, Pb $81.4{\sim}97.3%$) was much higher than that of the controled group. And non-point pollutants reduction efficiency by soil filter strip's forms was estimated to be distinguishing in order of bio material, mixture of sand and gravel and lastly the whole gravel. In the event, the whole reduction efficiency of pollutants on the soil filter strips disclosed good results.

Effects of Grain Size on Relationship between Microtopographic Roughness and Soil Erosion Rate (토양 입경이 미세지형의 거칠기와 토양침식률 간의 관계에 미치는 영향)

  • Soyoung Kim;Dae-Hong Kim;Tae-young Sohn
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.216-216
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    • 2023
  • 가속적인 토양침식은 토지의 환경 및 생태계의 지속성에 부정적 영향을 미치므로, 그 양을 예측하여 토양침식을 방지하는 것은 중요하다. 이에 따라 식생, 지형, 토양의 입도분포 등과 같은 토양침식에 영향을 미치는 인자에 관한 연구가 꾸준히 이뤄지고 있다. 특히 자연 지형에서 보편적으로 나타나는 'cm' 규모의 미세지형이 토양침식에 미치는 영향을 분석한 기존 연구 결과를 살펴보면, 유역 출구 지점에서 관측된 총 유사유출량에만 근거하고 있을 뿐 아니라 토양침식에 미치는 미세지형의 영향에 관한 상반된 결과가 혼재하고 있다. 이는 유역의 토양침식과정에 대한 이해도와 토양침식량에 대한 예측 정확도를 저하시킬 우려가 있으므로 미세지형이 토양침식에 미치는 영향을 유역 전반에 걸쳐 살펴본 후, 명확하게 하는 것이 필요하다. 본 연구에서는 동역학파 모형에 기반한 침식 모형을 이용하여 미세지형에서의 강우-유출 및 토사 입자별 침식 및 유출 현상을 수치적으로 모의하였다. 모의 결과에 따르면, 동일한 강우-유출 조건에서도 미세지형의 거칠기에 따라 유역의 토양침식량 및 침식 특성이 달라질 수 있으며, 토양 입경이 미세지형의 거칠기에 따른 유사유출량의 증감 현상을 결정하는 데에 있어 중요한 요소로 작용함을 제시하였다. 미세지형이 거칠어짐에 따라 비교적 굵은 입자인 모래 함량이 높은 지반에서는 토양침식률이 감소하였으나 이와 대조적으로 미세토사 함량이 높은 지반에서는 토양침식률이 증가하였다. 이는 미세지형이 유역 전반에 걸쳐 입경에 따른 토사의 부상, 이류 및 퇴적 특성에 영향을 미쳐, 유역의 유사 분급 및 장갑화 현상에 깊게 관여하였기 때문이다. 본 연구를 통해 토양유실에 미치는 미세지형의 영향에 관한 상반된 연구 결과를 미세지형과 토양 입경분포의 상호작용으로 설명할 수 있다. 따라서, 본 연구는 유역 내 미세지형적 거칠기 입경분포에 대한 정확한 정보에 기반하여 토양의 유실량 및 침식량을 산정해야 함을 강조한다.

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Bio-barrier Formation by Biomass Injection into Soil (미생물 토양 주입을 통한 Bio-barrier 형성)

  • Kim, Geon-Ha;Song, Youngwoo;Gu, Dongyoung
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.5
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    • pp.927-938
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    • 2000
  • When microorganism is injected into porous medium such as soils along with appropriate substrate and nutrients, biomass retained in the soil pore. Soil pore size and shape are varied from the initial condition as a result of biofilm formation, which make hydraulic conductivity reduced. In this research, hydraulic conductivity reduction was measured after microorganism are inoculated and cultured with synthetic substrates and nutrients. Biomass-soil mixture was evaluated its applicability to the field condition as an alternative liner material in landfill by measuring hydraulic conductivity change after repetitive freeze-thaw cycles. Resistance of biofilm to chemical solution and degree of biodegradation were measured through column test.

