• Title/Summary/Keyword: 낙엽 분해

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Hydrolytic and Metabolic Capacities of Thermophilic Geobacillus Isolated from Litter Deposit of a Lakeshore (수변 낙엽퇴적층에서 분리한 호열성 Geobacillus의 물질 분해 특성)

  • Baek, Hyun-Ju;Zo, Young-Gun;Ahn, Tae-Seok
    • Korean Journal of Microbiology
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    • v.45 no.1
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    • pp.32-40
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    • 2009
  • To understand contribution of thermophilic microorganisms in decomposition of litter deposits on shore of lakes, we surveyed a lakeshore litter deposit for bacteria growing at $60^{\circ}C$. Ten thermophilic isolates were selected for in-depth characterization, based on their high capacity to degrade high molecular weight organic compounds. Based on phylogenetic analysis on their 16S rRNA gene sequences, all isolates were identified as Geobacillus. The optimal growth temperature and pH of the strains ranged $55{\sim}60^{\circ}C$ and 6.0${\sim}$8.0, respectively. Salinity was inhibitory to the growth of the isolates, showing marked decrease of growth rates at 3% salinity. Based on activities of hydrolytic enzymes and profiles of carbohydrate utilization (determined by API 50 CHB kit), three G. stearothermophilus strains showed patterns clearly distinctive from other isolates. Two G. kaustophilus strains also demonstrated distinctiveness in their metabolic pattern and ecological parameters. However, ecological and metabolic profiles of the other five isolates were more variable and showed some degree of digression from their phylogenetic classification. Therefore, it could be concluded that endospore-forming thermophilic bacteria in lakeshore litter deposits contribute to degradation of organic materials with diverse ecological niches while having successions similar to microbial flora in compost. We propose that the thermophilic isolates and/or their thermo-tolerant enzymes can be applied to industrial processes as appropriate mixtures.

Leaf Litter Breakdown of Quercus mongolica and Calpinus cordata In a Headwater Stream (소하천의 신갈나무와 까치박달 낙엽의 분쇄)

  • Chung, Keun
    • Korean journal of applied entomology
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    • v.40 no.1
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    • pp.23-30
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    • 2001
  • Leaf Litter processing rate of Quercus mongolica was compared with that of Carpinus cordata in a first-order stream draining Mt. Jumbong in Inje-Gun, Kangwon Province. Daily processing rate (-k . day$^{-1}$ ) of Q. mongolica leaf litter in mesh bags was 0.00503, about one-third of that of C. cordata leaf litter. Forty five macroinvertebrate taxa were collected from litter bags; 39 taxi from C. cordate and 38 taxa from Q. mongolica litter bags. Nemoura tau, a precopteran shredder, was the most abundant taxon in both leaf species, and the second was the non-predatory chironomids. In terms of biomass, Gammarus, an amphipodan shredder, was the largest. and followed by Cincticostella castanea, an ephemeropteran gatherers. The biomass of most insect taxa decreased during April to June, while that of non-insect taxa greatly increased during the same time period. Gammarus was the most important shredder talon to the leaf litter breakdown in the experimental stream and appeared to prefer C. cordata to Q. nongolica leaf litter. N. tau, in spite of its abundance, seemed to have a limited effect on the leaf litter processing . Since other shredders were minor compared with these two taxa, leaf litter processing in this stream appeared to largely depend on the feeding ecology of Gammarus.

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Studies on the Extending of Plywood Adhesives used Foliage Powder (낙엽분말(落葉粉末)을 이용(利用)한 합판용(合板用) 접착제(接着劑)의 증량(增量)에 관(關)한 연구(硏究))

