• 제목/요약/키워드: sandy loam

검색결과 625건 처리시간 0.03초

화순지역 토양-퇴적물-하천수의 지구화학적 특성 (Geochemical Characteristics of Soils, Sediments and Waters in stream Of Hwasun area)

  • 오강호;고영구;윤석태
    • 환경영향평가
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    • 제12권1호
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    • pp.9-22
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    • 2003
  • To consider environmental characteristics in the scope of geochemistry of streams, Hwasun area, soil, sediment and water samples near/in the streams were analyzed in texture and metal contents of soil and sediment and in quality in water. From those analyses, the soils are loamy sand, sandy loam, loam and silty loam in texture. And, the sediments are slightly gravelly sand, gravelly sand and gravelly muddy sand in facies. Metal contents in soils and sediments are of high near Hwasuneup and Hwasun coalfield. In peculiar, P, Co, Li, Ni, Zn and Pb exceed over crust mean contents. Physico-chemistry of above streams according to pH-Eh and Piper's diagrams indicates that the streams are, typically, assigned to natural river water. Water qualities of BOD, T-N and T-P in areas near Hwasun coalfield, Dongmyeon and Hwasuneup are polluted over V level. Enrichment factor(EF) representing metal condensation in P, Cu, Zn and Pb appear near Hwasun coalfield and Hwasuneup from the soil and sediment samples, in part. Additionally, river water in dry season is very high in BOD, T-N, $Na^+$ and ${SO_4}^{2-}$. It is suggested that the relatively high metal contents in the stream be connected with above coalfield and urban areas.

Relative Sensitivity Analysis of the Soil Water Characteristics Curve

  • Eom, Ki-Cheol
    • 한국토양비료학회지
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    • 제48권6호
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    • pp.712-723
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    • 2015
  • This study was conducted to develop the SWCC estimation equation using scaling technique, and to investigate relative sensitivity of the SWCC according to the soil water tension, for the four kinds of soil texture such as Sand [S], Sandy Loam [SL], Loam [L] and Clay Loam [CL]. The SWCC estimation equation of scale factor [${\Theta}sc$] (Eq. 1) was developed based on the log function (Eq. 2) and exponential function (Eq. 3). ${\Theta}sc=[({\Theta}-{\Theta}r)/({\Theta}s-{\Theta}r)]$ (Eq. 1) ${\Theta}sc=-0.196ln(H)+0.4888$ (Eq. 2) ${\Theta}sc=0.3804(H)^{(-0.448)}$ (Eq. 3) where, ${\Theta}$: water content (g/g %), ${\Theta}s$: water content at 0.1bar, ${\Theta}r$: water content at 15bar, H: soil water tension (matric potential) (bar) Relative sensitivity of soil water content was decreased as increase soil water tension, those according to soil water tension were 0.952~0.620 compared to 0.1bar case. Relative sensitivity of scale factor was also decreased as increase soil water tension, those according to soil water tension were 0.890~0.577 compared to 0.2bar case.

Threshold Subsoil Bulk Density for Optimal Soil Physical Quality in Upland: Inferred Through Parameter Interactions and Crop Growth Inhibition

  • Cho, Hee-Rae;Han, Kyung-Hwa;Zhang, Yong-Seon;Jung, Kang-Ho;Sonn, Yeon-Kyu;Kim, Myeong-Sook;Choi, Seyeong
    • 한국토양비료학회지
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    • 제49권5호
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    • pp.548-554
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    • 2016
  • Optimal range of soil physical quality to enhance crop productivity or to improve environmental health is still in dispute for the upland soil. We hypothesized that the optimal range might be established by comparing soil physical parameters and their interactions inhibiting crop growth. The parameter identifying optimal range covered favorable conditions of aeration, permeability and root extension. To establish soil physical standard two experiments were conducted as follows; 1) investigating interactions of bulk density and aeration porosity in the laboratory test and 2) determining effects of soil compaction and deep & conventional tillage on physical properties and crop growth in the field test. The crops were Perilla frutescens, Zea mays L., Solanum tuberosum L. and Secale cereael. The saturated hydraulic conductivity, bulk density from the root depth, root growth and stem length were obtained. Higher bulk density showed lower aeration porosity and hydraulic conductivity, and finer texture had lower threshold bulk density at 10% aeration bulk density. Reduced crop growth by subsoil compaction was higher in silt clay loam compared to other textures. Loam soil had better physical improvement in deep rotary tillage plot. Combined with results of the present studies, the soil physical quality was possibly assessed by bulk density index. Threshold subsoil bulk density as the upper value were $1.55Mg\;m^{-3}$ in sandy loam, $1.50Mg\;m^{-3}$ in loam and $1.45Mg\;m^{-3}$ in silty clay loam for optimal soil physical quality in upland.

