• 제목/요약/키워드: Yellow Soil Water

검색결과 71건 처리시간 0.026초

Roles of Ascospores and Arthroconidia of Xylogone ganodermophthora in Development of Yellow Rot in Cultivated Mushroom, Ganoderma lucidum

  • Kang, Hyo-Jung;Chang, Who-Bong;Yun, Sung-Hwan;Lee, Yin-Won
    • The Plant Pathology Journal
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    • 제27권2호
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    • pp.138-147
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    • 2011
  • Xylogone ganodermophthora, an ascomycetous fungus, is known to cause yellow rot in the cultivated mushroom Ganoderma lucidum. In this study, we investigated the dissemination of this fungal pathogen in G. lucidum grown in cultivation houses. To determine the role of ascospores produced by X. ganodermophthora in disease development, we constructed a green fluorescent protein-labeled transgenic strain. This X. ganodermophthora strain produced a number of ascomata in the tissues of oak logs on which G. lucidum had been grown and on the mushroom fruit bodies. However, the ascospores released from the ascomata were not able to germinate on water agar or potato dextrose agar. Moreover, less than 0.1% of the ascospores showed green fluorescence, indicating that most ascospores of X. ganodermophthora were not viable. To determine the manner in which X. ganodermophthora disseminates, diseased oak logs were either buried in isolated soil beds as soil-borne inocula or placed around soil beds as air-borne inocula. In addition, culture bottles in which G. lucidum mycelia had been grown were placed on each floor of a five-floor shelf near X. ganodermophthora inocula. One year after cultivation, yellow rot occurred in almost all of the oak logs in the soil beds, including those in beds without soil-borne inocula. In contrast, none of the G. lucidum in the culture bottles was infected, suggesting that dissemination of X. ganodermophthora can occur via the cultivation soil.

Study on mechanical properties of Yellow River silt solidified by MICP technology

  • Yuke, Wang;Rui, Jiang;Gan, Wang;Meiju, Jiao
    • Geomechanics and Engineering
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    • 제32권3호
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    • pp.347-359
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    • 2023
  • With the development of infrastructure, there is a critical shortage of filling materials all over the word. However, a large amount of silt accumulated in the lower reaches of the Yellow River is treated as waste every year, which will cause environmental pollution and waste of resources. Microbial induced calcium carbonate precipitation (MICP) technology, with the advantage of efficient, economical and environmentally friendly protection, is selected to solidify the abandoned Yellow River silt with poor mechanical properties into high-quality filling material in this paper. Based on unconfined compressive strength (UCS) test, determination of calcium carbonate (CaCO3) content and scanning electron microscope (SEM) test, the effects of cementation solution concentration, treatment times and relative density on the solidification effect were studied. The results show that the loose silt particles can be effectively solidified together into filling material with excellent mechanical properties through MICP technology. The concentration of cementation solution have a significant impact on the solidification effect, and the reasonable concentration of cementation solution is 1.5 mol/L. With the increase of treatment times, the pores in the soil are filled with CaCO3, and the UCS of the specimens after 10 times of treatment can reach 2.5 MPa with a relatively high CaCO3 content of 26%. With the improvement of treatment degree, the influence of relative density on the UCS increases gradually. Microscopic analysis revealed that after MICP reinforcement, CaCO3 adhered to the surface of soil particles and cemented with each other to form a dense structure.

Dynamic Changes of Newly formed Wetlands in the Yellow River Mouth Based on GIS and Remote Sensing

  • Zhao, Gengxing;Shi, Yanxi;Chen, Weifeng;Li, Jing;Ann, Seoung-won;Kim, Young-chil;Jung, Jea-hoon;Chae, Soo-Cheon
    • 한국환경과학회지
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    • 제12권2호
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    • pp.133-137
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    • 2003
  • The Yellow River delta is an important region where coastal and newly formed wetlands distribute in north China. Based on satellite remote sensing images and GIS techniques, this paper tends to delineate the dynamic changes of newly formed wetland in the Yellow River mouth from 1986.5 to 1996.10. Our results show that the newly formed wetland increased by 24.9 $\textrm{km}^2$ per year. Before 1990. 1 and it decreased by 2.40 $\textrm{km}^2$ per year after that. The northern and southwestern parts of the Yellow River mouth are main positions of decrease and the southern and the estuary parts are main positions of increase. The advancing rate of river mouth extending into the Bo Sea is decreasing obviously. The reason for that is the decreasing of water and sediments in the Yellow River, which caused by the increasing use of water and soil conservation on upper reach.

