• 제목/요약/키워드: Soil nutrient

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요소(尿素)를 시용(施用)한 삼림토양(森林土壤)과 토양수중(土壤水中) 양분함량(養分含量)의 계절적(季節的) 변화(變化) (Seasonal Changes in the Nutrient Content of Soil and Soil Water Affected by Urea Application in Forest)

  • 진현오;주영특;손요환;오종민;정덕영
    • 한국토양비료학회지
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    • 제32권2호
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    • pp.115-122
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    • 1999
  • 본 연구는 인공조림된 잣나무임분과 일본잎갈나무임분을 대상으로 1997년 6월에 요소 (N: $150kg\;ha^{-1}$)를 시용하고 1년간의 토양 및 토양수중 양분함량 변화를 조사하였다. 토양 pH는 시용 후 잣나무임분에서는 급격한 감소경향을, 일본잎갈나무임분에서는 완만한 증가경향을 보였으나 시간이 경과함에 따라 시용 전 농도수준으로 회복되고 있었으며, 전탄소, 전질소는 시용 후 증가 경향을 보이다. 일정한 값을 나타내고 있었다. 치환성 Ca, Mg는 시용 후 감소하는 경향을 보였으나 치환성 K는 증가하는 경향을 보였다. 일본잎갈나무의 토양수의 pH를 제외하고는 양임분 모두 토양수의 pH와 시용 후 감소하는 양이온중 Ca, $NH_4-N$, 음이온중 $NO_3-N$, $SO_4-S$, Cl 농도는 초기간계에서 증가하였으나, K, Mg, 농도는 시용 후 1~2개월 후부터 증가하기 시작하여 4개월 후에 최고 농도치를 나타내고 있었다. 시용 후 급격히 증가한 토양수중 각 용존원소 농도가시용 전과 같은 수준의 농도로 회복되는데에는 Ca, $NH_4-N$, $SO_4-S$, Cl에서 약 1개월, $NO_3-N$, K, Mg에서는 6~12개월로 용존원소에 따라 그 경향을 달리하고 있다.

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이온선택성 전극을 이용한 토양추출물의 질산 및 칼륨이온 측정 (Sensing Nitrate and Potassium Ions in Soil Extracts Using Ion-Selective Electrodes)

  • 김학진
    • Journal of Biosystems Engineering
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    • 제31권6호
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    • pp.463-473
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    • 2006
  • Automated sensing of soil macronutrients would allow more efficient mapping of soil nutrient spatial variability for variable-rate nutrient management. The capabilities of ion-selective electrodes for sensing macronutrients in soil extracts can be affected by the presence of other ions in the soil itself as well as by high concentrations of ions in soil extractants. Adoption of automated, on-the-go sensing of soil nutrients would be enhanced if a single extracting solution could be used for the concurrent extraction of multiple soil macronutrients. This paper reports on the ability of the Kelowna extractant to extract macronutrients (N, P, and K) from US Corn Belt soils and whether previously developed PVC-based nitrate and potassium ion-selective electrodes could determine the nitrate and potassium concentrations in soil extracts obtained using the Kelowna extractant. The extraction efficiencies of nitrate-N and phosphorus obtained with the Kelowna solution for seven US Corn Belt soils were comparable to those obtained with IM KCI and Mehlich III solutions when measured with automated ion and ICP analyzers, respectively. However, the potassium levels extracted with the Kelowna extractant were, on average, 42% less than those obtained with the Mehlich III solution. Nevertheless, it was expected that Kelowna could extract proportional amounts of potassium ion due to a strong linear relationship ($r^2$ = 0.96). Use of the PVC-based nitrate and potassium ion-selective electrodes proved to be feasible in measuring nitrate-N and potassium ions in Kelowna - soil extracts with almost 1 : 1 relationships and high coefficients of determination ($r^2$ > 0.9) between the levels of nitrate-N and potassium obtained with the ion-selective electrodes and standard analytical instruments.

버드나무(Salix spp.) 조림지내 벌채에 의한 년간 토양양분 수탈 (Annual Removal of Soil Nutrient by Stem Harvest in a Willow (Salix spp.) Plantation)

