• Title/Summary/Keyword: 순생산량

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Optimum Application Level of Liquid Pig Manure for Increasing Green Manure Crop Yield (녹비생산량 극대화를 위한 돈분액비의 최적 투입량 구명)

  • Lee, Snag-Gyu;Seo, Dong-Cheol;Kang, Se-Won;Seo, Young-Jin;Choi, Ik-Won;Kim, Min-Ok;Jeon, Won-Tai;Kang, Ui-Gum;Heo, Jong-Soo;Cho, Ju-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.6
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    • pp.1103-1106
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    • 2011
  • Optimum application level of liquid pig manure for increasing Astragalus sinicus L. (ASASI) and Lolium multiflorum Lam. (LOLMU) yield was investigated. The green manure crop yield were generally high in the order of ALPM 100 ${\geqq}$ APLM 75 ${\geqq}$ APLM 50 ${\geqq}$ APLM 0 in site 1 (ASASI), and LPLM 100 ${\geqq}$ LPLM 75 > LPLM 50 ${\geqq}$ LPLM 0 in site 2 (LOLMU). The optimum application level of liquid pig manure was 100% of nitrogen fertilization level.

The Relationship between Annual Precipitation and Vegetation (우리나라의 식생과 연강수량과의 관계)

  • Choi, Dae-Gyu;Kim, Sang-Dan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.402-402
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    • 2011
  • 식생의 성장은 수문순환과 밀접히 연관되어 있으며 특히 강수량은 식생의 연간변동성의 주된 요인이다. 하지만 국내의 경우 이러한 식생과 강수량과의 관계를 알아보기 위한 정량적인 접근은 시도되지 않은 실정이다. 순일차생산량(NPP)은 광합성으로부터 생성된 유기물질에서 성장에 필요한 호흡량을 뺀 것이며, 이는 식생량을 산정할 때 주로 이용된다. 본 연구에서는 우리나라 전역의 50 지역의 5년간의 NPP와 연강수량이 분석에 사용되었다. 비록 자료기간이 관계를 정립하기에는 다소 부족하며 NPP자료 자체의 불확실성이 내포되어 있지만 각 지점별 NPP와 강수량과의 상관성이 매우 높은 지역들이 있는 것으로( ��0.6) 나타났다. 하지만 모든 지역의 자료를 동시에 고려하였을 경우에는 결정계수가 크게 감소하였다($R^2$=0.310). 추가적으로 강우이용효율과 연강수량의 관계를 분석하였으나 결정계수가 0.022로 기존의 문헌과는 달리 이들 사이에 뚜렷한 관계가 나타나지는 않았다. 본 연구를 통하여 확인된 사실은 우리나라의 식생과 강수량 관계에서는 우리나라 전역을 전반적으로 설명할 수 있는 일반적인 선형 관계를 찾기는 힘들다는 것이며, 다만 지역별로 살펴볼 경우 식생-강수량 관계가 비교적 잘 맞는 지역들이 다수 존재한다는 것이다. 따라서 우리나라를 대상으로 한 생태적요소가 고려된 수문모형을 개발할 경우 지역적 특성들이 모형 구조에 반영되어야 할 것이다.

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Biomass and Net Primary Production of Quercus acutissima Natural Forest Ecosystems in Pohang (포항 지역의 상수리나무 천연림 생태계의 물질생산에 관한 연구)

  • 박관수;권기원;송호경
    • Journal of Korea Foresty Energy
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    • v.21 no.1
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    • pp.25-31
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    • 2002
  • This study was carried out to estimate aboveground biomass and net primary production in an average 37-year-old Quercus acutissima stand of Pohang area. Ten sample trees were cut in the forest and soil samples were collected in August, 2001. Estimation for aboveground biomass and net primary production was made by the equation model Wt=$aD^b$ where Wt is ovendry weight in kg and D is DBH in cm. Total aboveground biomass was 115.47ton/ha in the study forest. The proportion of each tree component to total aboveground biomass was high in order of bolewood(63.9%), branches(19.8%), bolebark(16.2%) and leaves(1.2%) in the study forest. Aboveground total net primary production was estimated at 7.89ton/ha in the study area. The proportion of each tree component to total net primary production was high in order of bolewood, bolebark, branch, and leaves.