한반도 서해안 배경지역 미세입자의 화학적 특성 연구 (Study on the Chemical Characteristics of $PM_{10}$ at Background Area in Korean Peninsula)

  • 방소영;백광욱;정진도;남재철
    • 한국환경보건학회지
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    • 제30권5호
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    • pp.455-468
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    • 2004
  • The purpose of this paper is to understand the time series and origin of a chemical component and to compare the difference during yellow sand episodes for analysis $PM_{10}$ chemical components in the region of west in Korean Peninsula, 1999-2001. An annual mean concentration of $PM_{10}$ is $29.1\;{\mu}g/m^3$. A monthly mean and standard deviation of $PM_{10}$ concentration are very high in spring but there is no remarkably seasonal variation. Also, water soluble ionic component of $PM_{10}$ be influenced by double more total anion than total cation, be included $NO_{3}^-\;and\;SO_{4}^{2-}$ for the source of acidity and $NH_{4}^+$ to neutralize. Tracer metals of $PM_{10}$ slowly increases caused by emitted for soil and ocean (Fe, Al, Ca, Mg, Na) and Zn, Pb, Cu, Mn for anthropogenic source. According to method of enrichment factor (E.F) and statistics, assuming that the origin of metal component in $PM_{10}$ most of element in the Earth's crust e.g. Mg, Ca, Fe originates soil and Cu, Zn, Cd, Pb derives from anthropogenic sources. The ionic component for $Na^{+}\;Cl^-,\;Mg^{2+}\;and\;Ca^{2+}$ and Mg, Al, Ca, Fe originated by soil component largely increase during yellow sand period and then tracer metal component as Pb, Cd, Zn decrease. According to factor analysis, the first group is ionic component ($Na^+,\;Mg^{2+},\;Ca^{2+}$) and metal component (Na, Fe, Mn and Ni) be influenced by soil. The second group, Mg, Cr also be influenced by soil particle.

산성암(酸性岩) 및 중성암(中性岩)의 잔적층에 발달(發達)된 적황색토(赤黃色土)의 생성(生成) 및 분류(分類) -제(第) 1 보(報) (전남통(全南統)에 관(關)하여) (Genesis and Classification of the Red-Yellow Podzolic soils derived from Residuum on Acidic and Intermediate Rocks -Vol. 1 (Jeonnam series))

  • 엄기태
    • 한국토양비료학회지
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    • 제4권2호
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    • pp.187-192
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    • 1971
  • 산성암(酸性岩)인 화강암(花崗岩)의 풍화잔적층(風化殘積層)을 모재(母材)로한 전남통(全南統)에 대(對)한 형태(形態), 물리적(物理的), 화학적(化學的) 및 생성(生成)과 분류(分類)에 관(關)하여 조사(調査)한 결과(結果)를 요약(要約)하면 다음과 같다. 1. 형태적특성(形態的特性)에 있어서 표토(表土)는 갈색(褐色) 내지(乃至) 암갈색(暗褐色)의 미사질양토(微砂質壤土) 내지(乃至) 토양(土壤)이나 침식(侵蝕)을 받은 곳에서는 진갈색(眞褐色) 내지(乃至) 황적색(黃赤色)의 미사질식양토(微砂質埴壤土) 또는 식양토(埴壤土)이다. 심토(心土)는 황적색(黃赤色) 내지(乃至) 적색(赤色)의 미사질식양토(微砂質埴壤土) 내지(乃至) 미사질식토(微砂質埴土)로서 구조표면(構造表面)에 엷은 점토막(粘土膜)이 형성(形成)되여 있다. 기층(基層)은 심(甚)하게 풍화(風化)된 화강암(花崗岩)의 잔적모재(殘積母材)이며 토양(土壤)의 깊이는 매우 깊다. 2. 물리적(物理的) 특성(特性)에서 토양입자(土壤粒子)의 분포비율(分布比率)은 표토(表土)에서 심토(心土)로 내려 갈수록 점토(粘土)의 함량(含量)이 증가(增加)되어 심토(心土)의 중앙부분(中央部分)이 34-45% 이며 특(特)히 미사(微砂)의 함량(含量)은 50~60%로서 표토(表土) 및 심토(心土)의 차이(差異)는 별(別)로 없다. 3. 화학적(化學的) 성질(性質)은 유기물(有機物) 함량(含量)이 낮고 토양반응(土壤反應)이 강산성(强酸性)이며 염기포화도(鹽基飽和度)가 낮다. 4. 전남통(全南統)은 온난(溫暖) 습윤(濕潤)한 기후조건하(氣候條件下)에서 생성(生成)되며 분류(分類)에 있어 미농무성(美農務省) 7차시안(次試案)에 의(依)하면 Typic Hapludults, UNESCO/FAO의 분류(分類)에 의(依)하면 Helvic Acrisols에 속(屬)한다.