점적관개에서 관개율이 Sandy Loam토양의 습윤양상에 미치는 영향 (Effects of the irrigation Rate on Wetted Patterns in Sandy Loam Soil Under Trickle irrigation Condition)

  • 김철수;이근후
    • 한국농공학회지
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    • 제31권2호
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    • pp.104-115
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    • 1989
  • In an effort to clarify the wetted patterns of sandy loam soil under trickle irrigation conditions, the distance of wetted zone, infiltration capacity and soil wetted patterns, etc. were measured by gypsum block as soil moisture sensor located every 5 cm vertically and horizontaly in the soil bin under the such conditions as a). irrigation rates set to 2, 4, 6, 8 liters per hour b). total amount of water applied fixed to 14.62 liters per soil bin c) the hearing force of soil measured by plate penetrometer ranging from 1.04 to 1.22kg/cm$_2$ The results can be summarized as follows ; 1. The wetted distance in horizontal direction(H), the wetted distance in vertical direction(D), the horizontal infiltration capacity (iH) and the vertical infiltration capacity(in)could by explained as a function of time t. 2. The horizontal wetted distance (H) is explained by an exponetial function H= a$.$ t where b was found ranging from 021 to 026 under surface trickle irrigation, which was considered a lotlower than the classical value of 0.5 and these measurements were indifferent to the increasing irrigation rates. 3. As for the surface trickle irrigation where horizontal infiltration capacity(iH) is explained as iH = A $.$ t h, the coefficient A increases with respect to irrigation rates within the limits of 0.89~1.34. 4. In terms of surface trickle irrigation of the ratio of Dm Which is maximum vertical wetted distance to Hm, which is maximum horizontal wetted distance, found to be within range of 1.0 to 1.21. It was also noted that the value of Dm decreses when irrigation rates increases while the value of Hm changes the opposite direction. 5. The optimum location of sensors from emitter for surface trickle irrigation should he inside of hemisphere whose lateral radius is 28~30cm long and vertical radius is 10~12cm long. The distance between emitters should be within 60cm long. 6. In the study of vertical wetted distance( D) where D= a $.$ tb, the exponential coefficient b ranged from 0.61 to 0.75 in surface trickle irrigation, and from 0A9 to 0.68 for subsurface trickle irrigation. These measurements showed an increasing tendency to with respect to irrigation rates. 7. In case of vertical infiltration capacity( in), where iD= A $.$ t 1-h, the coefficient A for surface trickle irrigation found to be within range of 0.16 to 0.19 and did not show any relationships with varying degree of irrigation rates. However, the coefficient was varying from 0.09 to 0.22 and showed a tendency to increase vis-a-vis irrigation rates for subsurface trickle irrigation, in contrast. 8. In the observation of subsurface trickle irrigation, it was found that Dm/Hm ratio was within 1.52 to 1.91 and showed a decreasing tendency with respect to increasing rates of irrigation. 9. The location of sensors for subsurface trickle irrigation follows same pattern as above, with vertical distance from emitter being 10~17cm long and horizontal 22~25cm long. The location of emitter should be 50 cm. 10.The relationship between VS which is the volume of wetted soil and Q which is the total amount of water when soil is reached field capacity could be explained as VS= 2.914Q0.91and the irrigation rates showed no impacts on the above relationship.

