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Rice Growth and Yield at Different Cultural Methods under No-tillage Condition (벼 무경운 재배시 재배양식에 따른 생육 및 수량)

  • 박홍규;김상수;백남현;석순종;박건호;이선용
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.41 no.4
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    • pp.420-428
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    • 1996
  • This study was conducted to investigate the response of growth and yield of rice under five different cultural methods, machine transplanting(MTNT), puddled drill seeding (PDSNT), drill seeding on soil surface (DSNT) , broadcasting on soil surface (BSNT) under no-tillage paddy condition and conventional machine transplanting(MTT) in Jeonbuk series(siltyloam soil) from 1993 to 1995. Soil hardness was higher in no-tillage soil and increased with highly difference between tillaged and no-tillage soil with deeper soil depth. Bulk density was heavier in no-tillage soil and porosity was higher in tilled soil than that of the control. The rate of effective tiller was higher in MTT, following MTNT, PDSNT, DSNT and BSNT. Weed occurrence was more serious in no-tillage soil, than that of tillaged soil. The rate of lower internode length was lower in DSNT and BSNT and was similar with MTT in PDSNT and MTNT. Height of center gravity in terms of lodging tolerance was lower in direct seeding than in machine transplanting. Depth of buried culm was shorter in no-tillage soil, especially in DSNT and BSNT. Total amount of root was higher in MTT, following MTNT, PDSNT, BSNT and BSNT and the distribution rate of root in shallower soil layer was higher in no-tillage soil, especially in BSNT and DSNT. Field lodging occured highly in BSNT, following DSNA, PDSNT and MTNT with high lodging scale in DSNT and BSNT. Panicle number per unit land square meter was the highest in MTT and the least in BSNT. Ripened grain ratio was low in BSNT and DSNT due to heavy lodging. Yield of milled rice was 93% in PDSNT, 87% in DSNT, 81% in BSNT and 96% in MTNT, compared with 534kg /10a in MTT.

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Changes in Chemical Components of Stagnant Water by Tillage Method and Amount of Nitrogen Application in Wet Seeded Rice after Barley Straw Mulching (논에 보리짚 시용시 경운방법 및 질소시비량에 따른 논물의 화학성분 변화)

  • Cheong, Jin-Il;Choi, Min-Gyu;Noh, Tae-Hwan;Lee, Jung-Ho;Kwon, Tae-Ohu
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.41 no.4
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    • pp.411-419
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    • 1996
  • The experiment was aimed to determine a change of chemical component in irrigatted water based on different tillage methods and nitrogen rates under mulching of barley straw in direct seeded rice. There was no difference in water pH of no-tillaged plot but high in tillaged plot until 10 days after treatment. The electric conductivity(EC) of the water was higher in no-tillaged plot than in tillaged plot. However, the dissolved oxygen content was vice versa. The content of NH$_4$-N was high in higher application rate of N fertilizer without the tillage. Mean while, NO$_3$-N content was highly affected by no-till aged plot particularly in between application time and fertilizer rate but not in tillaged plot. There was higher in P043- content with the no-tillaged plot compared to the tillaged plot. It was big difference with higher application rate of the fertilizer. Soil cations were high in much application of fertilizer without the tillage.

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Evaluation of Aquatic Animals on the Water in a Rice Field with No-tillage Rice Cover Crop Cropping Systems (무경운 피복작물 작부체계에서 논물의 미소동물 평가)

  • Lee, Young-Han;Sonn, Yeon-Kyu
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.3
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    • pp.371-374
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    • 2011
  • The objectives of the present study evaluated aquatic animals on the water in a rice field. Field investigation was carried out in conventional tillage without rice straw or green manure crop treatment (CTFS, check plot), no-tillage without cover crops (NTNT), no-tillage amended with rape (NTRA), no-tillage amended with rye (NTRY), no-tillage amended with hairyvetch (NTHV), and no-tillage amended with Chinese milk vetch (NTCM). Total dense population of aquatic animals in HTHV was significantly higher than the other plots (p<0.05) on May 30. Dense populations of Daphniidae and Culicidae on June 20 were lowest in CTFS compared to no-tillage plots (p<0.05). Furthermore, in principal component analysis (PCA), PC1 explained 44.9% of variance, whereas PC2 explained 26%, for a cumulative total of 70.9% and the PC1 of the PCA separated the samples from NT treatments and CFS (p<0.05).