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흙 지붕 경사면의 혼합종자 파종에 의한 식생분포 연구 (A Study of Vegetation Distribution due to Mixed Seeding on a Slanted, Soiled Roof)

  • 정동양
    • 한국환경복원기술학회지
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    • 제12권5호
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    • pp.110-120
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    • 2009
  • The hipped roof on the research building, which was constructed 51.9m above sea level on a hillock by Korea National University of Education in June 1999, is composed of four inclined planes which are 12m in breadth, 8m in length and have a 30 degree gradient. For the roof vegetation, the yellow earth collected from around the building was laid on top. It was designed to supply the soil on the slope with water for a considerable period by making rainfall pool at the edges. In order to prevent the soil on the slope from being swept away, 31 sorts of grass seeds were imported from Germany and sown in the soil. At the present day, 10 years after the seeds began to sprout and inhabit the settled slope, 30 individual plant species were identified in the period between April 2008 and March 2009. Out of 31 species were seeded on the slanted, soiled roof, only 8 were still alive. It was confirmed that the Artemisia Princeps var, Chrysantheum, Prunella Vulgaris and Lespedeza Cuneata have been the major species inhabiting the east, west, south and north inclined planes respectively. The Phragmites Communis was inhabiting the edge of the roof where the water supply was adequate, while the Dianthus Barbatus was primarily inhabiting the south-east side of the roof. As a whole, 26 identifiable plants and 4 unidentified plants were observed on the inclined planes of the hipped roof. In consideration of the plant distribution on the slope, it was confirmed that the selection of seeds may have had an effect on the slope vegetation. As for the yellow earth laid on the roof, it was discovered that about 2~3cm thickness around the ridge was swept away, but the rest of the slope was in relatively good condition. Accordingly, it has been proven that vegetations can be applied to hipped roofs by using ordinary plants without any special structural measures.

금강 하구에 나타나는 황색 수색대의 환경특성 (Environmental Characteristics of the Yellow Water Zones in the Estuary of Keum River)

  • 유병철;유선재;조주환
    • 한국수산과학회지
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    • 제27권1호
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    • pp.97-105
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    • 1994
  • 금강 하구에서 관찰되는 황색 수색대의 발생 원인과 성상을 규명하기 위하여 92년 5월, 7월, 8월, 10월, 93년 2월 금강 하구해역 18개 정점에서 행한 연구 조사 결과를 요약하면 금강 하구 해역에 나타나는 황색 수색대의 수색은 수색계급 9에 해당되며 보통 조사점 1, 2, 3, 4, 5, 7, 8, 9, 13, 14, 15 및 17에서 연중 계속 존재하였다. 금강하구 해역의 일반수질은 해역환경기준 I 등급에 해당하는 양호한 상태이나 유기오염물은 증가되고 있으며 영양염 농도는 황색 수색대 안쪽 해역이 바깥쪽 해역보다 높은데 총무기질소 안쪽 해역에서 보면 총무기질소는 해역환경기준 III등급을 초과하였고 인산인 농도는 III등급이었으며 바깥쪽 해역에서는 총무기질소 농도와 인산인 농도 모두 II등급에 해당하는 부영양 상태였다. 그러나 금강하구 해역은 유속이 빠르고 총부유물질로 인한 광투과 저하 때문에 식물성 프랑크톤의 대량증식에는 부적합한 지역이었다. 또한, 금강하구 해역에 나타나는 황색 수색대의 형성 원인 총부유물질 중 $85\%$ 이상을 점유하는 토사때문이었다.

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CIELAB 색 표시계 기반 토색을 활용한 불포화토 함수비 예측 연구 (Predicting Unsaturated Soil Water Content Using CIELAB Color System-based Soil Color)

