• Title/Summary/Keyword: 이모작

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Comparison of Carbon Budget between Rice-barley Double Cropping and Rice Mono Cropping Field in Gimje, South Korea (국내 벼-보리 이모작지와 벼 단작지의 탄소수지 비교)

  • Shim, Kyo-Moon;Min, Sung-Hyun;Kim, Yong-Seok;Jung, Myung-Pyo;Choi, In-Tae;Kang, Kee-Kyung
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.18 no.4
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    • pp.337-347
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    • 2016
  • Carbon dioxide ($CO_2$) and methane ($CH_4$) were measured in a rice-barley double cropping and rice mono cropping paddy fields, which are located in the southwestern coast of Korea, over a one-year period. Net ecosystems $CO_2$ exchange (NEE) and ecosystem respiration (Re) were estimated by the eddy covariance (EC) method, and an automatic open/close chamber (AOCC) method was used to measure $CH_4$ fluxes. Environmental factors (solar radiation, air temperature, precipitation etc.) were also measured along with fluxes. After the quality control and gap-filling, the observed fluxes were analyzed. As a result, NEE was -603.0 and $-471.5g\;C\;m^{-2}\;yr^{-1}$ in rice-barley double cropping and rice mono cropping paddy field, respectively. $CH_4$ emissions increased during the course of flooded days and were similar in two cropping paddy field. Accoding to rough results considering only fluxes of $CO_2$ and $CH_4$, it was estimated that the carbon absorbation in rice-barley double cropping paddy field was higher than that in rice mono cropping paddy field by $128.9g\;C\;m^{-2}\;yr^{-1}$.

Changes of Growth and Yield of Late-planted Maize Cultivar for Double Cropping with Barley (보리이모작 만파 옥수수의 품종별 생육 및 수량변화)

  • Seo, Jong-Ho;Son, Beom-Young;Lee, Jae-Eun;Kwon, Young-Up;Jung, Gun-Ho;Back, Sung-Beom;Sung, Jang-Hoon;Kim, Wook-Han
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.55 no.3
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    • pp.232-238
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    • 2010
  • Maize double cropping with winter cereals is important for round-year production of forage or grain, and increase of self-sufficiency of upland grain crops such as maize and wheat. Changes of maize growth and yield for forage or grain according to late planting in June for double cropping with winter barely were investigated compared to proper planting in April for three years from 2007 to 2009. Forage and grain yields of maize planted in mid or late June decreased by 20~30% compared to proper planting in April, but total grain yields per year of double cropping increased by 30~40% compared to single cropped maize. Reduction of ear dry matter was less than that of stalk in late planting within maize plant part. Yield reduction by late planting was the least at Kwangpyeongok, which showed the highest grain yield, 850 kg $10a^{-1}$ in even though late planting in June. Meteorological condition during harvesting time of double cropped maize, which in late September (forage) and mid October (grain), were better than that of conventional maize harvesting time which in late August and mid September. It is thought that more researches for double cropped maize for higher grain production is needed in the future.

Global Warming on Double Cropping in North Korea (지구온난화에 따른 북한의 두벌농사 특성 평가)

  • Kang, Yang-Soon;Lee, Jong-Hoon;Lee, Byong-Lyol
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.55 no.3
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    • pp.214-219
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    • 2010
  • In order to evaluate the benefits of global warming on the double cropping with staple crops in North-Korea, four aspects such as the increasing rate of air temperature, the wintering temperatures for winter crops, the causing temperature of cool injury to rice and the securing of accumulated temperature for the double cropping in the different agricultural climate zones were analyzed by comparing the differences between the past 22 years from 1973 to 1994 and the recent 5 years from 2002 to 2006. The warming rate in recent daily mean air temperature of $8.96^{\circ}C$ in North Korea was higher by $0.64^{\circ}C$ than that in the past with large regional variations ranging from $1.06^{\circ}C$ in Samjiyeon of northern inland semi-alpine zone to $12.26^{\circ}C$ in Jangjeon of east central coastal zone. With the accumulated temperatures of more than $3,150^{\circ}C$ and $2,650^{\circ}C$, it was possible to apply the double cropping patterns with winter wheat and for cropping patterns with spring potato, respectively, to the whole region except for the northern inland semi-alpine zone. However, the wintering temperature higher than $-15^{\circ}C$ of average daily minimum air temperature of January, cropping patterns were impossible to northern inland semi-alpine zone and most regions of the northern mountainous zone. The days passed by below $17^{\circ}C$ in daily mean air temperature, causing the spikelet sterility at meiotic stage of rice in July, were a lot recorded from 21 to 29 days in northern inland semi-alpine zone and from 2 to 10 days in east-northern coastal zone, respectively. Therefore, a reasonable utilization of heat / temperature resources would relieve the limiting factors in double cropping for stable production of staple crops in North-Korea.

