• Title/Summary/Keyword: 옥수수재배

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The Situation of Mushroom Cultivation Growing at High Temperature in Africa Malawi (아프리카 말라위의 고온성 버섯재배 현황)

  • Chang, Hyun-You;Kim, Seon;Baek, Soon-Jib
    • Journal of Practical Agriculture & Fisheries Research
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    • v.14 no.1
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    • pp.195-209
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    • 2012
  • 1) 버섯종균 생산 시스템 개선 버섯의 품질과 수량을 좌우하는 주요 요인은 종균의 활력이다. 그러나 말라위에서는 종균의 활력이 낮아 조그마한 350cc 음료수 병에 배양 완성하는데 20일이 소요되는 등 노동력의 비효율성을 개선하였다. 따라서 350cc 병을 3500cc 비닐봉지로 개선하여 입봉하는데 소요되는 시간을 10배 이상으로 단축 개선하였다. 또한 곡립종균을 액체종균으로 대처한 결과 균사생장 속도가 빨랐으며 작업속도가 빨라졌다. 곡립 수수를 밀로 대체하여 종균제조 노동력을 효율적으로 전환하였다. 2) 버섯재배사 환경관리 개선 버섯재배의 4대 환경조건은 온도, 습도, 환기, 광이다. 그러나 말라위의 버섯재배사는 4대 환경조건 조절을 자연상태에 의존하고 있다. 그럼에도 불구하고 비닐로 커버된 상태에서 문을 닫아두어 과습이 되고 환기가 되지않았다. 이를 개선하기 위하여 직경 5cm 환기공을 버섯재배사 당 4개씩 만들도록 지도하였다. 3) 버섯배지 개선 말라위에서는 옥수수 대를 잘라 버섯배지로 주로 이용하고 있다. 이를 개선하여 말라위 북부지역(다광)에 대규모 사탕수수 공장을 방문하여 사탕수수 박을 이용하여 버섯재배 기술을 교육하였다. 이를 이용함으로서 버섯 균사생장속도를 빠르게 하고 균사량의 축적을 높이도록 하여 고품질 다수확하는데 교육을 하고 컨설팅을 실시하여 개선하였다. 4) 버섯 배지 야외발효 후 지면재배 시도로 시간 단축과 비용절감 말라위 버섯배지 혼합제조법은 옥수수대 한가지로서 영양원이 없다. 이를 개선하여 배지를 수분을 흡수시킨 후 야외 퇴적하므로서 배지의 물리성을 개선하고 야외발효 과정 중 양분이 합성되어 양질의 배지를 만드는 방법이다. 야외발효한 배지를 봉지에 담아 균상에 입상하는 불편함과 나무로 만들어진 균상대의 과습으로 인한 곰팡이 발생과 개미 침입으로 썩는 것 등을 방지하기 위하여 지면재배 방법으로 개선하였다. 이 지면재배는 균상 만드는 나무재료와 인건비 절감. 병해충 발생 방제 뿐만아니라 고품질 다수확할 수 있는 방법으로 개선 교육과 시범 시연을 실시하였다.

Study on No-tillage Silage Corn Production with Legume Hairy Vetch (Vicia villosa Roth) Cover II. Changes of yield and nitrogen upake of corn by N fertilizer and hairy vetch cover (헤어리베치 피복을 이용한 옥수수 무경운 재배에 관한 연구 II. 질소시비 및 헤어리베치 피복에 의한 옥수수의 수량 및 질소 흡수량의 변화)

  • 서종호;이호진
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.18 no.2
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    • pp.123-128
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    • 1998
  • Legume winter cover crop hairy vetch(Vicia villosa Roth, HV) can supply mineral nitrogen for silage corn by HV cover killed. The purphose of this study was to understand changes of soil mineral N, yield and N uptake of silage corn by N level (0, 135kgFN/ha) and cover cmp(no cover crop: NCC, hairy vetch cover crop: HVC) at field of Crop Experiment Station in 1996. HV growth decreased soil mineral N concentration before seeding corn, but killed HV cover increased concentration of soil mineral N at surface soil (0~7.5cm) at six-leaf stage of corn. Total dry matter(DM) and N uptake of corn averaged over N level was more decreased in HVC than in NCC at silk stage, but N uptake of corn after silk was more increased in HVC than in NCC by N mineralized fiom HV killed, especially in OkgFNJha. N fertilization increased total DM and and N uptake of corn averaged over cover crop, especially more increased the DM and N uptake before silk stage. Early application of N fertilizer was recommendable in netillage silage corn using hairy vetch cover crop.

