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      리기다소나무와 잣나무 낙엽의 분해율 및 분해과정에 따른 영양염류 함량 변화 = Decay rate and Nutrient Dynamics during Litter Decomposition of Pinus rigida and Pinus koraiensis

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      https://www.riss.kr/link?id=A105995034

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      We examined the nutrient dynamics during the leaf litter decomposition rate and process of Pinus rigida and Pinus koraiensis in Gongju for 21 months from December 2014 to September 2016 as a part of National Long-Term Ecological Research Program in Korea. The remaining weight rate of P. rigida and P. koraiensis leaf litter was 58.27±4.13 and 54.08±4.32%, respectively, indicating that the P. koraiensis leaf litter decomposed faster than P. rigida leaf litter. The decay constant (k) of P. rigida leaf litter and P.koraiensis leaf litter after 21 months was 0.95 and 1.08, respectively, indicating that P. koraiensis leaf litter decayed faster than P. rigida leaf litter probably due to the difference of nitrogen concentration between the two. The C/N ratio of P. rigida and P. koraiensis leaf litter was 64.4 and 40.6, respectively, initially, and then decreased to 41.0 and 18.9, respectively, after 21 months. The C/P ratio of P. rigida and P. koraiensis leaf litter was 529.8 and 236.5, respectively, and then decreased to 384.1, 205.2, respectively, after 21 months. The contents of N, P, K, Ca, and Mg were 6.78, 0.83, 2.84, 0.99, and 2.59 mg/g, respectively, in the P. rigida leaf litter and 10.90, 1.87, 5.82, 4.79, and 2.00 mg/g, respectively, in the P. koraiensis leaf litter, indicating that the elements except the magnesium showed higher contents in P. koraiensis. After 21 months elapsed, remaining N, P, K, Ca, and Mg was 88.4, 77.6, 26.7, 50.5 and 44.5%, respectively, in decomposing P. rigida, and 114.4, 61.3, 7.6, 115.2 and 72.0%, respectively, decomposing P. koraiensis leaf litter.
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      We examined the nutrient dynamics during the leaf litter decomposition rate and process of Pinus rigida and Pinus koraiensis in Gongju for 21 months from December 2014 to September 2016 as a part of National Long-Term Ecological Research Program in Ko...

      We examined the nutrient dynamics during the leaf litter decomposition rate and process of Pinus rigida and Pinus koraiensis in Gongju for 21 months from December 2014 to September 2016 as a part of National Long-Term Ecological Research Program in Korea. The remaining weight rate of P. rigida and P. koraiensis leaf litter was 58.27±4.13 and 54.08±4.32%, respectively, indicating that the P. koraiensis leaf litter decomposed faster than P. rigida leaf litter. The decay constant (k) of P. rigida leaf litter and P.koraiensis leaf litter after 21 months was 0.95 and 1.08, respectively, indicating that P. koraiensis leaf litter decayed faster than P. rigida leaf litter probably due to the difference of nitrogen concentration between the two. The C/N ratio of P. rigida and P. koraiensis leaf litter was 64.4 and 40.6, respectively, initially, and then decreased to 41.0 and 18.9, respectively, after 21 months. The C/P ratio of P. rigida and P. koraiensis leaf litter was 529.8 and 236.5, respectively, and then decreased to 384.1, 205.2, respectively, after 21 months. The contents of N, P, K, Ca, and Mg were 6.78, 0.83, 2.84, 0.99, and 2.59 mg/g, respectively, in the P. rigida leaf litter and 10.90, 1.87, 5.82, 4.79, and 2.00 mg/g, respectively, in the P. koraiensis leaf litter, indicating that the elements except the magnesium showed higher contents in P. koraiensis. After 21 months elapsed, remaining N, P, K, Ca, and Mg was 88.4, 77.6, 26.7, 50.5 and 44.5%, respectively, in decomposing P. rigida, and 114.4, 61.3, 7.6, 115.2 and 72.0%, respectively, decomposing P. koraiensis leaf litter.