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토양의 수분보유(水分保有)에 미치는 초흡수성 고분자중합체(高分子重合體)(K-sorb)의 효과 (Effect of Highly Water Absorbing Polymer(K-sorb) on Soil Water Retention)

  • 유순호;권순국;노희명
    • 한국토양비료학회지
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    • 제23권3호
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    • pp.173-179
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    • 1990
  • 초흡수성 고분자중합체(高分子重合體)인 K-sorb를 처리수준을 달리하여 공시토양(供試土壤)에 중량비로 각각 0.0, 0.05, 0.2 및 0.5%로 처리하여 수분보유에 미치는 처리별 효과 및 그 지속성(持續性)을 조사하였다. 모든 처리에서 토양시료의 수분보유력(水分保有力)을 보양수분 압출장치를 사용하여 측정하였다. 각 시료의 수분보유력(水分保有力) 자료로부터 유효수분(有效水分) 및 수분장력 0.01, 0.3 및 15b때의 3상분포를 계산하였다. 수분보유에 미치는 처리(0.0, 0.05, 0.1 및 0.2%)간 효과 및 지속성(持續性)을 검토하기 위하여, 중동(中東) 사양토의 포장에서 배추를 공시작물(供試作物)로 한 난괴법(亂塊法) 실험을 수행하였다. 양질사토와 사양토, 양토의 수분보유력(水分保有力)은 K-sorb를 0.2 또는 0.5% 처리하였을 경우, 각각 무처리토양보다 증가하였다. K-sorb처리는 양질 토양보다 사질토양에서 보다 효과적이었다. K-sorb를 0.5%씩 처리한 토양의 수분함량은, 각각의 수분장력에서 0.2%의 수분함량보다 훨씬 높았다. K-sorb를 0.5%처리한 경우에만, 수분보유력(水分保有力) 증진효과가 12개월 동안 건습을 반복한 후에도 지속되었다. 배추의 생체중(生體重)에 미치는 K-sorb의 효과는 Duncan의 다중검정(多重檢定) 결과 2개월 후에는 0.2%처리에서만 나타났으며, 10개월 후에는 처리별로 뚜렷한 차이가 없었다.

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산지개발지역과 비개발지역 표토의 이화학적 특성 비교 (Comparison of Physicochemical Properties of Topsoil from Forest Development and Non-Development Area)

  • 김원태;윤용한;조용현;강희경;박봉주;신경준;어양준;윤택승;장광은;곽무영
    • 한국환경과학회지
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    • 제21권11호
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    • pp.1389-1394
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    • 2012
  • This study was carried out to evaluate the physicochemical properties of topsoil from forest development area. The results of physicochemical properties of topsoil from forest development area shown on the average loamy sand~sandy clay loam in soil texture, 5.3~7.1 in pH, 0.02~0.18 dS/m in EC, 0.7~1.8% in OM, 0.03~0.11% in T-N, 11~15 $cmol^+/kg$ in CEC, 0.02~0.04 $cmol^+/kg$ in $K^+$, 4.51~8.18 $cmol^+/kg$ in $Ca^{2+}$, 0.93~2.77 $cmol^+/kg$ in $Mg^{2+}$, 6~49 mg/kg in available phosphate. And the results of physicochemical properties of topsoil from forest non-development area shown on the average sandy loam~sandy clay loam in soil texture, 4.4~5.3 in pH, 0.03~0.05 dS/m in EC, 3.1~4.6% in OM, 0.13~0.23% in T-N, 14~18 $cmol^+/kg$ in CEC, 0.02~0.04 $cmol^+/kg$ in $K^+$, 0.78~3.82 $cmol^+/kg$ in $Ca^{2+}$, 0.29~1.31 $cmol^+/kg$ in $Mg^{2+}$, 3~31 mg/kg in Av. $P_2O_5$. On the other hand, forest development area of topsoil sand content higher than 8~18% sand content than the forest non-development area. This trend is thought to be the absence of topsoil management development projects. Consequently, the results suggested a high potential of recycling of the topsoil from forest non-development area for planting soil. Therefore, in construction of the conservation and management of topsoil from forest non-development area is very important.

