• 제목/요약/키워드: Soil management groups

검색결과 89건 처리시간 0.024초

우리나라 논토양(土壤) 유형별(類型別) 이화학적(理化學的) 특성(特性) (Physico-Chemical Properties on the Management Groups of Paddy Soils in Korea)

  • 허봉구;임상규;김유학;이계엽
    • 한국토양비료학회지
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    • 제30권1호
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    • pp.62-66
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    • 1997
  • 논토양에 대한 전산화(電算化)된 정밀토양조사자료(精密土壤調査資料)를 이용(利用)하여 논토양(土壤) 유형별(類型別) 13개(個) 물리화학적인 특성의 평균치(平均値)를 구하고 토양개량(土壤改良)에 대한 기초자료(基礎資料)를 제공하고자 전산자료를 분석, 검토한 결과는 다음과 같다. 1. 논토양 B층위(層位)에서의 점토함량은 보통답(普通畓)이 28.3%, 사질답(砂質畓)이 11.8%, 미숙답(未熟畓)이 26.8%이었으며 토양 pH는 습답(濕畓), 특이산성답(特異酸性畓)을 제외하고는 B층(層)이 A층(層)보다 높았다. 2. 보통답중(普通畓中)에서 하천변(河川邊)논 A, B층의 점토함량은 각각 16.8%, 23.1%로 가장 낮았고 유기물함량은 42g/kg, 18g/kg로 가장 많았으며 유효인산함량도 가장 많았다. 3. 논토양 유형별(類型別) B층(層)의 유기물함량수준별 분포비율(分布比率)은 사질답, 미숙답은 10g/kg 이하가 가장 많고 특이산성답을 제외한 각 답유형에서는 10~20g/kg 범위가 가장 많았다. 4. 보통답(普通畓) B층위(層位)에서 물리화학성 상호간의 상관계수(相關係數)는 전부 1~5% 수준내에서 유의성(有意性)이 높았다.

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밭유형(類型)에 따른 토양(土壤)의 이화학적(理化學的) 특성(特性) (Physico-Chemical Properties on the Management groups of Upland Soils in Korea)

  • 임상규;허봉구;정석재;현근수
    • 한국토양비료학회지
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    • 제30권1호
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    • pp.67-71
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    • 1997
  • 농경지의 정밀토양조사(精密土壤調査) 결과를 이용하여 토양유형(土壤類型), 지형(地形) 및 층위별(層位別)로 토양의 물리, 화학적 특성을 분석 검토한 결과는 다음과 같다. 1. 점토함량(粘土含量)을 유형별로 보면 A층에는 사질밭과 보통밭에서 낮았고 중점(重粘)밭에서 가장 높았으며 B층에서는 화산회밭이 높았다. 토층간에는 화산회밭을 제외하고는 B층이 A층보다 낮았다. 2. 유기물함량(有機物含量)은 다른 유형의 밭에 비하여 화산회밭과 고원(高原)밭에서 현저히 높았다. 3. 양이온치환용량은 사질밭, 보통밭과 미숙(未熟)밭에서 낮았으며 고원밭의 A층도 $13.2cmol^+/kg$으로 높은 편이었고 화산회밭은 가장 높았다. 4. 보통(普通)밭 B층의 물리 화학적 특성간에는 높은 상관관계가 인정되었으며 양이온치환용량은 유효수분(有效水分), 점토, 미사 및 유기물함량과 정(正)의 상관(相關)관계를 보였다.

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An option to provide water and fertilization for rice production in alkaline soil: fertigation with slow release fertilizers (SRFs)