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Interpreting Soil Tests for Turfgrass (잔디 토양 분석의 해석)

  • Christians, Nick;Joo, Young-Kyoo;Lee, Jeong-Ho
    • Asian Journal of Turfgrass Science
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    • v.20 no.2
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    • pp.223-235
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    • 2006
  • Soil testing laboratories unfamiliar with turfgrasses will often overestimate the plant's need for phosphorus and underestimate the need for potassium. This is partly due to differences in rooting between grasses and many garden plants and crops. The grasses are generally more efficient in extracting phosphorus from the soil, reducing their need for phosphorus fertilizer. The fact that crop yield is often the primary objective in field crop production, and is usually of little interest in turfgrass management, may affect soil test interpretation for potassium. Potassium levels above those required for maximum tissue yield of grasses may improve stress tolerance and turfgrasses will usually benefit from higher applications of this element. There are also diffrrences in soil testing philosophies. Some laboratories use the sufficiency level of available nutrients(SLAN) approach, whereas others prefer the basic cation saturation ratio(BCSR) approach. Some will use a combination of the two methods. The use of the BCSR theory easily lends itself to abuse and questionable fertilizer applications and products are sometimes recommended citing imbalances in cation ratios. The usefulness of the BCSR ratio theory of soil testing varies with soil texture and interpretations on tests performed on sand-based media are particularly a problem. Other soil testing problems occur when sand-based media used on sports fields and golf greens contain free calcium carbonate. The ammonium acetate extractant at pH 7.0 dissolves excessive amounts of calcium that can bias cation exchange capacity measurements and measurements of cation ratios. Adjusting the pH of the extractant to 8.1 can improve the accuracy of the testing procedure for calcareous media.

A Distribution of Keratinophilic Fungi Isolated from the Soil of Haeundae Beach in Korea (부산 해운대 백사장에서 분리한 각질친화성 피부사상균의 분포)

  • Kim, Sojin;Kim, Su Jung
    • Korean Journal of Clinical Laboratory Science
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    • v.48 no.4
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    • pp.343-347
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    • 2016
  • Keratinophilic fungus (KPF), a type of dermatophytes, is usually present as normal flora on the skin of humans and animals but can produce ring worm-like dermatophytosis by invading the skin in infected individuals. They are distributed worldwide, but their occurrences vary distinctively in accordance with the geographical location and environmental change. Because these fungi grow by degrading keratin, they are abundantly found on the skin, hair, and nails, which are rich in keratin. To investigate the presence of keratinophilic fungi in the soil, we selected a popular beach in South Korea, Haeundae Beach, where numerous people gather each year during the summer holidays. Hundred soil samples were analyzed using the hair-baiting technique, among which, a total of 23 colonies of KPF were identified from 21 soil samples. The identified KPF were Microsporum gypseum (43%), Chrysosporium spp. (35%), Trichophyton ajelloi (13%), and Microsporum cookie (9%). This study confirmed that pathogenic fungi can be found in places crowded by many people. Further research and continuous data collection are needed to confirm the distribution of pathogenic KPF.

Study of Surfactant Enhanced Remediation Methods for Organic Pollutant(NAPL) Distributed over the Heterogeneous Medium (계면활성제를 이용한 불균질 매질에서 유기오염물(NAPL)의 정화효율에 관한 실험)

  • 서형기;이민희;정상용
    • Journal of Soil and Groundwater Environment
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    • v.6 no.4
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    • pp.51-59
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    • 2001
  • Column and box tests were performed to investigate the removal efficiency of NAPL using the surfactant enhanced flushing In heterogeneous medium. Homogeneous Ottawa sand and heterogeneous soil were used to verify the increase of remediation efficiency for the surfactant enhanced flushing in column test. Box tests with two different heterogeneous sub-structure were performed to quantify the capability of the surfactant enhanced flushing as a remediation method to remove NAPL from the heterogeneous medium. Two different grain size sand layers were repeated in the box to simulate the heterogeneous layer formation and the modified fault structure was built to simulate the fault system in the box. O-xylene as a LNAPL and PCE as a DNAPL were used and oleamide as a non-ionic surfactant. The maximum NAPL effluent concentration with 1% oleamide flushing in the homogeneous column test increased about 460 times compared to that with only water flushing and about 250 times increased in the real soil column test. In heterogeneous medium, the maximum effluent concentration increased about 150 times in 1% oleamide flushing and most of NAPL were removed from the box within 8 pore volume flushing, suggesting that the removal efficiency increased very much compared to in only water flushing. Results investigated the capability of the surfactant enhanced remediation method to remove NAPL even in heterogeneous medium.