  • 박관수
    • 한국토양비료학회지
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    • 제31권4호
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    • pp.384-391
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    • 1998
  • 목재에너지 공급을 위해 1987년 미국 뉴욕주립대 연습림에 조성된 버드나무(Salix spp.) 조림지를 대상으로, 매년 벌채되는 지상부 biomass와 양분의 양을 측정하여 벌채에 의한 양분수탈을 평가하였다. 5개의 버드나무 clone과 1개의 잡종 포플러가 식재되었으며, 식재지의 시비구에 매년 N($336kg\;ha^{-1}$), P($112kg\;ha^{-1}$), K($224kg\;ha^{-1}$)를 시비하였으며, 조림지에 식재된 모든 공시목은 매년 벌채되었다. 식재 후 7년동안(1987-1993) 식재지로부터 벌채에 의한 연평균 N, P, K, Ca, 그리고 Mg의 수탈은 각각 30-70, 4-10, 14-40, 19-59 그리고 $3-5kg\;ha^{-1}$이었다. 시비구에서 높은 biomass 생산과 양분수준 때문에 대조구보다는 시비지역의 수목에서 양분수탈이 높게 나타났다. 비록, 벌채로 인한 양분수탈이 대조구보다 시비지에서 큰 것으로 나타났지만, 그 양은 시비처리의 양보다 적기 때문에 토양의 양분 수준에 크게 영향을 주지는 않을것으로 사료 된다. 시비없이 벌채에 의한 양분수탈은 장기간에 걸쳐 토양양분의 결핍을 가져올 것으로 판단된다. 전체 식재 clone중 clone SV1의 양분 유효도가 가장 높았다.

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Effects of Plant and Soil Amendment on Remediation Performance and Methane Mitigation in Petroleum-Contaminated Soil

  • Seo, Yoonjoo;Cho, Kyung-Suk
    • Journal of Microbiology and Biotechnology
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    • 제31권1호
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    • pp.104-114
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    • 2021
  • Petroleum-contaminated soil is considered among the most important potential anthropogenic atmospheric methane sources. Additionally, various rhizoremediation factors can affect methane emissions by altering soil ecosystem carbon cycles. Nonetheless, greenhouse gas emissions from soil have not been given due importance as a potentially relevant parameter in rhizoremediation techniques. Therefore, in this study we sought to investigate the effects of different plant and soil amendments on both remediation efficiencies and methane emission characteristics in diesel-contaminated soil. An indoor pot experiment consisting of three plant treatments (control, maize, tall fescue) and two soil amendments (chemical nutrient, compost) was performed for 95 days. Total petroleum hydrocarbon (TPH) removal efficiency, dehydrogenase activity, and alkB (i.e., an alkane compound-degrading enzyme) gene abundance were the highest in the tall fescue and maize soil system amended with compost. Compost addition enhanced both the overall remediation efficiencies, as well as pmoA (i.e., a methane-oxidizing enzyme) gene abundance in soils. Moreover, the potential methane emission of diesel-contaminated soil was relatively low when maize was introduced to the soil system. After microbial community analysis, various TPH-degrading microorganisms (Nocardioides, Marinobacter, Immitisolibacter, Acinetobacter, Kocuria, Mycobacterium, Pseudomonas, Alcanivorax) and methane-oxidizing microorganisms (Methylocapsa, Methylosarcina) were observed in the rhizosphere soil. The effects of major rhizoremediation factors on soil remediation efficiency and greenhouse gas emissions discussed herein are expected to contribute to the development of sustainable biological remediation technologies in response to global climate change.

인공산성우와 토양시비가 소나무잎의 광합성속도, 왁스 함량 및 접촉각에 미치는 영향 (Effects of Simulated Acid Rain and Soil Fertilizers on Photosynthetic Rate, wax Content, and Contact Angle of Japanese Red Pine(Pinus densiflora Sieb. et Zucc.) Leaves)

  • 최기영;이용범;채의석;이경재
    • 한국대기환경학회지
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    • 제12권3호
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    • pp.263-268
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    • 1996
  • This study was conducted for the assessment of the effects of acid rain and soil fertilizers on photosynthetic rate, was content, and contact angle on 5-year seedlings of Japanese red pine (Pinus densiflora Sieb. et Zucc.) leaves. The seedlings were exposed to pH 3.0 (simulated acid rain), pH 6.5 (groung water) and rain (pH around 4.6). The seedlings were also treated with $Ca(OH)_2, Mg(OH)_2, and Ca(OH)_2 + Mg(OH)_2 + C.F.(compound fertilizer)$. Photosynthetic rate, stomatal conductance, was content, contact angle value, and mineral nutrient content of the leaves were measured and the results were as follows: 1. Photosynthetic rate and stomatal conductance of the leaves increased with the increase of pH. Photosynthetic rate and stomatal conductance increased with application of soil fertilizer in the pH 3.0 treatment, but showed no changes in the rain and the pH 6.5. 2. Contact angle value and was content of the leaves did not change with the pH treatment, but increased with the fertilizer treatments. 3. Mineral nutrient contents of the leaves were lowest in the rain treatment and highest in the pH 6.5 treatment. The increase of mineral nutrient contents was observed with the soil fertilizer treatments.