  • Young-Tae Shin;Kangho Jung;Chung-Keun Lee;Jwakyung Sung
    • 농업과학연구
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    • 제49권4호
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    • pp.871-879
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    • 2022
  • An increasing global population requires a greater food supply, and accordingly there is demand for enhanced production of rice, as a major crop plant that covers half of the world's population. Rice production in arid area is extremely difficult due to poor soil fertility, salinity, deficit of irrigation water, and weather conditions. The aim of the present study was to determine whether various fertilization recipes could provide a countermeasure to allow rice production while also providing soil amendment such as soil pH adjustment. The study was conducted at an experimental field of the United Arab-Emirates (UAE) from January to April, 2022. Rice seedlings (cv. Asemi, alkaline-resistant) were transplanted in plastic containers, and different types of water and nutrient managements were employed as follows: water management (flooding and aerobic for NPKs treatment group) and nutrient management (NPKs, slow release fertilizers [SRFs] and SRFs + NPK-1 treatment groups with flooding). Water and nutrient management did not show any effect on soil pH adjustment. Rice growth was significantly enhanced in the flooding compared to the aerobic condition, whereas the effect of nutrient management clearly differed among the treatment groups, with SRFs + NPK-1 showing the best results followed by SRFs and NPKs. Most of the fertilization groups markedly accumulated soluble sugars in the shoots and grains of rice plants, but concomitantly a decrease in the roots. Overall, the level of starch showed a tendency of relatively slight perturbation by fertilization. Taken together, the results indicate that soil physical structure should be preferentially amended to find the key for suitable rice production.

한국 골프 코스의 토양 분류와 특성 (Classification and Characteristics of Soil in Korean Golf Courses)

  • 최병주;주영희;심재성;유병남
    • 아시안잔디학회지
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    • 제6권2호
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    • pp.113-119
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    • 1992
  • 전국 70개 골프 코스의 토양통을 정밀토양토에서 판독하여 토양특성을 해석한 결과, 골프장의 토양통 수는 17개이고 대토양군(구분류)은 6매, 대군(신분류)은 8개였다. 대토양군은 적황색토에 50%의 골프코스가 분포하고 암쇄토에는 44%가 분포되었다. 대군은 Dystrochrepts에 74% Eutrochrepts에 8.6% Hapludults에 7.1%가 분포되었다. 주요 토양통은 오산(27.1%), 삼각(18.6%), 예산(11.4%) 송산(8.6%), 대구(7.1%)의 순이었다. 골프장 토양통 17개의 간략한 설명과 5매 주요 토양통과, 주요 대토양군과 대군에 대한 상세한 설명을 제시하여 골프 코스 관리에 참고토록 하였다.

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South Dakota 토양의 발생, 분류 및 관리 (South Dakota Soils: Their Genesis, Classification, and Management)

  • 더글러스 D. 말로;유진희;김시주;정덕영
    • 농업과학연구
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    • 제37권3호
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    • pp.413-433
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    • 2010
  • South Dakota is an important agricultural state in the United States with annual cash receipts from agricultural products exceeding $9 billion dollars. This production is possible because of large areas of productive soils. This publication describes the general characteristics and qualities of the major soil groups recognized in South Dakota. The soil forming factors are briefly described, soil classification is introduced, and the genesis of typical Udalf and Ustoll soils are discussed. Soil management issues impacting the use of SD soils are considered. Long-term (>70 yrs) cultivation has significantly reduced surface soil organic carbon levels (>30% reduction) when compared to non-cultivated soil. Soil test phosphorus levels significantly increased in cultivated fields due to commercial P fertilization. The major long-term production problems for SD soils are conservation of soil moisture, organic matter and nitrogen losses, fertility management, and wind and water erosion control.

경북지역 토양의 중금속 분석 (Analysis for Soil Pollution by Heavy Metals in the Area of Kyongbuk)

  • 도현승;김성덕;이승주
    • 대한안전경영과학회지
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    • 제12권2호
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    • pp.231-236
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    • 2010
  • The investigation was initiated with data from 27 abandoned mines along with 12 locations in Kyongbuk abandoned mines. The analyses for soil pollution by heavy metal pollutants were conducted by using correlation analysis, cluster analysis, and principal component analysis. The correlation analysis indicated that Ni and pH were highly correlated compared to those of other heavy metal ions. The principal component analyses showed that the heavy metal ions might be classified into two catagories, such as antropogenic and lithogenic components. The cluster analysis was also clearly divided by two groups. The respective two groups might be Pb-Zn-Cd-Cu and As-Hg-Ni.