  • Kim, Jong-Man;Bark, Jong-Yeol;Lee, Phil-Woo
    • Journal of Korean Society of Forest Science
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    • v.42 no.1
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    • pp.83-100
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    • 1979
  • It was planned and performed to study the possibility on the use of inexpensive and easily acquirable foliage powder, which processed by pulverizing after dried, instead of imported expensive wheat flour for the extending of plywood adhesives. Pine leaves of softwood trees, Poplar, Oak and Sycamore leaves of broad leaved species were selected and harvested to pulverize into the minute foliage powder. The harvested foliages from each selected species were pulverized into 40 mesh particles after dried at $100{\sim}105^{\circ}C$ condition during 24 hours in drying oven. To compare the extending effect of plywood adhesives with these foliage powders 100 mesh wheat flour using at current plywood industry was also prepared. Foliage powder and wheat flour were extended into 10, 20, 30, 50 and 100% to the urea and phenol formaldehyde resin. After plywoods were processed by the above extending method shear strength of extended plywoods were analyzed and discussed. The results obtained at this study are as follows: 1) Among 10% extensions of urea formaldehyde resin plywood, dry shear strength of plywood extended by wheat flours was the highest and that of non-extended plywood the next. Plywood extended with foliage powder showed the lowest dry shear strength. The order of dry shear strength of plywoods extended by foliage powder was that of Oak foliage powder extension, the best, that of Sycamore, that of Pine, and that of Poplar. 2) Among 20% extensions of urea formaldehyde resin plywood, plywood extended by wheat flour showed the highest dry shear strength, and the next was plywood by Poplar foliage powder. All these two showed higher dry shear strength than non-extension plywoods. Except Poplar, dry shear strength of foliage powder extension plywoods was bad, but the order of dry shear strength of plywoods extended by foliage powder was Pine, Poplar and Oak. 3) In the case of 30% extensions of urea formaldehyde resin plywood, dry shear strength of wheat flour extension was the highest and non-extension the next. Dry shear strength of foliage powder extension plywoods was poor with a rapid falling-off in strength. 4) Among 50% and 100% extensions of urea formaldehyde resin plywood, only wheat flour showed excellent dry shear strength. In the case of foliage powder extension, low dry shear strength showed at the 50% extension of Pine and Poplar, and plywoods of 50% extension of Oak foliage powder delaminated without measured strength. All plywoods of 100% foliage powder extension delaminated, and then shear strength were not measured. 5) Among wet shear strength of 10% extensions of urea formaldehyde resin plywood, wheat flour extension was the highest as in the case of dry shear strength, and non-extension plywood the next. Except Poplar foliage extension, all foliage powder extension plywoods showed low shear strength. 6) Wet shear strength of plywoods of 20% extension lowered in order of non-extension plywood, plywood of wheat flour extension and plywood of foliage powder extension, but other plywoods of foliage powder extension except plywoods of Poplar and Oak foliage powder extension delaminated. 7) Wet shear strength of 30% or more extension of urea formadehyde resin plywood were weakly measured only at 30% and 50% extension of wheat flour, and wet shear strength of plywoods extended by foliage powder were not measured because of delaminating. 8) Dry shear strength of phenol formaldehyde plywoods extended by 10% wheat flour was the best, and shear strength of plywoods extended by foliage powder were low, but the order was Oak, Poplar, and Pine. Plywood of Sycamore foliage powder extension delaminated. 9) In the case of 20% extensions of phenol formaldehyde resin, dry shear strength of plywood extended by wheat flour was the best, but plywood of Pine foliage powder extension the next, and the next order was Oak and Poplar foliage powder. Plywood of Sycamore foliage powder extension delaminated. 10) Among dry shear strength of 30% extensions of phenol formaldehyde plywood, that of Pine foliage powder extension was on the rise and more excellent than plywood of wheat flour extension, but Poplar and Oak showed the tendency of decreasing than the case of 20% extension. Plywood of Sycamore foliage powder extension delaminated. 11) While dry shear strength of 50% and 100% extension plywoods were excellent in the case of Pine foliage powder and wheat flour extension, that of hardwood such as Poplar, Oak, and Sycamore foliage powder extension were not measured because of delaminating. 12) As a filler the foliage powder extension of urea formaldehyde resin is possible up to 20% with Poplar foliage powder. And also as an extender for phenol formaldehyde resin, Pine foliage powder can be added up to the same amount as that in the case of wheat flour.

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Productive Structure and energy Storage of the Delta of Nak Dong River (낙동강 하류 삼각주지역 갈대초지의 생산구조와 에너지저장에 관한 연구)

  • 장남기;강호감
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.4 no.3
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    • pp.220-225
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    • 1984
  • In the grassland ecosystem dominated by Phragmites longivalvis in the delta of Nak Dong River, the production, decomposition, and accumulation of organic were estimated by the theoretical analysis. The amounts of organic carbon and organic matter of litter are $1020.43g/m^2\;and\;591.90g/m^2$, respectively. The amounts of organic matter and organic carbon on the grassland floor is $1154.96g/m^2\;and\;669.93g/m^2$, the ratio of annual litter production 'L' to the amount of accumulation on the top mineral soil (F, H and $A_2$ horizons) provided estimates of decay constant k. Constant k is 0.884 in the Phragmites longivalvis community. The vertical levels of organic matter and organic carbon is the highest in 120-140 cm of photosythetic system and in 0-20 cm of non-photosyntic system.