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Effects of water levels and soil nutrients on the growth of Iris laevigata seedlings

  • Lee, Eun Hye;Lee, Bo Eun;Kim, Jae Geun
    • Journal of Ecology and Environment
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    • 제42권1호
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    • pp.43-49
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    • 2018
  • Iris laevigata is geographically restricted and legally protected in Korea. In this study, a mesocosm study was conducted to examine the effects of environmental conditions such as water levels and soil nutrient conditions on the growth and survival of I. laevigata seedlings. Complete submergence lowered the total number of leaves, biomass, and survival rates. A rise in soil nutrients increased overall seedling growth and increased tiller numbers via the promotion of asexual reproduction. Also, we found that the lowest measured values of seedlings are associated with the most stressful condition due to the interaction of low soil nutrients and high water levels. I. laevigata seedlings, however, are distributed in low-nutrient habitats such as floating mat, even though they do not grow well under these conditions. This study suggests that I. laevigata does not prefer low-nutrient condition but choose another benefit such as low competition. Also, the water level must be lower than the seedling height for effective growth and management of I. laevigata.

식피에 따른 토양과 무기양분의 유실 (The Soil and Mineral Nutrient Erosion on the Floors of Vegetations)

  • 장남기;윤성모
    • 아시안잔디학회지
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    • 제8권3호
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    • pp.149-165
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    • 1994
  • This report was investigated on the soil and mineral nutrient erosions in comparison among the vegetation floors of M isranthus sisensis, Arternisia stelleriana, Rhododendron mucronula turn, Zoysia ja-ponira and Pinus deusitlora communities and the naked soil on Mt. Keum-hak in Cheolwon-Koon, The erosion of clay, silt, fine sand and coarse sand of the surface soils under the Z. japonira grass-land was far less then those of M. sinensis, A. stelleriana, R. murronulatum and P. densiflora com-munities and the naked soil, The loss of mineral nutrients due to the soil erosion was the lowest level in the Z. japonira grassland and the highest level in the P. densiflora forest and the naked soil, respectively.

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친환경 토양 관리 방법과 기준에 대한 평가 (Review of Management Methods and Criteria for Environmentally-Sound Soil)

  • 유진희;이교석;정덕영
    • 농업과학연구
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    • 제35권1호
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    • pp.53-67
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    • 2008
  • The principle goal of environmentally-friendly agriculture is to maintain and conserve water and agriculture environment including drinking water resources by properly using agricultural materials such as agricultural chemicals, chemical fertilizers, and other agricultural materials according to act 19 of foster law of environmentally-friendly agriculture. To achieve these goals, we have to establish Integrated Nutrient Management(INM) and Integrated Pesticide Management(IPM) which are most important core technologies for environmentally-friendly rice cultivation. However, there are lack of criteria and technology for evaluation category according to soil management and its soil classes to practice an environmentally-friendly agriculture. Therefore, we should eatablish the standards to produce the safe agricultural products based on the soil physical and chemical characteristics which are basic properties of soil to accomplish the principle aims of environmentally-friendly agriculture.

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Effect of Long Term Fertilization on Microbial Biomass, Enzyme Activities, and Community Structure in Rice Paddy Soil

  • Lee, Chang Hoon;Kang, Seong Soo;Jung, Ki Youl;Kim, Pil Joo
    • 한국토양비료학회지
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    • 제46권6호
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    • pp.487-493
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    • 2013
  • The effects of long-term fertilization on soil biological properties and microbial community structure in the plough layer in a rice paddy soil in southern Korea were investigated in relation to the continuous application of chemical fertilizers (NPK), straw based compost (Compost), combination these two (NPK + Compost) for last 40 years. No fertilization plot (Control) was installed for comparison. Though fertilization significantly improved rice productivity over control, the long-term fertilization of NPK and compost combination was more effective on increasing rice productivity and soil nutrient status than single application of compost or chemical fertilizer. All fertilization treatments had shown significant improvement in soil microbial properties, however, continuous compost fertilization markedly increased soil enzyme and microbial activities as compared to sole chemical fertilization. Results of microbial community structure, evaluated by EL-FAME (ester-linked fatty acid methyl esters) method, revealed big difference among Control, NPK, and Compost. However, both Compost and Compost+NPK treatments belonged to the same cluster after statistical analysis. The combined application of chemical fertilizer and organic amendments could be more rational strategy to improve soil nutrient status and promote soil microbial communities than the single chemical fertilizer or compost application.

Physico-chemical properties between organic and conventional kiwifruit orchards in Korea

  • Cho, Y.;Kim, B.;Cho, H.;Jeong, B.
    • 한국유기농업학회지
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    • 제19권spc호
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    • pp.242-246
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    • 2011
  • Organic kiwifruit orchard soils were compared with conventional ones in Korea. Soil structure of organic soil had higher gaseous and liquous phase as well as soil porosity in the surface soil. Although the nutritional level of each orchards were quite different among soils, the analysis of both system revealed that organic kiwifruit orchard soil had similar or even higher nutrient level (N and organic matter content in surface soil) compared to conventional ones. The organic matter content of deep soil also had the high tendency in deep soil of organic soil. Higher level of nitrogen in organic surface soil is presumably due to the excessive application of organic compost and liquid fertilizer rather than the contribution by grasses such as green manure. Available phosphorous level of organic system was quite high but similar in surface soil of both system, compared to the recommended level. Potassium, calcium and magnesium levels were also enough in organic kiwifruit orchard soils.