LID-IMPs 선정 가이드라인 제시와 아파트단지에서의 LID 설계 (Guideline of LID-IMPs Selection and the Strategy of LID Design in Apartment Complex)

  • 전지홍;김정진;최동혁;한재웅;김태동
    • 한국물환경학회지
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    • 제25권6호
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    • pp.886-895
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    • 2009
  • The guideline of selection of Integrated Management Practices (IMPs), such as wood, green roof, lawn, and porous pavement, for Low Impact Development (LID) design was proposed by ranking the reduction rate of surface runoff using LIDMOD1.0. Based on the guideline, LID was designed with several scenarios at two apartment complexes located at Songpa-gu, Seoul, Korea, and the effect of LID on surface runoff was evaluated during last 10 years. The effect of runoff reduction of IMP by land use change was highly dependent on the kind of hydrologic soil group. The wood planting is the best IMPs for reduction of surfac runoff for all hydrologic soil groups. Lawn planting is an excellent IMP for hydrologic soil group A, but reduction rate is low where soil doesn't effectively drains precipitation. The green roof shows constant reduction rate of surface runoff because it is not influenced by hydrologic soil group. Compared to the rate of other IMPs, the green roof is less effect the surface runoff reduction for hydrologic soil group A and is more effect for hydrologic soil group C and D followed to planing wood. The porous pavement for the impervious area is IMPs which is last selected for LID design because of the lowest reduction rate for all hydrologic soil group. As a result of LID application at study areas, we could conclude that the first step of the strategy of LID design at apartment complex is precuring pervious land as many area as possible, second step is selecting the kind of plant as more interception and evapotranspiration as possible, last step is replacing impervious land with porous pavement.

서울시 한강변 고덕 수변 생태복원지의 식물생태특성을 고려한 생태적 관리방안 (The Ecological Management on Consideration of Vegetation Structure at Goduck Riverside Restoration Area in Hangang, Seoul)

  • 이경재;한봉호;김정호;배정희
    • 한국조경학회지
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    • 제32권2호
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    • pp.86-101
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    • 2004
  • This study was conducted to present the ecological management of Goduk Riverside Restoration Area in Hangang, Seoul by analyzing the change of the vegetation structure. The survey site was classified into three groups. These were the vegetation restoration area, the dry plant area, and the swampy plant area. There were 141 taxa including naturalized plants and 13 species recorded in 2001 and 258 taxa including naturalized plants and 42 species were recorded in 2003 by monitoring. Monitoring results showed that the alien plants such as Humulus japonicus expanded continuously except in the vegetation restoration area. It was found that the growing status of planted shrub plants were poor, and the naturalized plants status was thriving, and the soil environment was bad in the vegetation restoration area. The alien plants such as Humulus japonicus and Aster pilosus dominated continuously in the dry plant area. The swampy native herb plants number was decreased, but the Humulus japonicus community was expanded caused by the soil drying in the swampy plant area. Soil analysis showed that the soil acidity, the available phosphates and the concentration of calcium were highly effected by cultivation. We propose ecological management as follows based on the results of the change of vegetation and soil characteristics. The vegetation restoration area should be managed by visitor's characteristics. Replanting vegetations should be based on soil characteristics. The removal of naturalized plants and established monitoring with plots is also needed. In the dry plant area and the swampy plant area, naturalized plants need to be removed in order to facilitate bio-diversity and monitoring.

도시자연공원의 식생구조에 따른 관리방안 - 인천광역시 월미공원의 사례 - (Structure and Management Devices of Vegetation at Weolmi Urban Nature Park, Incheon)

