• 제목/요약/키워드: Off-season cropping

검색결과 4건 처리시간 0.017초

휴경기 후작물 재배에 의한 참외 장기연작 비닐하우스 토양의 제염 효과 (Desalinization Effect of Off-season Crop Cultivation in Long-term Oriental Melon Cultivated Plastic Film House Soils)

  • 변일수;정종배
    • 한국환경농학회지
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    • 제34권4호
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    • pp.253-259
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    • 2015
  • BACKGROUND: During the off-season, the cultivation of Chinese cabbage and water dropwort is often used to desalinize plastic film house soils. The objective of this study was to verify the effect of double-cropping systems on the salt removal in oriental melon cultivated plastic film house soils.METHODS AND RESULTS: Electrical conductivity (EC) and soluble salt contents were measured in soils collected from plastic film houses of oriental melon cultivation before and after the off-season crop cultivation. Also the same measurements were performed in the next oriental melon season to estimate the desalinization effect of double-cropping systems. During the cultivation of Chinese cabbage under open-field condition, ECeof surface soil was reduced from 6.0 to 0.8 dS/m. Double-cropping of water dropwort in flooded soil was also efficient in removing the salts accumulated during oriental melon cultivation. In the house soils where salts were removed during the off-season crop cultivation, soil ECewas maintained below 3 dS/m during the next oriental melon cultivation season.CONCLUSION: The off-season cropping under open-field or flooded condition was effective in desalinization of plastic film house soils. Since the salt removal effect is not expected to last for several years, the double-cropping system should be introduced every season to maintain soil EC below the critical level.

퇴비 및 화학비료가 무경운 귀리의 사초수량과 품질에 미치는 영향 (Effect of Livestock Manure and Chemical Fertilizer on the Forage Yield and Quality of Oat at No-till Cropping System)

  • 김종덕;김수곤;채상헌;권찬호
    • 한국초지조사료학회지
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    • 제26권3호
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    • pp.127-132
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    • 2006
  • 가을에 무경운 귀리 재배에 퇴비, 화학비료 및 퇴비+화학비료를 혼용한 처리로 시험결과 사초의 생산성과 품질을 비교하기 위하여 수행하였다. 본 시험은 3 처리 3 반복의 난괴법 배치로 처리는 화학비료구, 퇴비구 및 혼용구를 각각 두었다. 무경운 귀리에서 화학비료는 퇴비보다 유식물 활력은 우수하였으나, 수확시 녹체성은 화학비료구가 퇴비구보다 떨어졌다. 귀리의 건물률은 퇴비구가 다른 처리보다 높았다 (p<0.05). 귀리의 사초생산성 비교에서는 생초 수량은 처리간에 차이가 있었으나 건물수량, TDN 수량 및 CP 수량은 처리간에 유의적인 차이가 없었다. 귀리의 조단백질 함량은 퇴비구가 다른 처리구보다 높았으나 (p<0.05), ADF, NDF 및 TDN 함량은 처리간에 유의적인 차이가 없었다. 이상의 시험결과를 볼 때 무경운 귀리재배에서 비료의 종류에 따른 사초생산성과 품질의 비교에서는 조단백질 함량을 제외하고는 영향을 미치지 못하였다. 따라서 단경기 작물인 귀리에서 퇴비의 효과를 보기는 힘든 것으로 판단되었다.

수도 기계이앙 육묘에 관한 연구 Ⅵ.제6보 상자육묘시 피복자재이용 효과 (Rice Seedling Establishment for Machine Transplanting VI. Effect of Mulching Materials on Raising Rice Seedling at Tray for Machine Transplanting)