No-Tillage Agriculture of Korean-Style on Recycled Ridge II. Changes in Physical Properties : Water-Stable Aggregate, Bulk density, and Three Phase Ratio to Retain Water at Plastic Film Greenhouse Soil in No-Tillage System (두둑을 재활용한 한국형 무경운 농업 II. 시설 무경운 토양의 물리적 특성 : 입단과 용적밀도 및 삼상변화)

  • Yang, Seung-Koo;Shin, Gil-Ho;Kim, Sun-Kook;Kim, Hee-Kwon;Kim, Hyun-Woo;Jung, Woo-Jin
    • Korean Journal of Organic Agriculture
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    • v.24 no.4
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    • pp.719-733
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    • 2016
  • This study was carried out to investigate the effect of no-tillage on sequential cropping supported from recycling of first crop ridge on the productivity of crop and physical properties of soil under green house condition. This study is a part of "No-tillage agriculture of Korea-type on recycled ridge". From results for distribution of soil particle size with time process after tillage, soil particles were composed with granular structure in both tillage and no-tillage. No-tillage soil in distribution of above 2 mm soil particle increased at top soil and subsoil compared with tillage soil. Tillage and one year of no-tillage soil were not a significant difference at above 0.25 mm~below 0.5 mm, above 0.5 mm~below 1.0 mm, and above 1.0 mm of water-stable aggregate. Two years of no-tillage soil was significantly increased by 8.2%, 4.5%, and 1.7% at above 0.25 mm~below 0.5 mm, above 0.5 mm~below 1.0 mm, and above 1.0 mm of water-stable aggregate, respectively, compared with one year of no-tillage. Bulk density of top soil was $1.10MG\;m^3$ at tillage and $1.30MG\;m^3$ at one year of no-tillage. Bulk density of top soil was $1.14MG\;m^3$ at two years and $1.03MG\;m^3$ at three years of no-tillage, respectively. Bulk density of subsoil was a similar tendency. Solid phase ratio in top soil and subsoil was increased at one year of no-tillage compared with tillage soil, while soil phase ratio decreased at two and three years of no-tillage. Pore space ratio in tillage top soil (58.5%) was decreased by 8.5% at compared with no-tillage soil (51.0%). Pore space ratio was 56.9% and 61.2% at two and three years of no-tillage soil, respectively. Subsoil was a similar tendency. Gaseous phase ratio was decreased at one year of no-tillage soil, and increased at two and three years of no-tillage soil compared with tillage soil. Liquid phase ratio in top soil was increased at one year of no-tillage (28.3%), and decreased at two years (23.4%) and at three years (18.3 %) of no-tillage soil compared with tillage soil (24.2%). Subsoil was a similar tendency. Liquid phase ratio in subsoil was increased than top soil.

Effects of No-Tillage on Pepper Growing in the Greenhouse with Organic Soil (시설 고추 무경운 유기재배 효과)