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      국문 초록 (Abstract) kakao i 다국어 번역

      국가장기생태연구사업의 일환으로 국내 주요 조림수종인 리기다소나무와 잣나무 낙엽의 분해율 및 분해과정에 따른영양염류 함량 변화를 파악하였다. 분해 21개월경과 후 리기다소나무 낙엽과 잣나무 낙엽의 잔존률은 각각 58.27±4.13, 54.08±4.32으로 잣나무 낙엽의 분해가 리기다소나무 낙엽보다 빠르게 진행되는 것으로 나타났다. 21개월경과 후 리기다소나무 낙엽과 잣나무 낙엽의 분해상수(k)는 각각 0.95, 1.08로 잣나무 낙엽의 분해상수가 높은 것으로 나타났다. 리기다소나무 낙엽과 잣나무 낙엽의 초기 C/N 비율은 각각 64.4, 40.6 이었으나 21개월경과 후에는 각각 41.0, 18.9로점차 감소하였고, C/P 비율은 리기다소나무 낙엽과 잣나무 낙엽에서 초기에 각각 529.8, 236.5에서 21개월경과 후384.1, 205.2로 감소하였다. 낙엽의 초기 N,P,K,Ca,Mg 함량은 리기다소나무 낙엽에서 각각 6.78, 0.83, 2.84, 0.99, 2.59 mg/g 이었으며, 잣나무 낙엽에서 각각 10.90, 1.87, 5.82, 4.79, 2.00 mg/g으로 마그네슘을 제외한 원소의 함량은잣나무에서 높았다. 21개월 경과 후 N,P,K,Ca,Mg 잔존률은 리기다소나무 낙엽에서 각각 88.4, 77.6, 26.7, 50.5, 44.5% 이었으며 잣나무 낙엽에서 각각 114.4, 61.3, 7.6, 115.2, 72.0%로 나타났다.
      번역하기

      국가장기생태연구사업의 일환으로 국내 주요 조림수종인 리기다소나무와 잣나무 낙엽의 분해율 및 분해과정에 따른영양염류 함량 변화를 파악하였다. 분해 21개월경과 후 리기다소나무 낙...

      국가장기생태연구사업의 일환으로 국내 주요 조림수종인 리기다소나무와 잣나무 낙엽의 분해율 및 분해과정에 따른영양염류 함량 변화를 파악하였다. 분해 21개월경과 후 리기다소나무 낙엽과 잣나무 낙엽의 잔존률은 각각 58.27±4.13, 54.08±4.32으로 잣나무 낙엽의 분해가 리기다소나무 낙엽보다 빠르게 진행되는 것으로 나타났다. 21개월경과 후 리기다소나무 낙엽과 잣나무 낙엽의 분해상수(k)는 각각 0.95, 1.08로 잣나무 낙엽의 분해상수가 높은 것으로 나타났다. 리기다소나무 낙엽과 잣나무 낙엽의 초기 C/N 비율은 각각 64.4, 40.6 이었으나 21개월경과 후에는 각각 41.0, 18.9로점차 감소하였고, C/P 비율은 리기다소나무 낙엽과 잣나무 낙엽에서 초기에 각각 529.8, 236.5에서 21개월경과 후384.1, 205.2로 감소하였다. 낙엽의 초기 N,P,K,Ca,Mg 함량은 리기다소나무 낙엽에서 각각 6.78, 0.83, 2.84, 0.99, 2.59 mg/g 이었으며, 잣나무 낙엽에서 각각 10.90, 1.87, 5.82, 4.79, 2.00 mg/g으로 마그네슘을 제외한 원소의 함량은잣나무에서 높았다. 21개월 경과 후 N,P,K,Ca,Mg 잔존률은 리기다소나무 낙엽에서 각각 88.4, 77.6, 26.7, 50.5, 44.5% 이었으며 잣나무 낙엽에서 각각 114.4, 61.3, 7.6, 115.2, 72.0%로 나타났다.

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      참고문헌 (Reference)

      1 원호연, "월악산 국립공원에서 신갈나무와 소나무 낙엽의 장기적 분해 및 영양염류 동태" 한국환경생태학회 28 (28): 566-573, 2014

      2 원호연, "공주와 진주지역에서 상수리나무 낙엽의 분해율 및 분해과정에 따른 영양염류 함량 변화" 한국습지학회 14 (14): 537-545, 2012

      3 이임균, "계방산 장기생태조사지의 낙엽 생산량 및 낙엽 분해에 따른 양분 동태" 한국생태학회 29 (29): 585-591, 2006

      4 Meentemeyer, V., "World patterns and amounts of terrestrial litter production" 32 : 125-128, 1982

      5 Yoo, J. S., "Weight loss and nutrient dynamics during litter decomposition of Pinus thunbergii and Castanea crenata" Kongju University 1991