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Productive Structure and Net Production of a Larix leptolepis Planatation (낙엽송 인공 조림 임분의 생산구조와 생산성)

  • 권기철;김홍은;이종희
    • Journal of Korea Foresty Energy
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    • v.17 no.1
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    • pp.1-7
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    • 1998
  • This study was to investigate the productivity of 24-year-old Larix leptolepis plantation in the Experimental Forest of Chungbuk National University located in Mt. Worak, Chungchungbuk-do, Korea. Eight plots(l0m x l0m) were established in the larch plantation in the 9th compartment. Eight sample trees were selected and cut off. Stem, branches and leaves were weighed respectively with the stratified clipping method, and analyzed for productive structure. The allometric regression equations between dry weight of each component(stem, branches. and needles) and D$^2$H were obtained. The results obtained are summarized as follows; (1) Photosynthetic layer of Larix leptolepis was shown at about 13m in height, and maximum needle amount of crown at 15-l6m in height. (2) The total biomass of aboveground was 186.25tons/ha(86.3% from stem, 9.9% from branches and 3.8% from needles). (3) Annual net production of aboveground was 12.17tons/ ha/yr, and the ratios of stem, branches and needles to that of aboveground, 0.835, 0.12, and 0.045, respectively.

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Annual Carbon Storage by Fine Root Production in Quercus variabilis Forests (충주지역 굴참나무림의 세근에 의한 탄소축적)

  • 박관수;임재구
    • Korean Journal of Environment and Ecology
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    • v.17 no.4
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    • pp.360-365
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    • 2004
  • This study was carried out to estimate net fine root carbon production in Quercus variabilis natural stands in Chungiu area. Soil samples were taken in 0-30cm, 30-60cm, and 60-90cm soil depths from April to November using soil sampler. Fine root carbon biomass was higher in 0-30cm soil depth than the other soil depths. Net fine root carbon production (kg/㏊/yr) were 671kg in 0-30cm soil depth, 599kg in 30-60cm soil depth, and 479kg in 60-90cm soil depth, and 1749kg in 0-90cm soil depth. fine root turnover rates were 0.43 in 0-30cm soil depth, 0.96 in 30-60cmsoil depth, and 1.03 in 60-90cm soil depth. N, p, K, and Mg input into the soil (kg/㏊/yr) due to fine root turnover at 0-90cm soil depth in this study were 33.9kg, 1.8kg, 11.4kg and 20.1kg, respectively.

Effect of Content of Crop Component on the Bioethanol Production (작물의 성분 함량이 바이오에탄올 생산에 미치는 영향)

  • Lee, Kyung-Eun;Lee, Jae-Yeon;Kim, Keun
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.53 no.3
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    • pp.339-346
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    • 2008
  • The contents of starch, moisture, crude protein, crude fat, crude fiber, and ash of different varieties of various crops such as brown rice, barley, corn, sweet potato were analyzed. The average starch contents of brown rice, barley, corn, and sweet potato were $70.1{\pm}0.4\;{\sim}\;72.2{\pm}2.1$, $68.7{\pm}0.2\;{\sim}\;71.4{\pm}1.2$, $67.6{\pm}0.8\;{\sim}\;69.4{\pm}1.8$, and $21.7{\pm}0.9\;{\sim}\;28.3{\pm}0.5%$, respectively. The ground powder of each starchy substrate was suspended in distilled water, and then liquefied, saccharified, and fermented by dried active yeast at 32 for 4 days. By statistical analysis, the effectiveness of the contents of the different components such as starch, moisture, crude protein, crude fat, crude fiber, and ash of the crops on the ethanol production were examined. The results showed that the starch content positively affected the ethanol production in all the tested cereals and sweet potato. In brown rice, ash content affected negatively the ethanol production. In barley, protein content affected negatively the ethanol production, while fiber content affected positively the ethanol production. The sweet potato containing higher content of moisture produced less amount of ethanol.

Seasonal Changes of the Vegetation Structure and the Primary Production in the Disturbed Banks of the Upo Wetland (우포늪의 교란된 제방에서 식생 구조의 계절적 변화와 1차생산)

  • Kang, Eun-Yeong;Kim, Tae-Geun;Oh, Kyung-Hwan
    • Journal of Wetlands Research
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    • v.11 no.3
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    • pp.61-70
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    • 2009
  • Seasonal changes of flora, vegetation structure, and primary production for the vascular plants were investigated in the disturbed bank, Daedaejae, one of the reinforced bank of Upo wetland, in Changnyeong-gun, Gyeongsangnam-do, Korea from October 2005 to October 2006. The flora of the whole study area, the fabricated and the non-fabricated bank area were composed of 78, 72, 75 taxa, respectively. Among all of them, hydrophytes, hygrophytes, and mesophytes were 3, 33, and 42 taxa, respectively. The naturalized plants were 20 taxa, which was 25.6% of 78 taxa distributed in the study area. Dominant species of the fabricated and the non-fabricated bank area was Equisetum arvense and Trifolium repens, respectively. Importance values of the naturalized plants such as Erigeron annuus, Humulus japonicus, Astragalus sinicus and Ambrosia artemisiifolia var. elatior were relatively high in both area. The species diversity indices(H') were 1.010~1.450, and those were relatively high in October and low in March in both area. Those of the non-fabricated bank area was higher than the fabricated bank area during the whole study period. The similarity indices(CCS) between two kinds of banks were 0.359~0.456, and was lowest in March and highest in August, the culmination period of the vascular plants. Net primary production in the fabricated bank area was $417.1\;g/m^2$, and those of Phragmites communis, Oenothera odorata, Miscanthus sacchariflorus were 179.5, 84.0, and $66.1\;g/m^2$, respectively. Net primary production in the nonfabricated bank area was $392.7\;g/m^2$, and those of Erigeron canadensis, Miscanthus sacchariflorus, and Phragmites communis were 102.5, 87.4, and $81.6\;g/m^2$, respectively.