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Decomposition Models of the Organic Matters in Cultural Media and the Litters in Forest (배양액에서의 유기물분해와 식물군락에서의 낙엽분해에 관한 모델)

  • 이웅상;장남기
    • Asian Journal of Turfgrass Science
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    • v.9 no.2
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    • pp.119-129
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    • 1995
  • Decomposition rates of glucose, starch, spinach leaves and litters in forests are calculated by equation dC dt=-kC(Co-1nC), dC- dt=$-kC^2$, and Olson's negative exponential decay model.dC dt = - kC =-kC(Co - InC) showed a very close fit to decomposition of the organic matters in cultural media by purified microorganisms and dC dt=$-kC^2$ to decomposition of the litters in forests. Key words: Organic matters, Cultural media, Glucose, Starch, Leaves, Litters.

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Primary Production and Litter Decomposition of Macrophytes in the Sihwa Constructed Wetlands (시화호 인공습지에서 수생식물의 유기물 생산과 낙엽 분해)

  • Choi, Kwangsoon;Kim, Ho Joon;Kim, Dong Sub;Cho, Kang Hyun
    • Journal of Wetlands Research
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    • v.15 no.3
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    • pp.347-356
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    • 2013
  • To provide the information for the wetland management considering the water treatment ability of macrophytes, the growth characteristics and primary production by reed (Phragmites australis) and cattail (Typha angustifolia), and the decomposition rate of organic matter produced were investigated in two sub-wetlands (Banweol and Donhwa wetlands) of the Sihwa Constructed Wetland (CW) with different chemistry of inflows. The shoot height of P. australis and Typha angustifolia began to increase in March, and reached its peaks in July and August (340cm and 320cm, respectively). The shoot density of P. australis ranging $100{\sim}170EA/m^2$ was higher than that of T. angustifolia (max. $78EA/m^2$). Standing biomass of P. australis ranged from $1,350{\sim}1,980gDM/m^2$, with maximal biomass in Banwol Upper Wetland. And it was larger in upper wetlands than lower wetlands. On the other hand standing biomass of T. angustifolia ($1,940gDM/m^2$) was similar to that of P. australis in Banwol Upper Wetland. Primary productivity of P. australis was in the order of Banwol Upper Wetland ($2,050gDM/m^2/yr$) > Donghwa Lower Wetland ($1,840gDM/m^2/yr$) > Banwol Lowerr Wetland ($1,570gDM/m^2/yr$) ${\fallingdotseq}$ Donghwa Lower Wetland ($1,540gDM/m^2/yr$), and that of T. angustifolia ($2,210gDM/m^2/yr$) was higher than P. australis. Annual production of organic matter produced by P. australis and T. angustifolia was 845 ton DM/yr (423 ton C/yr), and about 90% was comprised of that by P. australis. From the litter decomposition rate (k) (P. australis: leaf 0.0062/day, stem 0.0018/day; T. angustifolia: leaf 0.0031/day, stem 0.0018/day), leaf was rapid degraded compare to stem in both P. australis and T. angustifolia. The litter decomposition rate of leaf was two times rapid P. australis than T. angustifolia, whereas that of stem was same in both. Annual litter decomposition amount of P. australis than T. angustifolia was 285 ton C/yr(67.3% of organic matter produced by macrophytes), indicating that 32.7% of organic matter produced by macrophytes is accumulated in the Sihwa CW.

지혜 깊어지는 건강_우리 아이를 위한 1분 건강 - 가을철 알레르기로부터 우리 아이 지키기

  • Lee, Yun-Mi
    • 건강소식
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    • v.35 no.10
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    • pp.28-29
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    • 2011
  • 가을도 중턱에 닿았다. 파란 하늘, 황금빛 들판, 알록달록 단풍과 낙엽, 시원한 날씨 덕분에 현장학습, 가율소풍 등 아이들의 야외활동이 유독 많은 10월이다. 그런 만큼 아이들 건강에 신경 써야 한다. 가을마다 잊지 않고 찾아오는 감기, 가을철 알레르기 등 아이들은 질병에 노출되어 있기 때문이다.

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The Effect of Heavy Metal Content on the Decomposition of Plant Litter in the Abandoned Mine (폐광지 분포 식물 낙엽의 분해에 미치는 중금속의 영향)