Compatibility of Double Cropping of Winter Wheat - Summer Grain Crops in Paddy Field of Southern Korea (남부지역 논의 밀 이모작에서 하계 곡실작물 도입의 적합성)

  • Seo, Jong-Ho;Hwang, Chung-Dong;Oh, Seong-Hwan
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.66 no.1
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    • pp.18-28
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    • 2021
  • The growth period and productivity of cropping system of winter wheat-rice, winter wheat-bean and winter wheat-grain corn for 4 years from 2015 to 2018 were compared at the experimental field of National Institute of Crop Science in Miryang city. The harvest period of winter wheat was in mid-June, and summer crops were sown (transplanted) in late June. In transplanting of rice in late June, there was no difficulty in securing the heading of panicle and the yield of rice, but there was a lot of trouble in sowing wheat in proper time because the harvest time of rice was delayed to early November due to late maturity of rice, particularly in the mid-late maturing cultivar. There was no problem in soybean planting after winter wheat because the proper period of soybean planting is late-June. In addition, there was no problem in winter wheat sowng after soybean because the maturity period of soybean was mid-October. Selection of grain maize in double cropping with winter wheat in terms of growing periods, was desirable because grain maize had the fastest maturity among summer crops. In double cropping of winter wheat-summer crops, wheats combined with soybean and grain maize showed stable yields during three years, but there was a risk of yield declines in the wheat combined with rice in heavy rainfall year. It was possible to secure high yields in three summer crops as yields of rice, soybean, and corn were 600, 350, and 800 kg/10a, respectively. Summer crops with medium maturity was recommended because of no significant difference in yield between medium maturity and medium-late maturity cultivar. Soil physical properties were improved in soils cultivated with soybean and grain maize. Therefore, It was thought that double cropping systems of winter wheat with soybean and grain maize were superior to that of winter wheat with rice in terms of connecting period between winter wheat - summer crops and improvement of soil physical properties, and total income, particularly in soybean.

벼흑조위축병 피해가 늘고 있다 -발병 추세와 방제 대책-

  • 박인선
    • The Bimonthly Magazine for Agrochemicals and Plant Protection
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    • v.8 no.4
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    • pp.21-27
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    • 1987
  • 우리나라에서 지금까지 벼에 발생하는 바이러스병으로 알려져 있는 것은 줄무늬잎마름병(縞葉枯病), 오갈병(萎縮病), 검은줄무늬오갈병(黑條萎縮病)의 3종류가 있다. 그 중 가장 근년에 알려진 검은줄무늬오갈병은 1973년 경북 선산지방에서 처음으로 발견되어 1975년 검은줄무늬오갈병으로 확인된 이후 남부지방은 물론 중부지방까지 확산 피해를 주고 있다. 더욱 기계이앙기 보급으로 조식면적이 늘어남에 따라 이모작 지대(二毛作地帶) 일부에서는 피해가 심한 실정이다. 전남 보성군 조성지역은 전남지역에서 대표적인 남부 미맥(米麥) 이모작지대로 알려져 있는데 1984년에는 벼 검은줄무늬오갈병이 지금까지 보기드물 정도로 극심하게 발생되어 일부 포장에서는 벼 수확에 개무(皆無) 상태를 보인 바 있어 이와같은 피해를 다소나마 줄여 보고자 그동안 조사된 시험성적을 중심으로 피해상황과 방제법을 간단히 소개하고자 한다.

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