• 제목/요약/키워드: Cultivated land soil

검색결과 159건 처리시간 0.026초

Properties of Soils under Different Land Uses in Chittagong Region, Bangladesh

  • Akhtaruzzaman, Md.;Osman, K.T.;Sirajul Haque, S.M.
    • Journal of Forest and Environmental Science
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    • 제31권1호
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    • pp.14-23
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    • 2015
  • In this study, we investigated the effects of three land uses on soil properties in two soil layers; surface soil (0~15 cm) and subsoil (15~30 cm). Soil samples were collected from planted forest, barren lands and cultivated lands from different areas in Chittagong Cox's Bazar and analyzed for some physical and chemical properties. Results showed that soil textural class varied from sandy clay loam in planted forest and barren land site to sandy loam in cultivated soils. Maximum water holding capacity was higher in forest followed by barren land and the lowest in cultivated lands. At both soil depths, soils of cultivated land showed the highest values of bulk density (1.42 to $1.50g\;cm^{-3}$), followed by barren lands (1.37 to $1.46g\;cm^{-3}$) and the least (1.32 to $1.45g\;cm^{-3}$) in forest soils. Total porosity decreased with depth ranging from 40.24% to 41.53% in subsoils and from 42.04 to 43.23% in surface soil of cultivated and of planted forest sites respectively. The result further revealed that organic carbon (OC) and total nitrogen (TN) contents were higher in the planted forest soil than in other two land uses. The soils of all land uses under study are acidic in nature and the lowest pH was found in both surface and subsoils of barren land. Cultivated soil contained the highest amount of available P, Ca, Mg and K in both surface soil and subsoils. In contrast, barren site had the lowest contents of available P, Ca, Mg and K in both layers. The soil organic carbon (SOC) and total N storage were higher in planted forest than in barren and cultivated land uses.

폐광산지역 경작지 토양의 중금속 존재형태와 토양오염평가

  • 김휘중;양재의;전상호
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 총회 및 춘계학술발표회
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    • pp.149-155
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    • 2003
  • Objectives of this research were to fractionate heavy metals in soil samples in the upper Okdong River basin and to assess the potential pollution index of each metal fraction. Soil samples were collected from cultivated land soils and analyzed for physical and chemical properties. pH of cultivated soils ranged from 5.2 to 7.6. Contents of total kelhaldal nitrogen and loss on ignition were in the ranges of 0.6∼2.5%, and 1.9∼12.9%, respectively. Heavy metals in the cultivated land soils were higher in the abandoned closed coal mine near field soils than those in the paddy soils. Total concentrations of metals in the cultivated land soils were in the orders of Zn > Pb > Ni > Cu > Cd, exceed the corrective action level of the Soil Environment Conservation Law and higher than the naturals were abundance levels reported from uncontaminated cultivated land soils. Mobile fractions of metals were relatively small compared to the total concentrations. Soil Pollution Assesment Index(SPAI) values of each fraction of metals were leveled from Non polluted to Moderately polluted based on total concentrations. SPAI values of mobil fractions were lower than those of immobile fractions. Results on metal fractions and SPAI values of the cultivated land soils indicate that field soils samples were contaminated with heavy metals and had potential to cause a detrimental effects on plants. A prompt countermeasure to prevent field soils in the abandoned closed coal mine near fields are urgently needed.

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폐광산지역 경작지 토양의 중금속 존재형태와 토양오염평가 (Fraction and Soil Pollution Assesment Index of heavy metals in cultivated land soils near the abandoned mine)