      6 남궁정, "Weight Loss and Nutrient Dynamics during Leaf Litter Decomposition of Quercus variabilis and Pinus densiflora at Mt. Worak National Park" 한국생태학회 31 (31): 291-295, 2008

      7 문형태, "Weight Loss and Nutrient Dynamics during Leaf Litter Decomposition of Quercus mongolica in Mt. Worak National Park" 한국생태학회 32 (32): 123-127, 2009

      8 Kucera, C. L., "Weathering characteristics of deciduous leaflitter" 40 (40): 485-487, 1959

      9 Kim, C.M, "The decomposition rate of litter affecting the amount of mineral nutrients of forest soil in the Korea" 14-, 1965

      10 Olsen, C., "Studies of nitrogen fixation: nitrogen fixation in the dead leaves of forest beds" 19 : 36-, 1932

      1 원호연, "월악산 국립공원에서 신갈나무와 소나무 낙엽의 장기적 분해 및 영양염류 동태" 한국환경생태학회 28 (28): 566-573, 2014

      2 원호연, "공주와 진주지역에서 상수리나무 낙엽의 분해율 및 분해과정에 따른 영양염류 함량 변화" 한국습지학회 14 (14): 537-545, 2012

      3 이임균, "계방산 장기생태조사지의 낙엽 생산량 및 낙엽 분해에 따른 양분 동태" 한국생태학회 29 (29): 585-591, 2006

      4 Meentemeyer, V., "World patterns and amounts of terrestrial litter production" 32 : 125-128, 1982

      5 Yoo, J. S., "Weight loss and nutrient dynamics during litter decomposition of Pinus thunbergii and Castanea crenata" Kongju University 1991

      6 남궁정, "Weight Loss and Nutrient Dynamics during Leaf Litter Decomposition of Quercus variabilis and Pinus densiflora at Mt. Worak National Park" 한국생태학회 31 (31): 291-295, 2008

      7 문형태, "Weight Loss and Nutrient Dynamics during Leaf Litter Decomposition of Quercus mongolica in Mt. Worak National Park" 한국생태학회 32 (32): 123-127, 2009

      8 Kucera, C. L., "Weathering characteristics of deciduous leaflitter" 40 (40): 485-487, 1959

      9 Kim, C.M, "The decomposition rate of litter affecting the amount of mineral nutrients of forest soil in the Korea" 14-, 1965

      10 Olsen, C., "Studies of nitrogen fixation: nitrogen fixation in the dead leaves of forest beds" 19 : 36-, 1932

      11 Namgung, J., "Production and Nutrient cycling in the Quercus varialilis forest at Mt. Worak" Univ. of Kongju 2010

      12 Jensen, H. L., "On the influence of the carbon:nitrogen ratios of organic material on the mineralization of nitrogen" 19 : 71-82, 1929

      13 Blanco, J. A., "Nutrient return via ltterfall in two constrating Pinus sylvestris forests in the Pyrenees under different thinning intensities" 256 : 1840-1852, 2008

      14 Gosz, J. R., "Nutrient release from decomposing leaf and branch litter in the Hubbard Brook Forest, New Hampshir" 43 : 173-191, 1973

      15 Hobbie, S.E., "Nutrient limitation of decomposition in Hawaiian forests" 81 (81): 1867-1877, 2000

      16 Daubenmire, R. F., "Nutrient content of leaf litter of trees in the Northern Rocky Mountains" 34 (34): 786-793, 1953

      17 김춘식, "Nutrient Dynamics in Litterfall and Decomposing Leaf Litter at the Kwangneung Deciduous Broad-Leaved Natural Forest" 한국농림기상학회 5 (5): 87-93, 2003

      18 Melillo, J. M., "Nitrogen and lignin control of hardwood leaf litter decomposition dynamics" 63 : 621-626, 1982

      19 Klemmedson, J. O., "Needle decomposition and nutrient release in ponderosa pine ecosystems" 31 : 647-660, 1985

      20 Black, C.A., "Methods of soil analysis" American Society of Agronomy 1965

      21 Kelly, J.M, "Mass loss and Nutrient changes in decomposing upland oak and mesic-mixed hardwood leaf litter" 51 : 1616-1622, 1987

      22 Bray, J.R., "Litter production in forests of the world" 2 : 101-157, 1964

      23 Kim, J.K, "Litter production and decomposition in the Pinus Rigida plantation in Mt. Kwanak" 12 (12): 9-20, 1989

      24 Berg, B., "Litter mass loss rates in pine forests of Europe and Eastern United States: some relationships with climate and litter quality" 20 (20): 127-159, 1993