현장발생토 활용 식재기반 조성유형별 소나무 생육 특성 평가 (Growth Characteristic of Pinus densiflora by Soil Generated at Civil Works Site)

  • 오득균;김필립;윤용한;김원태
    • 한국환경과학회지
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    • 제28권8호
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    • pp.655-667
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    • 2019
  • This research aims to identify the possibility of developing A horizon resources that can be used for construction and civil engineering work. As such, the utility of A horizon resources was examined by establishing planting ground through a mixture of soil layers and by analyzing the growth and development of Pinus densiflora. The physicochemical and physical properties of the soil were as follows: the A horizon was sandy clay loam, B horizon was sandy loam, and the mixture of two layers appeared as sandy loam, which was identical to the B horizon. The experimental groups did not show any significant difference in their physical properties of porosity and degree of water-stable aggregates. With regards to chemical properties, the A horizon as well as the mixture of A and B horizon showed acidity while the B horizon showed alkalinity. The figures of organic matter, total nitrogen, available phosphate, and replaceable potassium were greater as the A horizon content increased, whereas the figures of replaceable calcium, replaceable magnesium, and conductivity increased as the A horizon content decreased. As a result of the growth and development of Pinus densiflora in each planting ground, the final survival rates were all above 100%. However, the tree height and the rate of growth for the diameter of root were higher in the order of A horizon > A horizon + B horizon > B horizon,indicating that the increased A horizon content is related to the growth and development of Pinus densiflora. The treatment of soil with improvement agents, used to recover the functions of in-situ soil showing poor growth and development, did not have a clear impact on the soil texture and porosity. However, the degree of water-stable aggregates increased significantly when using O horizon as the soil improvement agent among the types of in-situ soil. In contrast, all items related to the chemical properties showed significant differences following the treatment by soil improvement agents. The survival rate according to the treatment of soil improvement agents for the growth and development of Pinus densiflora was higher in the order of organic horizon = no treatment > compound fertilizer > organic fertilizer + compound fertilizer > organic fertilizer; this result was statistically significant with a marginal significance value of the log-rank test(p < 0.05).

우리 나라 자생 왕포아풀의 수집지 분포 및 특성 (Geographical Distribution and Characteristics of Kentucky Bluegrass(Poa pratensis L..) Native to Korea)

  • 심상렬;정대영;안병준
    • 한국환경복원기술학회지
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    • 제6권1호
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    • pp.71-77
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    • 2003
  • This research has been conducted to collect regional ecotypes of Poa pratensis throughout the southern part of korean peninsula during 2000~2002. 227 local ecotypes of Poa pratensis were collected mostly from roadsides, riversides and rice paddies. The $35^{\circ}$ latitude was supposed to be the southern limit of native Poa pratensis habitat. 130 ecotypes of Poa pratensis found from the poor environmental condition such as roadsides showed Poa pratensis naturally grew throughout the country. When surveyed the habitat environment, it was concluded that native Poa pratensis were mostly found on open fields or half shaded areas, on sandy soil or sandy loam soil, and in the individual patch type.

한국(韓國) 경지토양특성(耕地土壤特性)에 관련(關聯)된 제초제(除草劑) 약해(藥害) (Herbicidal Phytotoxicity in Relation to the Korean Soil Properties)

  • 양환승;전재철
    • 한국잡초학회지
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    • 제2권2호
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    • pp.122-128
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    • 1982
  • This paper deals with herbicidal phytotoxicity which may occur because of unique properties of the Korean soils. Analysis of the Korean lowland and upland soils reveals that about 50% of the total area belongs to sandy loam and sandy gravel soils and most of both lowland and upland soils consists of kaolinite clay mineral. The chemical properties such as organic matter, pH, and cation exchange capacity show very low values by which there have been several instances of the herbicidal phytotoxicity occurred throughout the country. In addition, the paper emphasizes the need for selection and use of herbicides in the Korean soils.