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Studies on the Productive Structure and the Productivity of × Populus albaglandulosa Plantation (은수원사시나무의 조림지(造林地)의 생산구조(生産構造)와 생산성(生産性))

  • Kim, Joon Ho;Sun, Soon Hwa;Lee, Suk Koo;Kim, Chung Suk
    • Journal of Korean Society of Forest Science
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    • v.35 no.1
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    • pp.9-14
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    • 1977
  • The productive structure and the productivity of ${\times}$Populus albaglandulosa plantations, where are middle parts of the Korean peninsula, were studied by means of stratifying clip technique and of allometry. The densities of stands in the sample areas were 693 trees/ha in 6 year-old plantation and 527 or 625 trees/ha in 9 year-old one. The photosynthetic part of the productive structure was not shown normal conical form but layering. So this was efficient to transmit solar radiation into the stand floor. The standing crop of the terrestrial parts of 6 year-old plantation was 18.11 ton/ha and that of 9 year-old one 38.8 to 47.3 ton/ha. The wood volume to trunk to 6 year-old was $31.3m^3/ha$ and that of 9 year-old was 68.8 to $83.9m^3/ha$. The annual net production of 6 year-old plantation was 4.8 ton/ha/year and that of 9 year-old one was 10.0 to 11.7 ton/ha/year and its wood volume of trunks was 17.9 to $21.1m^3/ha/year$. In the 9 year-old plantation the standing crop or the annual net production was different between two sample areas. This seemed that the cause was not due to chemical character but to physical character of soil.

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Estimation of Change in Soil Carbon Stock of Pinus densiflora Forests in Korea using KFSC Model under RCP 8.5 Climate Change Scenario (한국형 산림토양탄소모델(KFSC Model)을 이용한 RCP 8.5 기후변화 시나리오 하에서의 국내 소나무림 토양탄소 저장량 장기 변화 추정 연구)

  • Park, Chan-woo;Lee, Jongyeol;Yi, Myongjong;Kim, Choonsig;Park, Gwan Soo;Kim, Rae Hyun;Lee, Kyeong Hak;Son, Yowhan
    • Journal of Climate Change Research
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    • v.4 no.2
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    • pp.77-93
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    • 2013
  • Global warming accelerates both carbon (C) input through increased forest productivity and heterotrophic C emission in forest soils, and a future trend in soil C dynamics is uncertain. In this study, the Korean forest soil carbon model (KFSC model) was applied to 1,467,458 ha of Pinus densiflora forests in Korea to predict future C dynamics under RCP 8.5 climate change scenario (RCP scenario). Korea was divided into 16 administrative regions, and P. densiflora forests in each region were classified into six classes by their stand ages : 1 to 10 (I), 11 to 20 (II), 21 to 30 (III), 31 to 40 (IV), 41 to 50 (V), and 51 to 80-year-old (VI+). The forest of each stand age class in a region was treated as a simulation unit, then future net primary production (NPP), soil respiration (SR) and forest soil C stock of each simulation unit were predicted from the 2012 to 2100 under RCP scenario and constant temperature scenario (CT scenario). As a result, NPP decreased in the initial stage of simulation then increased while SR increased in the initial stage of simulation then decreased in both scenarios. The mean NPP and SR under RCP scenario was 20.2% and 20.0% higher than that under CT scenario, respectively. When the initial age class was I, IV, V or VI+, predicted soil C stock under CT scenario was higher than that under RCP scenario, however, the countertrend was observed when the initial age class was II or III. Also, forests having a lower site index showed a lower soil C stock. It suggested that the impact of temperature on NPP was higher when the forests grow faster. Soil C stock under RCP scenario decreased at the end of simulation, and it might be derived from exponentially increased SR under the higher temperature condition. Thus, the difference in soil C stock under two scenarios will be much larger in the further future.