• Title/Summary/Keyword: Organic soils

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Chemical Properties of the Horticultural Soils in the Plastic Film Houses in Korea (우리나라 시설원예(施設園藝) 재배지(栽培地) 토양(土壤) 화학적특성(化學的特性))

  • Jung, Beung-Gan;Choi, Jeong-Weon;Yun, Eul-Soo;Yoon, Jung-Hui;Kim, Yoo-Hak;Jung, Goo-Bok
    • Korean Journal of Soil Science and Fertilizer
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    • v.31 no.1
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    • pp.9-15
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    • 1998
  • A survey was conducted to investigate the chemical properties of soils such as pH, electrical conductivity, total organic matter content, soluble nitrate, available phosphate and major exchangeable canons, in plastic film houses at 513 sites. All the parameters surveyed in the plastic film house were much higher than those of open field soils. Particularly conspicuous was the accumulation of available P, exchangeable K and the occurrence of nitrate at relatively high concentration in both top soil(0-20 cm) and sub-soil(20-40 cm). In 70-80% of cases, the contents of available P and exchangeable K in top soils, were found to be higher than optimum levels. There was positive linear correlation between the content of exchangeable rations, and nitrate and EC of soils. The correlation coefficient was greater in the order of nitrate-EC > Mg-nitrate > K-nitrate > Ca-nitrate. The successive cultivation of horticultural crops in the plastic houses tended result in the accumulation of available P, exchangeable K and total organic matter in the soil.

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Organic Manure Compost and Inorganic Fertilizer Levels Affect Maize Growth in Barren Soils (척박지에서 퇴비와 무기질 비료가 옥수수 생장에 미치는 영향)

  • Kyung-Hee Kim;Gyu Won Kim;Sang-Ryong Lee;Byung-Moo Lee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.68 no.4
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    • pp.383-391
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    • 2023
  • This study aimed to investigate the effect of manure compost content on early growth of maize in barren soils, to establish cultivation techniques that can increase maize yields on barren soils and to provide information on cultivation techniques. The results showed that in the manure compost treatments (1,500 and 1,000 kg/10a), yields increased with increasing amounts of manure compost compared to those of standard fertilization and decreased with decreasing amounts of manure compost. In addition, in fields with the no manure compost treatment (0 kg/10a), yields decreased overall compared to yields of fields treated with manure compost (1,500 and 1,000 kg/10a) regardless of the amount of fertilization. Maize growth was good irrespective of variety when compost was applied in high amounts to the barren soil, but poor initial growth was observed in all varieties in the untreated plots where no compost was applied to the barren soil. These results confirm that maize is affected by organic (manure compost) fertilizer in all aspects of its growth, and that a minimum of 1,000 kg/10a of manure compost and two-thirds (0.6) of chemical fertilizer should be applied to ensure stable maize yields, particularly when maize is grown on barren soils.

Effect of Organic Fertilizers Application on Radish and Cabbage Growth (무우, 배추생육(生育)에 대한 수종의 유기질비료(有機質肥料) 시용효과)

  • Lim, Soo-Kil;Lee, Kyu-Ha
    • Korean Journal of Soil Science and Fertilizer
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    • v.25 no.1
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    • pp.52-56
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    • 1992
  • 1. Application of N.P.K compound fertilizer increased N.P.K contents in soils and application of peat and Miwon organic fertilizer showed the trend of increasing N contents in soils also. 2. N, Ca and Mg contents in radish leaves(top) were higher than in radish(bottom) but P content was revered. And application of N.P.K compound fertilizer always incresased N content in radish plants regardless of any other fertilzer addition. 3. Application of N.P.K compound fertilizer increased N.P.K contents in cabbage plants more compare to no application of N.P.K compound fertilizer regardless of other fertilizer application. 4. Plant growth status and yield (fresh weight) of radish and cabbage revealed that every fertilizer application increased plant growth and yield compared to no fertilizer application, but N.P.K compound fertilizer showed higher increment compared to organic matter fertilizer application except Miwon(2 level)treatment. However, organic fertilizer application together with N.P.K compound fertilizer level recommended showed the highest in radish and cabbage yield. 5. Effects of four organic fertilizer on yields(fresh weight) of radish and cabbage were in the order of Miwon organic fertilizer ${\geq}$ Biovin organic fertilizer > Compost ${\leq}$ Peat.