  • 김휘중;양재의;이재영;최상일;전상호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제8권4호
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    • pp.53-63
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    • 2003
  • 연구의 목적은 옥동천 유역 토양의 중금속의 존재형태와 존재형태에 따른 중금속의 오염지수를 산정하는데 있다. 토양채취는 경작지 토양을 대상으로 하였고 토양은 물리적 특성과 이화학적 특성을 분석하였다. 그 결과 경작지 토양의 pH는 5.2에서 7.6을, 총질소 함량과 loss on ignition은 각각 0.6∼2.5%, 1.9∼12.9%를 나타냈다. 경작지 토양의 중금속 농도는 폐광된 탄광지역의 논토양에서 높게 나타났으며, 총 중금속의 농도는 Zn > Pb > Ni > Cu > Cd 순으로 나타났다. 이러한 결과는 토양환경기준치와 비오염 경작지 토양의 중금속 농도 보다 높게 나타나는 경향을 보였으며, 총 중금속 중 일부분이 이동 가능성이 있는 부분으로 나타났다. 토양오염 평가지수(SPAI)는 조사지 토양에서 Non polluted와 Moderately polluted를 나타냈으며, 이러한 결과는 비 이동성 형태보다는 이동성 형태의 값이 났게 나타났다. 경작지 토양에서 중금속 존재형태와 SPAI 값은 중금속에 의한 오염과 식물체에 미치는 잠재적인 유해한 결과를 얻을수 있다. 따라서 결과에서 보여진 폐탄광지역의 토양을 복원하기 위해서 신속한 대책이 필요하다.

Soil organic carbon variation in relation to land use changes: the case of Birr watershed, upper Blue Nile River Basin, Ethiopia

  • Amanuel, Wondimagegn;Yimer, Fantaw;Karltun, Erik
    • Journal of Ecology and Environment
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    • 제42권3호
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    • pp.128-138
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    • 2018
  • Background: This study investigated the variation of soil organic carbon in four land cover types: natural and mixed forest, cultivated land, Eucalyptus plantation and open bush land. The study was conducted in the Birr watershed of the upper Blue Nile ('Abbay') river basin. Methods: The data was subjected to a two-way of ANOVA analysis using the general linear model (GLM) procedures of SAS. Pairwise comparison method was also used to assess the mean difference of the land uses and depth levels depending on soil properties. Total of 148 soil samples were collected from two depth layers: 0-10 and 10-20 cm. Results: The results showed that overall mean soil organic carbon stock was higher under natural and mixed forest land use compared with other land use types and at all depths ($29.62{\pm}1.95Mg\;C\;ha^{-1}$), which was 36.14, 28.36, and 27.63% more than in cultivated land, open bush land, and Eucalyptus plantation, respectively. This could be due to greater inputs of vegetation and reduced decomposition of organic matter. On the other hand, the lowest soil organic carbon stock under cultivated land could be due to reduced inputs of organic matter and frequent tillage which encouraged oxidation of organic matter. Conclusions: Hence, carbon concentrations and stocks under natural and mixed forest and Eucalyptus plantation were higher than other land use types suggesting that two management strategies for improving soil conditions in the watershed: to maintain and preserve the forest in order to maintain carbon storage in the future and to recover abandoned crop land and degraded lands by establishing tree plantations to avoid overharvesting in natural forests.

SATEEC ArcView GIS 시스템을 이용한 홍천군 자운리 유역 무허가경작지의 산림 환원에 따른 토양유실 및 유사저감 분석 (Soil Erosion and Sediment Yield Reduction Analysis with Land Use Conversion from Illegal Agricultural Farming to Forest in Jawoon-ri, Kangwon using the SATEEC ArcView GIS System)