  • 백성하;박가현;전준서;곽태영
    • 한국지반공학회논문집
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    • 제39권2호
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    • pp.31-42
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    • 2023
  • 본 연구는 흙의 디지털 이미지로부터 획득된 토색을 기반으로 함수비를 예측하기 위한 기초단계로서 수행되었다. 서로 다른 다섯 가지 함수비로 조성된 주문진표준사 시료를 대상으로 광조건을 아홉 번 씩 바꿔가며 디지털 이미지를 촬영했다. 디지털 이미지 프로세싱을 통해 촬영된 시료의 토색을 CIELAB 색 표시계를 기반으로 획득하고, 광조건과 함수비에 따른 토색 변화를 분석했다. 그 결과, 불포화토의 토색 L* 값은 조명의 조도와 높은 상관성을 보였고 a*와 b* 값은 조명의 색온도와 높은 상관성을 보였다. 또한 함수비가 증가하면 토색의 밝기를 나타내는 L*가 감소하고, a*와 b*는 증가하여 토색이 초록과 파랑에서 멀어지고 빨강과 노랑에 가까워졌다. 광조건 및 함수비와 토색의 회귀분석 결과를 종합해 불규칙한 광조건에서 촬영된 실리카 계열의 모래의 토색을 기반으로 함수비를 예측하는 방법을 제안했으며, 제안된 방법을 통해 최대 오차 0.29% 수준으로 함수비를 예측할 수 있음을 확인했다.

Retrieval of Key Hydrological Parameters in the Yellow River Basin Using Remote Sensing Technique

  • Dong, Jiang;Jianhua, Wang;Xiaohuan, Yang;Naibin, Wang
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.721-727
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    • 2002
  • Precipitation evapotranspiration and runoff are three key parameters of regional water balance. Problems exist in the traditional methods for calculating such factors , such as explaining of the geographic rationality of spatial interpolating methods and lacking of enough observation stations in many important area for bad natural conditions. With the development of modern spatial info-techniques, new efficient shifts arose for traditional studies. Guided by theories on energy flow and materials exchange within Soil-Atmosphere-Plant Continuant (SPAC), retrieval models of key hydrological parameters were established in the Yellow River basin using CMS-5 and FengYun-2 meteorological satellite data. Precipitation and evapotranspiration were then estimated: (1) Estimating tile amount of solar energy that is absorbed by the ground with surface reflectivity, which is measured in the visible wavelength band (VIS): (2) Assessing the partitioning of the absorbed energy between sensible and latent heat with the surface temperature, which was measured in the thermal infrared band (TIR), the latent heat representing the evapotranspiration of water; (3) Clouds are identified and cloud top levels are classified using both VIS and TIR data. Hereafter precipitation will be calculated pixel by pixel with retrieval model. Daily results are first obtained, which are then processed to decade, monthly and yearly products. Precipitation model has been has been and tested with ground truth data; meanwhile, the evapotranspiration result has been verified with Large Aperture Scintillometry (LAS) presented by Wageningen University of the Netherlands. Further studies may concentrate on the application of models, i.e., establish a hydrological model of the Yellow river basin to make the accurate estimation of river volume and even monitor the whole hydrological progress.

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소성처리에 의한 황토의 물성특성 변화 및 용존 중금속 제거능력 (Changes in Physical Properties and Its Metal Removal Efficiency for The Yellow Soils by Calcination Process)

  • 이진원;김석휘;황갑수
    • 한국산학기술학회논문지
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    • 제18권4호
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    • pp.584-591
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    • 2017
  • 수중에서 중금속은 흡착제에 의한 표면흡착과 금속수산화물로의 침전/제거반응이 동시에 일어나기 때문에 이들 각각에 의한 중금속 제거기작은 명확하게 구분되어 설명되지 못한다. 본 연구에서는 중금속 제거기작을 보다 명확하게 이해하기 위해 $850^{\circ}C$로 소성된 황토를 이용하여 다양한 pH 조건에서 Cu, Pb, Zn, Cd, 그리고 Cr 수용액 각각을 대상으로 회분식실험을 수행하였다. 실험결과 Cr을 제외한 중금속 농도는 반응초기에(<5분) 급격하게 감소되어 초기농도 대비 약 90%가 제거되었다. 한편, pH는 대상 금속 수용액에 따라 정도의 차이를 보이긴 하나 전체적으로 반응시간에 따라 지속적으로 증가되어 7.0-9.0까지 증가되었다. 반응시간에 따라 증가되는 pH 값과 높은 pH 조건에서 상대적으로 높은 중금속 제거율은 금속수산화물의 침전과 관련 있어 보인다. 흡착제(상용활성탄, 비소성황토, 소성황토)별 반응시간에 따른 pH 변화에 대한 비교실험결과, pH 증가현상은 소성황토에서만 두드러지게 나타나 소성과정에서 황토의 물성특성이 변화되었던 것으로 생각된다. 따라서 소성황토에 의한 중금속 제거는 흡착제에 의한 단순흡착뿐 아니라, 높은 pH 조건에서 금속수산화물을 형성함으로써 흡착질 표면에 침전 제어 될 수 있음을 보여준다.