• 제목/요약/키워드: Reclaimed saline soil

검색결과 107건 처리시간 0.02초

간척지 토양특성과 토양염류도 변화 개관 (Soil Characteristics and Soil Salinity Changes in the Reclaimed Tideland of Korea)

  • 이승헌
    • 한국토양비료학회지
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    • 제42권Spc호
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    • pp.14-19
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    • 2009
  • 간척지 토양에 대한 기본 자료를 얻기 위하여 9개소의 간척지 과제지역에서 약 90여개의 토양시료를 채취하였다. 조사 결과 토양은 점토(2-35%), 미사(2.0-80%), 모래(8-95%) 정도로 구성되있고 토성은 주로 사질양토 또는 미시질양토로 조사되었다. 토양 pH는 5.5-9.1, 유기물함량은 $0.5-19.2g\;kg^{-1}$, 총 질소함량은 $4-1159mg\;kg^{-1}$ 그리고 유효태 인산함량은 $3.5-147.7mg\;kg^{-1}$, 전기전도도는 $0.6-31.6dS\;m^{-1}$ 그리고 Na와 Mg 함량은 가리나 칼슘함량보다 높았다. ECesms 표층과 심층 모두 높은 것으로 조사되었다.

간척지토양의 제염과정중 전기전도도와 치환성 나트륨 백분율 및 pH 사이의 관계 (Relationship Between Electrical Conductivity, Exchangeable Sodium Percentage and pH During Desalinization of Reclaimed Tidelands)

  • 구자웅;은종호
    • 한국농공학회지
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    • 제30권4호
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    • pp.127-133
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    • 1988
  • This study was performed to obtain the basic data analyzing salt movement and desalinization effects, and two different desalinization experiments through leaching and rinsing were carried out, using samples of silt loam soil and silty clay loam soil collected in reclaimed tidelands. The relationships between the electrical conductivity of saturation extract and the electrical conductivity at various dilutions, and the correlations between electrical conductivity, total salt concentration, exchangeable sodium percentage and pH during the desalinization of reclaimed tidelands, were analyzed by the statistical method. The results obtained from this study were summarized as follows: 1.The sample soils used in this study were saline-sodic soils in accordance with the USDA classi- fication system of salt affected soils. 2.The electrical conductivity of saturation extract could be estimated conveniently, using the electrical conductivity of extract from various different soil-water suspensions. 3.The total salt concentration could be expressed in the electrical conductivity, but there was a little difference by soil textures. 4.The regression analysis showed that the relationship between the electrical conductivity of saturation extract and the exchangeable sodium percentage during the desalinization of reclaimed lands could be described by a linear regression equation. 5.The value of pH showed a tendency to increase according as the exchangeable sodium percentage decreased during the desalinization of reclaimed tidelands.

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간척지 토양환경 조건별 토양내 질소 동태와 영향 요소 (Fate of Nitrogen Influenced by Circumstances of a Reclaimed Tidal Soils)

  • 한상균;김혜진;송진아;정덕영
    • 한국토양비료학회지
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    • 제44권5호
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    • pp.745-751
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    • 2011
  • In most agricultural soils, ammonium ($NH_4^+$) from fertilizer is quickly converted to nitrate ($NO_3^-$) by the process of nitrification which is crucial to the efficiency of N fertilizers and their impact on the environment. However, nitrification studies have been studied extensively in agricultural soils, not in a newly reclaimed tidal soil which show saline-sodic and high pH. Therefore, understanding the fate of nitrogen species transformed from urea introduced into reclaimed tidal soil is important for nutrient management and environmental quality. This paper reviewed studies regarding to transformation and fate of nitrogen sources such as urea under the circumstances of a reclaimed tidal soils located in a western coastal area.

광양만 바다 준설 매립지 느티나무의 식재 지반별 토양 이화학적 특성 (The Physico-chemical Properties of the Soil at the Grounds of Replanted Zelkova serrata (Thunberg) Markino in Reclaimed Land from the Sea, Gwangyang Bay)

  • 김도균;박종민
    • 한국조경학회지
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    • 제31권6호
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    • pp.85-94
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    • 2004
  • This study was carried out to analyze physicochemical properties according to the soil height and to the six types of sites that were used as planting ground in the reclaimed land from the sea, Gwangyang Bay. The physicochemical properties of the soil types were tested by t-test(p<0.01, 0.05), at each of the 6 planting ground sites(p<0.01, 0.05), and at each height(p<0.01) of the planting grounds. These areas were tested by ANOVA and were significantly different. Improved soil was better than reclaimed soil from the sea for Zelkova growth because the improved soil contained lower amounts of pH, ECe, N $a^{+}$, $Ca^{++}$, $Mg^{++}$ SAR. Due to freedom from variables such as salt content in the underground as well as the physical and chemical disturbance of the soil, favorable planting ground for tree growth was recorded at the higher grounds than at the lower ones. Soil detriment to the tree growth in the studied sites included elements such as soil hardness, and the distribution of sodium in the tree root systems. The planting grounds for the favorable growth of landscape trees were determined in the following order: the grounds of mounding> the coved ground of improved soil, and the filled ground of improved soil.l.l.l.