  • 장원석;박윤식;김종건;최중대;임경재
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.1300-1304
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    • 2008
  • The fact that soil loss causing to increase muddy water and devastate an ecosystem has been appearing upon a hot social and environmental issues which should be solved. Soil losses are occurring in most agricultural areas with rainfall-induced runoff. It makes hydraulic structure unstable, causing environmental and economical problems because muddy water destroys ecosystem and causes intake water deterioration. One of three severe muddy water source areas in Soyanggang-dam watershed is Jawoon-ri region, located in Hongcheon county. In this area, many cash-crops are planted at illegally cultivated agricultural fields, which were virgin forest areas. The purpose of this study is to estimate soil loss with current land uses (including illegal cash-crop cultivation) and soil loss reduction with land use conversion from illegal cultivation back to forest. In this study, the Sediment Assessment Tool for Effective Erosion Control (SATEEC) ArcView GIS system was utilized to assess soil erosion. If the illegally cultivated agricultural areas are converted back to forest, it is expected to 17.42% reduction in soil loss. At the Jawoon-ri region, illegally cultivated agricultural areas located at over 30% and 15% slopes take 47.48 ha (30.83%) and 103.64 ha (67.29%) of illegally cultivated agricultural fields respectively. If all illegally cultivated agricultural fields are converted back to forest, it is expected that 17.41% of soil erosion and sediment reduction, 10.86% reduction with forest conversion from 30% sloping illegally agricultural fields, and 16.15% reduction with forest conversion from 15% sloping illegally agricultural fields. Therefore, illegally cultivated agricultural fields located at these sloping areas need to be first converted back to forest to maximize reductions in soil loss reduction and muddy water outflow from the Jawoon-ri regions.

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Spatial Characteristics and Driving Forces of Cultivated Land Changes by Coupling Spatial Autocorrelation Model and Spatial-temporal Big Data

  • Hua, Wang;Yuxin, Zhu;Mengyu, Wang;Jiqiang, Niu;Xueye, Chen;Yang, Zhang
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제15권2호
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    • pp.767-785
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    • 2021
  • With the rapid development of information technology, it is now possible to analyze the spatial patterns of cultivated land and its evolution by combining GIS, geostatistical analysis models and spatiotemporal big data for the dynamic monitoring and management of cultivated land resources. The spatial pattern of cultivated land and its evolutionary patterns in Luoyang City, China from 2009 to 2019 were analyzed using spatial autocorrelation and spatial autoregressive models on the basis of GIS technology. It was found that: (1) the area of cultivated land in Luoyang decreased then increased between 2009 and 2019, with an overall increase of 0.43% in 2019 compared to 2009, with cultivated land being dominant in the overall landscape of Luoyang; (2) cultivated land holdings in Luoyang are highly spatially autocorrelated, with the 'high-high'-type area being concentrated in the border area directly north and northeast of Luoyang, while the 'low-low'-type area is concentrated in the south and in the municipal area of Luoyang, and being heavily influenced by topography and urbanization. The expansion determined during the study period mainly took place in the Luoyang City, with most of it being transferred from the 'high-low'-type area; (3) elevation, slope and industrial output values from analysis of the bivariate spatial autocorrelation and spatial autoregressive models of the drivers all had significant effects on the amount of cultivated land holdings, with elevation having a positive effect, and slope and industrial output having a negative effect.

Managing Soil Organic Matter and Salinity by Crop Cultivation in Saemangeum Reclaimed Tidal Land

  • Bae, Hui Su;Jang, Hyeonsoo;Hwang, Jae Bok;Park, Tae Seon;Lee, Kyo Suk;Lee, Dong Sung;Chung, Doug Young
    • 한국토양비료학회지
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    • 제51권1호
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    • pp.50-60
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    • 2018
  • This study was to evaluate the effect of organic amendments incorporation on soil properties and plant growth under two different soil salinity levels and various cultivated crops at Saemangeum reclaimed tidal land for three years from 2012 to 2014. The soil texture of the experimental site was sandy loam. Four different crops, sesbania (Sesbania grandiflora), sorghum-sudangrass hybrid (Sorghum bicolor-Sorghum sudanense), rice (Oryza sativa L.) and barley (Hordeum vulgare) were cultivated at low (< $1dS\;m^{-1}$) and high (> $4dS\;m^{-1}$) soil salinity levels. The soil salinity was significantly lowered at the rice cultivation site compared to continuous upland crops cultivation site in high soil salinity level. But the soil salinity was increased as cultivating sesbania coutinuously in low soil salinity level. The soil organic matter content was increased with the incorporation of straw at the continuous site of rice and barley, and the average of soil organic matter was increased by $0.9g\;kg^{-1}$ per year which was effective in soil aggregate formation. The highest biomass yield plot was found in barley (high salinity level) and sesbania (low salinity level) cultivation site, respectively. Our research indicates that rice cultivation in paddy field with high salinity level was effective in lowering soil salinity and sesbania cultivation was useful to biomass production at upland with low salinity. In conclusion, soil salinity and organic matter content should be considered for multiple land use in newly reclaimed tidal land.