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제초제에 의한 답리작맥 약해발생 요인구명에 관한 연구 (Studies on the Factors Affecting Barley Injury Caused by Herbicides in Drained Paddy Field)

  • 양환승
    • 한국작물학회지
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    • 제14권
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    • pp.147-157
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    • 1973
  • I. 보리 발아시 과습조건이 될 때 그 발아에 미치는 영향을 알고져 건토(LiC) 100g당 30cc, 40cc, 50cc, 60cc의 비율로 물을 가하여 수분함량을 각각 다르게 한 조건을 만들어 Check에 대비하여 Machete(Butachlor), TOK(Nitrofen)을 각각 150g, ai/10a 비율로 처리하였던바 그 결과를 요약하면 다음과 같다. 1. 보리 발아시 수분함량이 포장용수량 이상의 과습이 유지될 때는 무처리구에 있어서도 발아율이 급감하거나 발아되지 아니하며 일단 발아된 후에도 근신장 및 생육이 제대로 되지 못하였다. 2. Machete, TOK 등 약제처리구에 있어서도 1)과 경향은 같으나 무처리구 보다는 그 해가 더욱 증대되였다. II. 토성이 다른 4종류의 토양을 대상으로 하여 Machete (제형별 180 g ai/10a), TOK (약량별 150g, 200g ia/10a), saturn(150g ai/10a), HE314, (250g ai/10a)의 4약제를 사용하여 1cm 복토심하에서 완주 봄보리에 대한 약해차이실험을 실시하였든바 그 결과를 요약하면 다음과 같다. 1. Machete 제형별(180g ai/10a 수준) 약해는 토양의 종류에 따라 심한 차이가 있었으며 식양토에서는 제형에 관계없이 거의 안전하나 사질 식양토<화산회양토<사양토 순위로 약해가 증대되었다. 유제의 약해의 입제의 약해보다 더욱 심하였다. 2. TOK 수화제 150g-200g ai/10a Machete와 거의 동일의 경향이며 약량이 높을 때 약해는 더욱 심하였다. 3. Saturn 150g ai/10a 토성에 따른 약해차이가 있기는 하나 그 차가 심하지는 아니하였다. 4. HE314. 250g ai/10a 250g 시용수준에서는 토성에 따른 약해차가 거의 없었다. III. 2종류의 토양을 대상으로 9개약제(TOK. MO. HE314, Machete, Saturn, Simetryne, Simazine, Gesaran Lorox)을 사용하여 복토심별(4단계)로 약해발생차이를 구명하였던바 그 결과를 요약하면 다음과 같다. 1. 경식ㅌ조건 : 1) Check에 있어서 복토심별 생육상황은 1cm>1.5cm>0.5cm>0cm의 순위였으며 0-0.5cm 복토구에 있어서는 보리 생육이 매우 불량하였다. 2) 약제처리구에 있어서도 0-0.5cm구에 있어서는 심한 해를 나타내고 있으며 1cm 이상의 복토가 유지될 때 보리에 비교적 안전한 약제는 Saturn, Machete, MO, TOK의 100-150g ai/10a, HE314 375-205g ai/10a구 등이었다. 3) 1.5 cm 복토에 있어서도 징해를 나타낸 약제는 Simazine, Lorox, Simetryne 등이었다. 2. 사질토조건 : 1) Cheick에 있어서 생육상황은 1.5cm>0.5cm>0.5cm>3cm>5cm의 순위이었다. 2) 약제처리구에 있어 MO는 1.5 cm 구에서 안전하였고 TOK의 약해는 1.5cm인때 가장 가벼운 편이다. 3) 3cm이상 복토가 될 때 비교적 안전한 약제는 Machete, Saturn 100g ai/10a, HE314 250g ai/10a 이었다. 4) 복토심에 구애없이 불안전한 약제는 Simazine, Lorox, Simetryne Gesaran 등이었다.

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