Breakthrough Curves and Miscible Displacement of Cadmium Through Double-Layered Reclaimed Soils Amended with Macroporous Granule

  • Kim, Hye-Jin;Ryu, Jin-Hee;Kim, Si-Ju;Park, Mi-Suk;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제44권1호
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    • pp.15-21
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    • 2011
  • Transport of heavy metals such as Cd is affected by several rate-limiting processes including adsorption and desorption by exchange reactions in soils. In this study, column transport and batch kinetic experiments were performed to assess Cd mobility in a double-layered soil with a reclaimed saline and sodic soil (SSS) as top soil and macroporous granule (MPG) as a bottom layer. For individual soil layer having different physical and chemical properties, Cd was considered to be nonlinear reactivity with the soil matrix in layered soils. The dispersive equation for reactive solutes was solved with three types of boundary conditions for the interface between soil layers. The adsorption of Cd with respect to the saline-sodic sandy loam and the MPG indicated that the nature of the sites or the mechanisms involved in the sorption process of Cd was different and the amounts of Cd for both of samples increases with increasing amounts of equilibrium concentration whereas the amount of Cd adsorbed in saline-sodic sandy loam soil was higher than that in MPG. The results of breakthrough curve indicating relative Cd retardation accompanied by layer material and sequence during leaching showed that the number of pore volumes to reach the maximum relative concentration of 1 increased in the order of MPG, SSS, and double layer of SSS-MPG. Breakthrough curves (BTCs) from column experiments were well predicted with our double-layered model where independently derived solute physical and retention parameters were implemented.

해안간척지토양의 생물학적 토성개량에 관한 연구 5 (Biological improvement of reclaimed tidal land soil (V))

  • 홍순우;하영칠;이광웅
    • 미생물학회지
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    • 제8권1호
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    • pp.13-20
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    • 1970
  • Chenges in respiration of the soils collected from the reclaimed tidal soil in Chogi-ri, Kanghwa Island and treated with organic matters are presented. The measurement of the respiration for the smaples, which were incubated for 0,2,4 and 5 weeks, were carried out by using Warburg's respirometer. While the respirations of the samples added by organic matters were increased 6.7 - 28.0 times compared with that 0 week during the incubation in case of 5-year soil, the respiration in case of 3-year soil were increased 3.3-11.8 times. Thus, the effect of adding organic matters on the respiration of the experimented soils, as this indicates, was much higher for the soil of 5-year area than that of 30-year area. And for the organic matters Salicornia was most effective and then Suaeda and Oryzae. The samples treated with Salicornia and Suaeda showed their highest respiration rate at the 4th week, but the one with Oryzae was measured to increase progressively during 5 weeks experimented. Regarding the salinity, content of organic matters and number of bacteria, in each intact soil experimented, 5-year soil samples had much poor habitat then 30-year soil for the activity of soil microorganisms, but according to the result mentioned above, it is firmly believed that the addition of organic matters on the saline soil is one of the best means to change the reclaimed tidal land into arable land with less time duration.

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우리나라 중서부 해안 경기만 간척지에서 식생 분포에 대한 토양 염도의 영향 (Soil Salinity Influencing Plant Stands on the Reclaimed Tidal Flats of Kyonggi-Bay in the Midwestern Coast of Korea)

  • 김은규;천소을;주영규;정영상
    • 한국토양비료학회지
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    • 제42권4호
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    • pp.280-288
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    • 2009
  • 간척지에서 식생의 공간적 분포 변이에 영향을 주는 요인을 알아내기 위하여, 중서부 해안 경기만의 신간척지와 간척연대가 다른 간척지 세 곳, 그리고 이들의 인근 비간척 간석지에서 식생 분포를 조사하였다. 토양 염도의 지표로 포화침출액의 전기전도도를 조사하였다. 토양염도에 따라 식생 분포가 확연이 달랐다. 토양 염도에 따라 각 식생의 최적 서식지가 존재하며, 이는 저염도 지점에는 중성 식물이, 고염도 지점에는 염생식물이 분포함을 의미하고 있다. 서식 식물 군집에 따른 토양 염도의 순서는 다음과 같다. 즉, 토양 염도는 식생 위조지>선구 염생식물지> 혼합선구염생식물지> 선구염생식물지> 선구염생식물 및 통성 염생식물 혼합지> 혼합 통성염색식물지> 통성염생식물 및 중성식물 혼합지>혼합 중성식물지의 순이었다. 이 결과는 토양 염도의 공간적 토양 구배에 따라 식물 종의 분포가 이루어짐을 보여 주고 있으며, 이에 따라 식물종의 분포에 따라 토양 염도의 차이를 판단할 수 있음을 시사하고 있다. 토양 염도와 식물종의 분포양상 관계는 여러 간척지간에 큰 차이를 보이지 않았고, 식물 군락 밀집도가 간척 이후 식생이 어떤 방향으로 천이되는지의 지표를 제시하여주고 있다.