중국 길림성 백성지역 흑개토의 이화학성 및 인산 흡착 특성 (Physical-chemical Properties and Phosphorus Adsorption Characteristics of Soils in Baicheng, China)

  • 김성애;이상모;최우정;류순호
    • Applied Biological Chemistry
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    • 제44권2호
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    • pp.92-96
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    • 2001
  • 농경지로의 개발 가능성이 높은 중국 길림성 백성지역의 주요한 토양인 흑개토의 이화학성 및 인산 흡착특성을 조사하였다. 토지 이용방식 또는 재배작물이 서로 다른 중국 길림성 백성지역 4곳과 중국 용정에 위치한 연변 대학교 농과대학 부속 시험장 1곳에서 1993년 8월에 토양을 채취하여 실험을 수행하였다, 중국 길림성 백성지역 토양의 $_PH$는 미경작지 10.2, 경작지는 $7.3{\sim}7.6$으로 비교적 높았다. 양이온 치환용량은 20 cmol(+) $kg^{-1}$ 이상이었으며, 치환성 양이온 중 Na는 특히 표토에 많이 존재하였으며, Ca의 함량이 매우 높아 Ca 포화율이 100% 이상을 나타내었다. 토양 포화 침출액의 주요 양이온은 Na이었으며, ECe와 SAR을 기준으로 백성 미경작지 토양은 염류-나트륨성 토양, 경작지 토양은 나트륨성 또는 일반 토양에 해당하였다. 백성지역 토양의 유효인산 함량은 10mg P $kg^{-1}$ 미만으로 아주 낮았으며, 최대 인산흡착량은 $ $ mg P $kg^{-1}$이었다. 길림성 백성지역 토양의 경우 유효인산 함량이 매우 낮아 토양 비옥도 중진을 위한 인산질 비료의 시용과 함께 토양 투수성의 개선 등과 같은 적절한 토양 관리가 필요하며, 용정지역 토양의 경우에는 인산흡착 특성을 고려하여 인의 과잉 축적을 방지하기 위한 인산질 비료의 적정 시용을 권장하여야 한다.

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기계개간의 새로운 작업체계와 숙지화 촉진에 관한 연구 (A Study on a New Working-system of Mechanical Land Clearing and Development of Fertle Soil.)