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Stable Macro-aggregate in Wet Sieving and Soil Properties (습식체별에 안정한 대입단과 토양특성과의 관계)

  • Han, Kyung-Hwa;Cho, Hyun-Jun;Lee, Hyub-Sung;Oh, Dong-Shig;Kim, Lee-Yul
    • Korean Journal of Soil Science and Fertilizer
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    • v.40 no.4
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    • pp.255-261
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    • 2007
  • Soil aggregates, resulting from physico-chemical and biological interactions, are important to understand carbon dynamics and material transport in soils. The objective of this study is to investigate stable macro-aggregate (> 0.25mm diameter) in wet sieving (SM) and their relation to soil properties in 15 sites. The clay contents of soils were ranged from 1% to 33%, and their land uses included bare and cultivated lands of annual upland crops, orchard, and grass. Undisturbed 3 inch cores with five replicates were sampled at topsoil (i.e., 0- to 10-cm depth), for analyzing SM and physico-chemical properties, after in situ measurement of air permeability. SM of sandy soils, with clay content less than 2%, was observed as 0%. Except the sandy soils, SM of soils mainly depended on land uses, showing 27%~35% in soils with annual plants such as vegetable and corn, 51% in orchard, and 75% in grass. This sequence of SM is probably due to the different strength of soil disturbance like tillage with different land uses. SM had significant correlation with cation exchange capacity, organic matter content, sand, clay, silt, bulk density, and exchangeable potassium (K) and magnesium (Mg), whereas fluctuating properties with fertilization such as pH, EC, and water soluble phosphorus weren't significantly correlated to the SM. Particularly, exchangeable calcium (Ca) had significant relation with SM, only except soils with oversaturating Ca. This study, therefore, suggested that SM could perceive different land uses and the change of soil properties in soils, necessarily considering soil textures and Ca over-saturation.

A Study on Transport Characteristics of CMC-modified Zero Valent Iron (ZVI) Nanoparticles in Porous Media (다공성 매질내에서 CMC로 표면개질된 영가철 나노입자의 이동 특성에 관한 연구)

  • Cho, Yun-Chul;Choi, Sang-Il
    • Journal of Soil and Groundwater Environment
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    • v.14 no.6
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    • pp.101-107
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    • 2009
  • Carboxymethyl cellulose (CMC) as stabilizer is expected to facilitate in-situ delivery of zero-valent iron (ZVI) nanoparticles in a contaminated aquifer because it increases dispersity of ZVI nanoparticles. This work investigated the transport of CMC-stabilized ZVI nanoparticles (CMC-Fe) using column breakthrough experiments. The ZVI nanoparticles (100 mg/L Fe) were transportable through sand porous media. In contrast, non-stabilized ZVI nanoparticles rapidly agglomerate in solution and are stopped in sand porous media. At pH 7 of solution approximately 80% CMC-Fe were eluted. When the pH of solution is below 5, 100% CMC-Fe were eluted. These results suggest that the mobility of CMCFe was increased as pH decreases. In the mobility test under different ionic strengths using $Na^+$ and $Ca^{2+}$ ions, there was no signigficant difference in the mobility of CMC-Fe. Also, in the experiments of effect of clay and natural organic mater (NOM) on the mobility of ZVI, there was no significant difference in the mobility of CMC-Fe not only between 1 and 5% clay, but 100 and 1000 mg/L NOM. The results from this work suggests that the CMC-Fe nanoparticles could be easily delivered into the subsurface over a broad range of ionic strength, clay and NOM.