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Changes in Soil Biota Affected by the Application of Organic Materials in Reclaimed Upland and Paddy-converted Soils Cultivated with Korea Ginseng (개간 및 답전윤환 인삼재배지에서 유기물처리에 따른 토양생물상 변화)

  • Eo, Jin-U;Park, Kee-Choon;Yeon, Byung-Ryul
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.5
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    • pp.872-877
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    • 2011
  • Cultivation of Korea ginseng in newly reclaimed and paddy-converted fields has been increasing, and evaluation of organic amendment effectiveness is needed in the two soil types. Soil organisms influence organic matter decomposition, and their responses to applications of organic matter were studied. De-oiled cake and compost were applied at $20Mg\;ha^{-1}$ and $40Mg\;ha^{-1}$ in both soil types. Changes in microflora were assessed by analyzing phospholipid fatty acid (PLFA). The abundance of nematodes and microarthropods was measured. Microbial PLFA indicators for microorganisms and microarthropod abundance were greater in reclaimed upland than in paddy-converted soil. There were few differences in the microflora and fauna of reclaimed uplands, regardless of treatment. In paddy-converted soil, the abundance of Oribatida was increased by the application of compost at $20Mg\;ha^{-1}$ and was correlated with PLFA indicators of fungi. The results suggested a minimal influence of organic amendments in reclaimed upland, because the organic matter content and abundance of soil organisms are low in mineral soils. In paddy-converted soil, the effects of organic amendment differ among different soil organisms, and soil properties are important mediators of the effect.

Consolidation settlement of soil foundations containing organic matters subjected to embankment load

  • Feng, Ruiling;Wang, Liyang;Wei, Kang;Zhao, Jiacheng
    • Geomechanics and Engineering
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    • v.24 no.1
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    • pp.43-55
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    • 2021
  • Peatland is distributed in China widely, and organic matters in soil frequently induce problems in the construction and maintenance of highway engineering due to the high permeability and compressibility. In this paper, a selected site of Dali-Lijiang expressway was surveyed in China. A numerical model was built to predict the settlement of the foundation of the selected section employing the soft soil creep (SSC) model in PLAXIS 8.2. The model was subsequently verified by the result of field observance. Consequently, the parameters of 17 types of soils from different regions in China with organic contents varying from 1.1-74.9% were assigned to the numerical model to study the settlement characteristics. The calculated results showed that the duration of primary consolidation and proportion of primary settlement in the total settlement decreased with increasing organic content. Two empirical equations, for total consolidation settlement and secondary settlement, were proposed using multiple linear regression based on the calculated results from the numerical models. The analysis results of the significances of certain soil parameters demonstrated that the natural compression index, secondary compression index, cohesion and friction angle have significant linear relevance with both the total settlement and secondary settlement, while the initial coefficient of permeability exerts significant influence on the secondary settlement only.

Assessment of Dredged Soils and Sediments Properties in the Lower Reach of Nakdong River and Coastal Areas of Busan for Beneficial Uses (낙동강 하류 및 부산연안지역의 준설토와 퇴적토 활용을 위한 특성 평가)

  • Yi, Yongmin;Kim, Gukjin;Sung, Kijune
    • Journal of Soil and Groundwater Environment
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    • v.18 no.1
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    • pp.57-66
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    • 2013
  • Although the quantity of dredged soils has increased owing to recent new harbor construction, sea course management, polluted sediment dredging, and four-river project, the reuse or recycling of those dredged soils has not done properly in Korea. To develop measures to utilize them in various ways for reuse or recycling, the biophysicochemical properties of dredged soils and sediment were assessed in this study. Samples were classified according to their sources-river and sea-by location, and as dredged soil and sediment depending on storage time. The results showed that dredged materials from the sea have high clay content and can be used for making bricks, tiles, and lightweight backfill materials, while dredged materials from the river have high sand content and can be used in sand aggregates. Separation procedures, depending on the intended application, should be carried out because all dredged materials are poorly sorted. All dredged soils and sediments have high salinity, and hence, salts should be removed before use for cultivation. Since dredged materials from the sea have adequate concentrations of nutrients, except phosphate, they can be used for creating and restoring coastal habitats without carrying out any additional removal processes. The high overall microbial activities in dredged materials from the river suggested that active degradation of organic matter, circulation of nutrients, and provision of nutrients may occur if these dredged materials are used for cultivation purpose.

The Detection and a Quantitative Evaluation of Entomopathogenic Nematodes in Cultivated Rhizosphere Soil (경작지 근권 토양내 곤충병원성 선충의 검출 및 정량적 평가)

  • 황경숙;한상미;김윤지;남필원;한송이
    • Korean Journal of Environmental Biology
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    • v.21 no.3
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    • pp.271-275
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    • 2003
  • The direct count and MPN (Most Probable Number) methods were used to measure the number of nematodes in soils collected from cultivated and non-cultivated fields. As a result, the number of nematodes from cultivated soils was higher than the non-cultivated soils (NC -1, NC -2). On the other hand, upon measuring the value from the organo farming cultivated soils (OC, OR) and conventional cultivated soils (CC, CR), the former showed 16 times higher than the latter. These results indicate that nematode population which can multiply in the organic compounds abundantly exist in the organo farming cultivated soil. Isolated entomopathogenie nematodes are composed of two orders, which were Rhabditida and Diplogasterida. To determine the pathogene-city of them using the 5th larvae and pupae silkworm, and the following mean $LD_{90}$ values were found: 24 to 30 hours in Rhabditida and 36 to 48 hours in Diplogasterida nematode, respectively. This study indicates that nematodes are sensitive to this kind of environmental disturbance. Isolated entomopathogenic nematodes were suggested that aye quite within the realms of possibility for biological control agents.