  • 윤용대;양원하;곽용호;박석홍;박래경
    • 한국작물학회지
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    • 제31권1호
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    • pp.9-15
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    • 1986
  • 1983년부터 1984년까지 2년간에 걸쳐 통일형품종인 남풍벼와 태백벼, Japonica 품종인 서남벼와 당진벼를 공시하여 파종시기를 1모작 적파에 해당하는 4월 15∼20일, 2모작 만파에 해당하는 5월 10일의 두 시기로 각피부자재를 이용한 간양육묘방법 시험을 작물시험장 답작포장에서 실시하였던 결과를 요약하면 다음과 같다. 1. 중북부 1모작 지대에서 한파 및 적파 상자육묘시에는 비닐터널+silverpoly멀칭 또는 비닐터널+부직포멀칭구가 야간온도가 높고 주야간의 온도교차가 적어 발아율이 높았으며 뜸묘발생이 적었을 뿐 아니라 차광에 의한 백화묘발생이 적었다. 2. 남부 2모작 기계이앙용 만파육묘시에는 관행 비닐터널구 보다 silverpoly 또는 부직포터널구가 차광으로 인한 주간 온도의 저하로 고온장해의 위험성이 적고 출아록화기의 광조절이 가능하여 출아율이 높고 묘생육이 양호하였다. 3. 중북부지망 기계이앙 적파육묘는 간양출아후 보온밭못자리 및 보온절애못자리에 치상하고 록화기에 비닐터널 위에 silverpoly 또는 부직포를 멀칭하는 것이 록화관리가 양호한 편이다. 4. 남부 2모작지대 기계이앙재배를 위한 만파육묘에서는 보존 비닐터널 대신 silverpoly 또는 부직포터널로 못자리출아육묘를 하더라도 건묘육성의 가능성이 인정되었다.

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수도의 염해와 대책 (Salt Injury and Overcoming Strategy of Rice)

  • 이승택
    • 한국작물학회지
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    • 제34권s02호
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    • pp.66-80
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    • 1989
  • Salt injury in rice is caused mainly by the salinity in soil and in the irrigated water, and occasionaly by salinity delivered through typhoon from the sea. The salt concentration of rice plants increased with higher salinity in the soil of the rice growing. The climatic conditions, high temperature and solar radiation and dry conditions promote the salt absorption of rice plant in saline soil. The higher salt accumulation in the rice plant generally reduces the root activity and inhibits the absorption of minerals of rice plant, resulting the reduction of photosynthesis. The salt damages of rice plant, however, are different from different growth stage of rice plants as follows: 1. Germination of rice seed was slightly delayed up to 1.0% of salt concentration and remarkably at 1. 5%, but none of rice seeds were germinated at 2.5%. This may be due to the delayed water uptake of rice seeds and the inhibition of enzyme activity, 2. It was enable to establish rice seedlings at seed bed by 0.2% of salt concentration with some reduction of leaf elongation. The increasing of 0.3% salt concentration caused to the seedling death with varietal differences, but most of seedlings were death at 0.4% with no varietal differences. 3. Seedlings grown at the nursery over 0.1% salt, gradually reduced in rooting activity after transplanting according to increasing the salt concentration from 0.1% up to 0.3% of paddy field. However, the seedlings grown in normal seed bed showed no difference in rooting between varieties up to 0.1% but significantly different at 0.3% between varieties, but greatly reduced at 0.5% and died at last in paddy after transplanting. 4. At panicle initiation stage, rice plant delayed in heading by salt damage, at meiotic stage reduced in grains and its filling rate due to inhibition of glume and pollen developing, and salt damage at heading stage and till 3 weeks after heading caused to reduction of fertilization and ripening rate. In viewpoint of agricultural policy the overcoming strategy for salt injury is to secure sufficient water source. Irrigation and drainage systems as well as underground drainage is necessary to desalinize more effectively. This must be the most effective and positive way except cost. By cultural practice, growing the salt tolerant variety with high population could increase yield. The intermittent irrigation and fresh water flooding especially at transplanting and from panicle initiation to heading stage, the most sensitive to salt injury, is important to reduce the salt content in saline soil. During the off-cropping season, plough and rotavation with flooding followed by drainage, or submersion and drainage with groove could improve the desalinization. Increase of nitrogen fertilizer with more split application, and soil improvement by lime, organic matter and forign soil addition, could increase the rice yield. Shift of trans-planting is one of the way to escape from the salt injury.

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