      25 Liu, P., "Litter decomposition and nutrient release as affected by soil nitrogen availability and litter quality in a semiarid grassland ecosystem" 162 : 771-780, 2010

      26 Mun, H.T., "Litter Production and Decomposition in the Quercus acutissima and Pinus rigida Forests" 17 (17): 345-353, 1994

      27 Baker, T.T., "Leaf litter decomposition and nutrient dynamics in four southern forested floodplain communities" 65 : 1334-1347, 2001

      28 Xu, X., "Leaf litter decomposition and nutrient dynamics in a subtropical forest after typhoon disturbance" 173 : 161-170, 2004

      29 Berg, B., "Leaching accumulation and release of nitrogen in decomposing forest litter" 33 : 163-178, 1981

      30 Cole, D.W., "International Biological Programme 23" Cambridge University Press 341-409, 1981

      31 Olson, J. S., "Energy storage and the balance of producers and decomposers in ecological systems" 44 : 321-331, 1963

      32 Fogel, R., "Effect of habitat and substrate quality on Donglas-fir litter decomposition in western Oregon" 55 : 1632-1640, 1977

      33 Berg, B., "Dynamics of some nitrogen fraction in decomposition Scots pine needle litter" 27 : 264-267, 1984

      34 Mun, H.T., "Dynamics of nutrient and chemical constituents during litter decomposition" 17 (17): 501-511, 1994

      35 Mun, H. T., "Dynamics of Nutrient and Chemical Constituents during Litter Decomposition" 17 (17): 501-511, 1994

      36 Heal, O. W., "Driven by Nature: Plant Litter Quality and Decomposition" CAB 3-45, 1997

      37 Berg, B, "Decomposition of needle litter and its organic chemical components; theory and field experiments :long term decomposition in a Scots pine forest 3" 62 : 2880-2888, 1984

      38 Alhamd, L., "Decomposition of leaf litter of four tree species in a subtropical evergreen broad-leaved forest, Okinawa Island, Japan" 202 (202): 1-11, 2004

      39 Schlesinger, W. H, "Decomposition of chaparral shrub foliage" 66 : 1353-1359, 1985

      40 Swift, M. J., "Decomposition in terrestrial ecosystems. Studies in Ecology Vol 5" Univ of California Press 372-, 1979

      41 Berg, B., "Decomposition and nutrient release in needle litter from nitrogen-fertilized Scats pine(Pinus sylvestris) stands" 2 : 399-415, 1987

      42 Edmonds, R.L., "Decomposition and nutrient release from green needles of western hemlock and Pacific silver fir in an old-growth temperate rain forest, Olympic National Park, Washington" 25 : 1049-1057, 1995

      43 Brinson, M. M, "Decomposition and nutrient exchange of litter in an Alluvial swamp forest" 58 (58): 601-609, 1977

      44 Lousier, J.D., "Chemical element dynamics in decomposing leaf litter" 56 : 2795-2812, 1978

      45 Bocock, K. L., "Changes in the amount of dry matter, nitrogen, carbon and energy in decomposing woodland leaf litter in relation to the activities of soil fauna" 52 : 273-284, 1964

      46 Berg, B., "Changes in organic chemical components of needle litter during decomposition. In Long-term decomposition in a Scots pine forest. I" 60 : 1310-1319, 1982

      47 Millar, C. S., "Biology of plant litter decomposition, Vol. 1" Academic Press 105-128, 1974

      48 Jensen, V., "Biology of plant litter decomposition Vol. 1" Academic Press 69-104, 1974

      49 Chang, N.K., "Annual fluctuations and vertical distributions of cellulase, xylanase activities and soil microorganisms in humus horizon of a Pinus rigida stand" 9 (9): 231-241, 1986

      50 Seereeram, S, "Analysis of leaf litter to establish its suitability for compositing to produce a commercially saleable product" Aqua Enviro 18-, 2003

      51 Song, J. E., "Additive effects of mixing litter on litter decomposition and N, P and C dynamics in a Mongolian oak (Quercus mongolica) natural stand and a Korean pine(Pinus koraiensis) plantation" Univ. of Seoul 2011

      52 Park, B. K., "A Model for Litter Decomposition of the Forest Ecosystem in South Korea" 4 (4): 38-51, 1981

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