임해매립지의 식재지반별 토양 물리·화학적 특성 (Physico-Chemical Properties of Soils at the Ground of Landscape Planting in Reclaimed Land from the Sea)

  • 김도균
    • 한국환경복원기술학회지
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    • 제4권4호
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    • pp.12-18
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    • 2001
  • This study was carried out to analyze physico-chemical properties of soils at the ground of landscape planting in reclaimed land from the sea on Kwangyang Bay, South Korea. Physico-chemical properties of soils at each planting grounds were tested by ANOVA and were significantly(P<0.01) different. The difference came from the soil properties of the covered soil, the disturbance applied to the soil with land use and the accumulation of organic matter after landscape planting. Soil hardness, pH, ECe, Na and K level were in a stable condition at high then low of ground height for landscape planting. Organic matter accumulation was greater at lower planting grounds then top and slope ground of big mounding. The planting grounds of favorable growth for landscape trees were determined as following order : the slope ground and the top ground of big mounding>the ground of medium mounding>the coved ground of improve soil>the lower ground of big mounding>the filled ground of improve soil.

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간척지 토양의 제염과정중 수리전도도의 변화 (Changes of Hydraulic Conductivity During Desalmization of Reclaimed Tidelands)

  • 구자웅;은종호
    • 한국농공학회지
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    • 제30권4호
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    • pp.85-93
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    • 1988
  • This laboratory study was carried out in order to produce fundamental data for analyzing salt movement and desalinization effects, using samples of silt loam soil collected in Gyehwado and Daeho reclaimed tidelans, and samples of silty clay loam soil collected in Kimie tideland. Desalinization experiments with gypsum treatment were performed to analyze changes of the hydraulicc conductivity with changes of the soil property and the salt concentration during the desalinization of reclaimed tideland soils by leaching through the subsufface drainage, and correlations between factors infl uencing the reclamation of salt affected soils were analyzed by the statistical method. The results were summarized as follows: 1. The reclaimed tideland soils used in this study were saline-sodic soils with the high exchangeable sodium percentage and the high electrical conductivity. 2. Changes of the hydraulic conductivity with the amount of leaching water and the leaching time elapsed were affected by the amount of gypsum except exchangeable sodium and clay contents. The regression equation between the depth of water leached per unit depth of soil (Dw / Ds : X) or the square root of the leaching time elapsed (T $^1$ $^2$ : X) and the relative hydraulic conductivity (HCr:Y) could be expressed in Y=a . bx. 3. The more exchangeable sodium and clay contents regardless of the amount of gypsum, the more the leaching time was required until a given volume of water was leached through the soil profile. The regression analysis showed that the relationship between the depth of water leached per unit depth of soil(Dw /Ds:X) and the square root of the leaching time elapsed(T$^1$$^2$ :Y) could be described by Y=a . Xb. 4. The hydraulic conductivity was influenced to a major degree by the salt concentration provided that the electrical conductivity was below 10 mmhos / cm during the desalinization of reclaimed tideland soils. The regression equation between the relative electrical conductivity ( ECr : X) and the relative hydraulic conductivity (HCr:Y) could be expressed in Y=a + b . X-$^1$. 5. In conclusion, the hydraulic conductivity, leaching requirements and the leaching time elapsed can be estimated when the salt concentration decreases to a certain level during the desalinization of reclaimed tidelands, and the results may be applied to the analysis of salt movement and desalinization effects.

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간척지 염해토양의 특성과 제염기법 (Properties and Disalinization of Salt-affected Soil)

  • 손재권;송재도;신원태;이수환;류진희;조재영
    • 한국유기농업학회지
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    • 제24권2호
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    • pp.273-287
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    • 2016
  • Accumulation of excessive salt in Reclaimed coastal tidelands can reduce crop yields, reduce the effectiveness of irrigation, degradation of soil structure, and affect other soil properties. These salts has shown to cause specific ions in the plant over a period of time leads to ion toxicity or ion imbalance and a continuous osmotic phase that prevents water uptake by plants due to osmotic pressure of saline soil solution. This review focuses on the characteristics of salt-affected soils, mechanisms of salt-tolerance plants, desalinization technology, and soil management to maintain sustainable agro-ecosystem in salt-affected soils.