  • 조우
    • 한국조경학회지
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    • 제30권1호
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    • pp.61-74
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    • 2002
  • The purpose of this study is to propose vegetation management devices through analyzing the actual vegetation, flora, plant community structure and soil chemical concentrations in Weolmi urban nature park, Incheon. The actual vegetation of Weolmi Park in various areas is composed of urbanization area(2 types, 25.9%), landscape planting area(4 types, 16.1%), grass and marsh area(5 types, 7.6%) and mountain forest areal(14 types, 50.4%). The flora is composed of 295 taxa with 80 families, 253 species, 35 varieties and 7 formas, and among them there are 16 naturalized plant families, 39 species, 3 varieties. In reflection of size, the number of the species seems high but most of the them are under influence of human disturbance. Nine survey plots of plant community structure are classified into two groups. One is the semi-natural plant community(Prunus sargentii-Acer palmatum, Quercus accutissma-Prunus sargentii, Quercus serrata-Quercus accutissma-Prunus sargentii, Prunus sargentii, and Zelkova serrata-Prunus sargentii) that migrated finn the planting forest to the natural forest and the other is planting forest(Pinus koraienssis-Pinus thunbergii-Abies holophylla-Chamaectparis obtusa, Prunus sargentii, Pinus thunbergii-Alnus firma, Zelkova serrata). The average pH is 4.65 which means the soil acidity is quite high. The concentration of K, Ca, Mg and base saturation is very low. It seems that the environmental pollutants from Incheon Port and industrial plants near by survey site and long-distance transport of air pollutants from China made the soil condition worse. On the basis of the results above, six vegetation management devices are suggested: 1) removing the hazard plants(Pueraia thunbergiana and Humulus japonica), 2) natural landscape management of the middle and long term, 3) increasing species diversity, 4) Robinia pseudoacacia management, 5) keeping the naturalized plants from being distributed any further inside the mountain forest, 6) improving soil acidification.

독일 토양분류체계 소개 (A Brief Review of Soil Systematics in Germany)

  • 김록영;성좌경;김석철;장병춘;손연규
    • 한국토양비료학회지
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    • 제43권1호
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    • pp.113-118
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    • 2010
  • 각 나라마다 토양이 생성되는 환경이 다르고, 토양분류가 활용되는 목적이 다르기 때문에 세계적으로 다양한 토양분류체계가 발전되어 왔다. 1998년부터 국제적으로 통용되기 시작한 WRB 분류체계와 미국의 분류체계인 Soil Taxonomy는 그동안 국내에 잘 알려져 왔지만, 위의 두 체계와 분류기준을 달리하는 독일 분류체계인 Soil Systematics는 아직 잘 알려져 있지 않다. 본 논문에서 독일 분류체계의 구성과 분류기준을 소개하고자 한다. German Systematics는 6 단계 구조로 이루어져 있고, 상부에서 하위 순서로, soil divisions, soil classes, soil types, soil subtypes, soil varieties, soil subvarieties로 세분화된다. 독일 토양은 먼저 토양수분상태에 따라 4개의 soil divisions 중 하나로 분류되며, 이들은 육지토양, 반육지토양, 반습지/습지토양, 토탄토양이다. 육지토양은 다시 토양발달상태, 층위분화에 따라 13개의 soil classes로 분류되며, 예로 토양발달이 미약한 O/C-토양, 토양발달이 많이 진전되고 Ae-층을 갖는 Podsole (WRB 명명법: Podzols; U.S. Taxonomy: Spodosols)를 들 수 있다. 반육지토양은 지하수토양, 담수토양, 해수토양, 해변토양의 4개의 soil classes로, 반습지/습지토양은 반습지토양, 습지토양의 2개의 soil classes로, 토탄토양도 자연적, 인위적 토탄토양의 2개의 soil classes로 세분화된다. Soil classes는 U.S. Taxonomy의 orders와 비교될 수 있다. 육지토양의 soil classes는 다시 29개의 soil types로, 토양발달이 미약한 토양은 모재에 따라, 토양발달이 진전된 토양은 토양생성과정에 따라 분류된다. 반육지토양의 soil classes는 토양발달 정도에 따라 17개의 soil types로, 반습지/습지토양의 soil classes는 유기물함량에 따라 5개의 soil types로, 토탄토는 생성과정에 따라 5개의 soil types로 세분화된다. Soil types은 독일 토양조사의 기본 단위이며, U.S. Taxonomy의 great groups과 비교될 수 있다. 토양단면의 미세한 형태학적 차이를 고려하여 다시 약 220개의 soil subtypes, 수천 개의 soil varieties과 soil subvarieties로 세분화될 수 있다.