  • Shim, Jae-Kuk;Son, Ji-Hoi;Shin, Jin-Ho;Yang, Keum-Chul
    • Korean Journal of Environment and Ecology
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    • v.24 no.3
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    • pp.279-285
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    • 2010
  • This study was conducted to evaluate the differences between the heavy metal contaminated and non-contaminated Artemisia princeps var. orientalis and Equisetum arvense in litter decomposition processes. The plant samples were collected from abandoned mine tailings and control sites in Cheongyang, South Korea. The abandoned mine tailings have high heavy metal concentration and low soil organic matter contents. The heavy metal contents of mine tailings were about 13 and 28 times higher in As and Cd, compared to those in control soils. Also, the contents of the Cr, Ni and Zn in mine tailings were about 3 to 6 times higher than those in control soil. Samples of two plant species from mine tailings have high heavy metal concentrations compared to those from control sites. The leaf of A. princeps var. orientalis and shoot of E. arvense collected from mine tailings have approximately 23 and 58 times more in As, and 25 and 11 times more in Cd. The mass loss rates of plant litter from mine tailings were slower than those from control sites. During the experimental period, the decomposition of A. princeps var. orientalis leaf from mine tailings and control site showed 50.4% and 65.7% mass loss on the control soil area, respectively. The decomposition of A princeps var. orientalis leaf from mine tailings and control site showed 31.6% and 57.5% mass loss on the mine tailings area, respectively. The decomposition of A. princeps var. orientalis stem from mine tailings and control site showed similar patterns with their leaf decomposition. The decomposition of E. arvense shoot from mine tailings and control site showed 77.8% and 89.3% mass loss on the control soil area, respectively. The decomposition of E. arvense shoot from mine tailings and control site showed 67.6% and 82.1% mass loss on the mine tailings area, respectively. Therefor, the higher contents of heavy metals showed slow decomposition. The results suggested that heavy metal contamination affected the plant litter decomposition processes.

Estimating Width of Firebreak through Experiment Method on Surface Fire (실험분석을 통한 지표화 방화선 구축 폭 평가)

  • Kim, Dong-Hyun
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2011.04a
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    • pp.140-143
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    • 2011
  • 산불의 확산형태 중 지표화 확산을 방지하기 위해 대표적인 진화방법으로는 방화선을 구축하는 것이다. 지표화는 산림의 연료중 낙엽층, 잔가지 등 지표면의 연료층이 열분해되면서 확산되기 때문에 방화선 구축을 통해 연료층을 제거하면 지표화 확산을 저지할 수 있다. 하지만 방화선 구축 폭에 따라 산불확산 방지 효과가 크게 달라질 수 있으므로 적정한 방화선 구축 폭을 설정하여야 한다. 본 연구에서는 적정 방화선 구축 폭을 살펴보기 위해 풍동시험장치를 이용하여 풍속 0, 1, 2, 3m/s조건에서 지표화 화염으로부터 이격 거리에 따른 온도측정과 함께 방화선 구축 폭에 따른 확산가능 여부를 평가하였다. 50cm 폭의 소나무 낙엽에 대한 풍속별 지표화 방화선 구축 실험결과, 풍속 3m/s에서 화염으로부터 소나무 낙엽의 착화온도인 $311^{\circ}C$에 도달하는 거리가 약 0.65m로 나타났고 풍속이 낮을수록 착화온도 도달거리가 줄어드는 것을 알 수 있다. 실제 0.6m 방화선 구축의 경우, 화염이 계속 확산되었고 0.65m 이상의 방화선 구축시에는 화염확산이 이루어지지 않았다. 따라서 향후, 수치해석을 이용한 열유속 평가 결과와 함께 본 연구의 실험결과와 비교평가 함으로써 지표화 산불확산 방지를 위한 적정 방화선 구축 폭 산정을 평가하고자 한다.

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Nitrogen fractionation of organic materials applied to Korean ginseng (고려인삼(高麗人蔘) 유기질비료의 질소성장(窒素性狀)에 대하여)

  • Hong, Jung-Kook;Park, Hoon;Lee, Chong-Hwa
    • Korean Journal of Soil Science and Fertilizer
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    • v.12 no.2
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    • pp.91-97
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    • 1979
  • 1. Nitrogenous compounds of-organic materials as nitrogen sources for Korean ginseng were characterized according to their solubility and chemical forms. 2. The extractable fractionation was as follows : Yakto group : non-extractable N > acid hydrolyzable N > acid nonhydrolyzable N > water sol. N, Litter group : acid hydrolyzable N > non-extractable N > water sol. N > acid non-hydrolyzable N, Bone meal : acid hydrolyzable N > water sol. N > acid non-hydrolyzable N. 3. Nitrogenous compounds in the water sol. fraction were : Yakto group and Litter group : humus N > amino acid N > nitrate N (recognized only in Yakto group) > ammonia N > hexosamine N > amide N, Bone meal : amino acid N > humus N > ammonia N > amide N. And nitrogenous compounds in the acid hydrolyzable fraction were : amino acid N > humus N ${\simeq}$ ammonia N > hexosamine N. 4. Availability was discussed about the major nitrogenous compounds (amino acid, humus and inorganic N) and the solubility.

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