Erodibility of the soils of Korea (경사지(傾斜地) 토양(土壤)의 침식성(浸蝕性) 인자(因子)에 관(關)하여)

  • Jung, Yeong-Sang;Shin, Jae-Sung;Shin, Yong-Hwa
    • Korean Journal of Soil Science and Fertilizer
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    • v.9 no.2
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    • pp.107-113
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    • 1976
  • This study is conducted to find out soil erodibility factor K value which is one of the most important factor to estimate soil loss using a new method for predicting K value, the nomograph, that was first proposed by Whischmeier. K values for 83 soil series including upland and forest soils in Korea were checked up. The result were as follows: The average K value was 0.27 with ranging between 0.05 and 0.51. K values were higher for finer textured soils than for coarser textured soils widely ranged in a textural class, and higher for silty textured and low permeable soils. K value was correlated inversely with organic matter content in range of 3 to 13 percent, but the tendency was not related in range of lower than 3 percent.

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Lignin signatures of vegetation and soils in tropical environments

  • Belanger, E.;Lucotte, M.;Gregoire, B.;Moingt, M.;Paquet, S.;Davidson, R.;Mertens, F.;Passos, C.J.S.;Romana, C.
    • Advances in environmental research
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    • v.4 no.4
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    • pp.247-262
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    • 2015
  • The few lignin biomarker studies conducted in tropical environments are hampered by having to use references signatures established for plants and soils characteristic of the temperate zone. This study presents a lignin biomarker analysis (vanillyls (V), p-hydroxyls (P), syringyls (S), cinnamyls (C)) of the dominant plant species and soil horizons as well as an analysis of the interrelated terrigenous organic matter (TOM) dynamics between vegetation and soil of the $Tapaj{\acute{o}}s$ river region, an active colonization front in the Brazilian Amazon. We collected and analyzed samples from 17 fresh dominant plant species and 48 soil cores at three depths (0-5 cm, 20-25 cm, 50-55 cm) from primary rainforest, fallow forest, subsistence agriculture fields and pastures. Lignin signatures in tropical plants clearly distinguish from temperate ones with high ratios of Acid/aldehyde of vanillyls ((Ad/Al)v) and P/V+S. Contrary to temperate environments, similarly high ratios in tropical soils are not related to TOM degradation along with pedogenesis but to direct influence of plants growing on them. Lignin signatures of both plants and soils of primary rainforest and fallow forest clearly distinguish from those of non-forested areas, i.e., agriculture fields and pastures. Attalea speciosa Palm trees, an invasive species in all perturbed landscapes of the Amazon, exhibit lignin signatures clearly distinct from other dominant plant species. The study of lignin signatures in tropical areas thus represents a powerful tool to evaluate the impact of primary rainforest clearing on TOM dynamics in tropical areas.

Short-Term Effect of Elevated Temperature on the Abundance and Diversity of Bacterial and Archaeal amoA Genes in Antarctic Soils

  • Han, Jiwon;Jung, Jaejoon;Park, Minsuk;Hyun, Seunghun;Park, Woojun
    • Journal of Microbiology and Biotechnology
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    • v.23 no.9
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    • pp.1187-1196
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    • 2013
  • Global warming will have far-reaching effects on our ecosystem. However, its effects on Antarctic soils have been poorly explored. To assess the effects of warming on microbial abundance and community composition, we sampled Antarctic soils from the King George Island in the Antarctic Peninsula and incubated these soils at elevated temperatures of $5^{\circ}C$ and $8^{\circ}C$ for 14 days. The reduction in total organic carbon and increase in soil respiration were attributed to the increased proliferation of Bacteria, Fungi, and Archaea. Interestingly, bacterial ammonia monooxygenase (amoA) genes were predominant over archaeal amoA, unlike in many other environments reported previously. Phylogenetic analyses of bacterial and archaeal amoA communities via clone libraries revealed that the diversity of amoA genes in Antarctic ammonia-oxidizing prokaryotic communities were temperature-insensitive. Interestingly, our data also showed that the amoA of Antarctic ammonia-oxidizing bacteria (AOB) communities differed from previously described amoA sequences of cultured isolates and clone library sequences, suggesting the presence of novel Antarctic-specific AOB communities. Denitrification-related genes were significantly reduced under warming conditions, whereas the abundance of amoA and nifH increased. Barcoded pyrosequencing of the bacterial 16S rRNA gene revealed that Proteobacteria, Acidobacteria, and Actinobacteria were the major phyla in Antarctic soils and the effect of short-term warming on the bacterial community was not apparent.