  • 황은
    • 한국농공학회지
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    • 제13권1호
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    • pp.2162-2176
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    • 1971
  • 옛날부터 우리들의 선조들이 한반도에 정착하면서부터 산야를 파서 농경지를 조성하였으며 지력(地力)을 회복하는 대신 토지를 교체하면서 오랫동안 봉건적 농업을 이루어 나왔다. 근대농업은 기계를 도입하였으며 따라서 농지조성도 기계개간을 하게 되었다. 종래와 같이 산지를 파면 된다는 피상적인 형식에 그칠 것이 아니라 실질적으로 개간작업방식, 작업시간, 작업능율, 작물재배효과 등을 종합하여 가장 우수한 방법을 추출(抽出) 연구하여 제3차 경제개발 5개년 계획기간 ($1972{\sim}1976$)에 21만정보의 농경지를 조성하므로서 조국의 근대화에 이바지하고져 기계개간의 새로운 작업체계와 숙지화촉진에 관한 연구를 하게되어 다음과 같은 사실들을 알게 되었다. (1) 토지경사도 $10^{\circ}$정도는 계단전개간보다 원지형개간을 하는 것이 개간작업이나 영농작업에 유리하다. (2) 개간작업에서 잡초를 태우거나 청소하지 않고 가급적 표토에 혼입함으로서 유기물을 공급하고 토양을 팽연하게 하였다. (3) 개간작업은 불도우저, 트랙터, 해로우 자동경운기, 로오타리 틸러등 여러 가지 장비를 갖추어야 일관성있는 작업을 할 수 있다. (4) 발근작업은 나무뿌리가 땅속에 뻗어있는 모양에 관계가 있는 것으로 직근계, 측근계, 사근계 중 직근계가 뽑기 어려웠다. (5) 주름잡이구(IV)의 개간작업이 발근과 첫갈이가 확실하며 쇠토작업도 간단히 처리되었다. (6) 운토량은 $240m^3/10a$로 표준구보다 15.6%정도 증가하였으나 개간작업시간은 2시15분45초/10a로 표준구의 1/3정도 걸렸다. 즉 2/3나 단축되었다. (7) 디스크 해로우잉(쇠토작업)은 기경지(旣耕地)쇠토작업에 비하여 작업시간이 50%증가하여 15분/10a 걸렸다. (8) 토오타리 틸링은 작업시간이 기경지에 비하여 2.4배나 증가하여 1시47분43초/10a이었다. 그 까닭은 심토(心土)의 쇠토작업이 어려웠기 때문이다. (9) 개간지는 토성에 맞추어 비료를 투입하여야 한다. 특히 퇴비는 1,200kg/10a. 석회는 20kg/10a 이상 투입할 것이다. 그리고 퇴비생산을 위하여 앞으로 채초지(採草地)가 필요하게 되었다. (10) 목초재배시험은 현재 재배중이어서 아직 그 결과를 알 수 없으나 개간효과와 숙지화정도가 밝혀질 것으로 기대된다.

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The Growth phase and yield difference of Kenaf(Hibiscus cannabinus L.) in reclaimed land according to the source and physical types of organic materials

  • Kang, Chan Ho;Lee, In Sok;Yoo, Young Jin;Seo, Sang Young;Choi, Kyu Hwan;Lee, Ki Kwon;Na, Young Eun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.369-369
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    • 2017
  • To improve the reclaimed land soil, we put organic materials (Chopped kenaf, decomposed rice hull, rice straw, pellet type manure compost) into reclaimed land for 3,000 kg per 10a. As a result, EC of reclaimed soil was lowered by 58% ($1.2dS/m{\rightarrow}0.5$), content of soil organic material was risen from 6.7 g/kg to 16.0 (1.4 fold ${\uparrow}$), porosity of soil was elevated from 1.57 % to 1.31 (16.6% ${\downarrow}$), soil hardness was reduced from 20.2 mm to 17.9 (11.4% ${\downarrow}$) and plow layer soil was deepen from 19.8 cm to 26.8 (35% ${\uparrow}$). In the wake of physiochemical improvement of reclaimed soil, the growth phase of crops became better contrast to non-treatment. For example the plant height of Kenaf (Hibiscus cannabinus L.) cultivated in reclaimed land containing organic materials was lengthen by 18.8%. Especially, the improvment effect of pellet type manure compost and rice straw was more preferable. When the kenaf was cultivated in reclaimed land containing organic materials, the yield was become higher. The average yield of organic materials treatment was 9,218 kg/10a, and it was 2.1 times higher than non-treatment (4,368kg/10a). And the effective treatments to increase yields were pellet type manure compost (10,848 kg/10a, 148% ${\uparrow}$), rice straw (120% ${\uparrow}$) and chopped kenaf (95% ${\uparrow}$). To intensify the effect of physicochemical enhancement of reclaimed land soil and improving yields, we put into various physical types of organic materials (pellet type, liquid type, powdered type). The most effective organic materials type for enhancement of physicochemical properties (EC of reclaimed soil was lowered, content of soil organic material was risen, porosity of soil was elevated, soil hardness was reduced, plow layer soil was deepen) was pellet. And source to maintain better growth phase and get more yield were liquid and pellet types. When we used pellet type organic material, the plant height of kenaf was lengthen by 41% in comparison with non-treatment and yield was more than 122% more. And also liquid type could get more yield (by 127%) and growth phase (by 38%)

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