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Effect of Drought Conditions on Growth, Forage Production and Quality of Silage Corn at Paddy Field (가뭄에 따른 논 재배 사일리지용 옥수수의 생육특성, 생산성 및 품질 비교)

  • Ji, Hee-Chung;Cho, Jung-Ho;Lee, Sang-Hoon;Kim, Won-Ho
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.31 no.1
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    • pp.47-54
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    • 2011
  • This experiment was carried out to know adaptability and forage production and quality of corn hybrid for silage at paddy field of Jeonnam and Cheonan region. The growth, forage production and quality of silage corn in normal condition showed much better than drought condition at paddy field. Among the growth characteristics, 'Kangdaok' hybrids was somewhat strong for drought stress, then and good at stem diameter, drought stress, sugar content, stay green, disease and insect resistance. Fresh yield of 'Kwangpyongok' and 'Kangdaok' hybrid at drought paddy field were the highest as 9,714kg and 9,126 kg/ha per ha among corn hybrids. Among the ten hybrids, dry yield of 'Kangdaok' hybrid at drought paddy field was the highest as 5,548 kg per ha. The result of this study showed that 'Kangdaok' hybrid had good growth characters and forage productivity at drought condition and dry matter yield and TDN yield also were 21.6% and 19.3% level compared with normal paddy field.

Behavior of NO3-N Derived from Pig Manure in Soil (돈분(豚糞)에서 유래(由來)한 질산태질소(窒酸態窒素)의 토양(土壤)중 행동(行動))

  • Yun, Sun-Gang;Yoo, Sun-Ho
    • Korean Journal of Soil Science and Fertilizer
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    • v.29 no.4
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    • pp.353-359
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    • 1996
  • Micro plot study was conducted to elucidate the behavior of nitrogen derived from animal manure in soil and to obtain the fundamental information on animal waste management. Soils used in this experiment were sandy loam and loam. Soil water samplers (1m length ceramic cup tube) were installed at 90cm depth of soil to collect the percolate. Fresh and fermented pig manure were applied at the rate of 0, 50, 100 ton per ha. Maize was grown to evaluate the effect of crop on nitrogen behavior through soil profile. Concentration of nitrate nitrogen in percolate increased by application of pig manure. This trend was more obvious at the loam with fermented pig manure than sandy loam with fresh pig manure treatment. The concentration of nitrate nitrogen was lower under the maize cultivation than bare soil condition by 64.6-68.9%. Concentration of Ca, Mg and Na of soil and percolate increased as nitrate nitrogen concentration increased. The equivalent ratio of cation to nitrate nitrogen of percolate was increased by application of pig manure. This result showed that canon leaching was accompanied by nitrate nitrogen. Concentration of nitrate nitrogen of subsurface soil was increased by pig manure application.

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Study on Forage Production under Agrivoltaic System (영농형 태양광 시스템 하부를 활용한 조사료 생육 연구)

  • Nam, Cheol Hwan;Park, Man Ho;Yun, An A;Ji, Hee Jung;Choi, Bo ram;Sun, Sang Soo
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.41 no.1
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    • pp.1-9
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    • 2021
  • In the winter forage study, Italian ryegrass(IRG) and barley were selected. In 2018, the dry matter yield of IRG was 16,915kg per ha under the Agrivoltaic System; this was a little more than 16,750kg per ha of outdoors. On the contrary, the dry matter yield of barley was slightly less under the Agrivoltaic System than that of outdoors. In 2019, the dry matter yield under the Agrivoltaic System was 12,062kg per ha for IRG and 12,195kg per ha for the barley; this was 5.4% and 11.5% less than that of outdoors, respectively. In the summer forage study, corn and sorghum×sudangrass were selected. In 2019, the dry matter yield of corn under the Agrivoltaic System was 13,133kg per ha which was 17% less than that of outdoors. The dry matter yield of sorghum×sudangrass was 12,450kg per ha, which was 82.5% of that of outdoors. In 2020, the dry matter yield of corn under the Agrivoltaic System was 8,033kg per ha which was 7.9% less than that of outdoors. The dry matter yield of sorghum×sudangrass was 5,651kg per ha, which was 11.4% less than that of outdoors.

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.

Rhizoremediation of Petroleum and Heavy Metal-Contaminated Soil using Rhizobacteria and Zea mays (근권세균과 옥수수를 이용한 유류 및 중금속 복합 오염토양의 Rhizoremediation)

  • Hong, Sun-Hwa;Koo, So-Yeon;Kim, Sung-Hyun;Ryu, Hee-Wook;Lee, In-Sook;Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.38 no.3
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    • pp.329-334
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    • 2010
  • In this study, the rhizoremediation of petroleum and heavy metal-contaminated soil was characterized employing Zea mays and two plant-growth promoting rhizobacteria, Gordonia sp. S2RP-17 and Serratia sp. SY5 which have petroleum-degrading activity and heavy metal-resistance, respectively. After 51 days, the average dry weights of Zea mays' root without and with the inoculation of rhizobacteria were $1.9{\pm}0.2$ and $5.6{\pm}0.7\;g$, respectively. Compared with initial TPH concentration in soil ($21,576{\pm}3,426\;mg-TPH{\cdot}kg-dry\;soil^{-1}$), the residual TPH concentrations were $220{\pm}98\;mg-TPH{\cdot}kg-dry\;soil^{-1}$ in soil planted with Zea mays, and $20{\pm}41\;mg-TPH{\cdot}kg-dry\;soil^{-1}$ in soil planted with Zea mays and inoculated with rhizobacteria. These results indicated that the inoculation of S2RP-17 and SY5 could promote TPH removability in soil as well as the growth of Zea mays' root. There was little positive effect of the rhizobacteria inoculation on the removability of heavy metal such as Cu, Cd and Pb in soil planted with Zea mays.