  • Yang, Seung-Koo;Seo, Youn-Won;Kim, Hyun-Woo;Kim, Byeong-Ho;Kim, Yong-Sun;Im, Gyeong-Ho;Kim, Hong-Jae;Kim, Jeong-Geun
    • Proceedings of the Korean Society of Organic Agriculture Conference
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    • 2009.12a
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    • pp.287-287
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    • 2009
  • 우리나라의 시설재배면적은 51,237ha에 이르며 수경재배 면적을 제외하면 대부분 경운재배를 하고 있는 실정이다. 경운 작업은 대형 농기구를 이용하여 경운하기 때문에 시설내 토양 입자가 단립으로 잘게 부서지며 대형농기구로 인하여 토양이 답압되고 경운층 아래 경반층이 형성되어 뿌리 발육과 배수 불량의 원인을 제공하게 된다. 경운은 기존에 설치되어 있는 관수시설과 지주, 멀칭을 제거한 후 유기물을 투입하고 2~3회 경운작업 후 다시 소형농기구를 이용하여 이랑을 조성한다. 그리고 제거된 관수시설, 멀칭, 지주를 다시 설치하여야 하기 때문에 시설의 경운재배는 가장 고통스러운 악성노동을 수반하게 된다. 따라서 본 시험에서는 시설 고추 유기재배 시 무경운재배 효과에 대하여 검토하고자 전남 나주시 남평읍 평산리 "JD 중동통 미사질양토"에서 시험을 수행하였다. 2009년 3월 11일 "녹광" 고추 품종을 재식 거리 135${\times}$38cm로 정식하여 7월 27일까지 재배한 후, 시험포를 1/2로 나누어 트렉터를 이용하여 경운작업을 실시하고 2009년 8월 1일 억제작형으로 "녹광" 고추 품종을 정식하였다. 그리고 나머지 시험포 1/2은 전작물을 재배한 이랑에 경운작업을 생략하고 전작물 고추의 식물체는 지제부를 절단하여 분해되도록 고랑을 피복하였으며, 고추 포기와 포기 사이에 무경운으로 고추를 정식하여 시험을 수행하였다. 고추 정식 전 7월 30일에 경운 시험포에 10a당 29톤의 물을 관수하였으며, 무경운 시험포에는 10a당 48톤의 물을 관수하고, 관수 2일 후 시험포의 습도와 이랑에 발생되는 균열수를 조사하였다. 이랑의 수분함량은 표토 0.23%, 토양 30cm 깊이의 수분함량은 0.18%로 경운방법에 따라서 차이가 없었으나 토양 20cm 깊이의 수분함량은 경운은 0.25%, 무경운은 0.14%로 경운재배 토양에 비하여 뿌리의 주요 분포지역인 작토층의 수분함량이 44% 정도 낮았다. 그리고 경운재배 이랑에서는 7~35cm 정도 되는 균열이 m당 22개정도 발생되었으나 무경운에서는 관찰되지 않았다. 시설 토양의 생물다양성 지표가 되는 미소동물의 분포를 조사한(9월 16일) 결과 경운재배 토양에서는 보리톡톡기 등 8종 97개체가, 무경운 토양에서는 10종 101개체가 포획되었다. 경운 방법에 따른 시설 유기재배 고추의 수확과수는 주당 139~141과, 수량은 1,367~1,431g/주가 수확되고 10a당 수량은 경운재배가 2,790kg, 무경운재배는 2,666kg이 생산되어 경운방법에 따른 수량 차는 인정되지 않았다. 경운방법에 따른 경영비를 분석한 결과 무경운은 경운재배에 비하여 10a당 유기질 비료비 178천원, 대농구상각비 211천원, 노력비 261천원의 절감으로 경운재배 경영비 4,815천원/10a 대비 약 14%의 경영비가 절감되었다. 그리고 작기마다 반복되는 경운작업과 관수시설, 멀칭, 지주설치 작업을 1회 설치 작업으로 연속사용이 가능하여 시설재배에서 가장 고통스러운 악성노동의 회피가 가능하였다.

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Reduction of NPS pollution in the No-till field (무경운을 적용한 밭에서의 비점오염원 저감효과)

  • Lee, Su In;Won, Chul Hee;Shin, Min Hwan;Jeon, Je hong;Choi, Joong Dae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.426-426
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    • 2015
  • 무경운 농법은 경작지의 토양을 교란시키지 않고 작물을 재배하는 방법으로, 토양의 물리성 개선과 토양 침식 예방, 생산비 절감 등의 효과가 있어 전 세계적인 인정을 받고 있는 농업기술이다. 그러나 아직까지 무경운의 재배 지속 기간 등 많은 의문이 제기되고 있으며, 국내 환경조건에 맞는 실험적인 연구가 미흡한 실정이다. 이에 본 연구에서는 최적관리기법의 하나인 무경운(No-till)을 적용한 밭의 오염물질 저감효과를 장기적으로 살펴보고자 2011년부터 2014년까지 4년간의 모니터링을 실시하였다. 무경운 농법을 적용하기 위하여 동계피복작물(밀, 보리)을 재배작물 정식하기 전해 겨울에 파종하여 이듬해 6월 말 수확하였다. 이후 7월에서 8월 사이 재배작물(들깨, 무)을 정식하였다. 시비는 2011년에는 축산퇴비, 2012년에는 축산액비 그리고 2013년과 2014년에는 화학비료를 시비하였으며, 매년 경운과 무경운의 시비량은 동일하게 처리하였다. 유출 시험포의 면적은 $150m^2$(폭 5 m, 경사장 30 m)이며, 8개(경사도 3% 4개, 경사도 8% 4개)의 시험포를 조성하여 각각 2개씩 경운(관행)과 무경운을 적용하였다. 모니터링은 재배작물(들깨, 무) 정식 이후부터 작물 수확 전까지 강우사상에 대하여 이루어졌으며, 연구기간동안 총 13회의 강우 사상에 대하여 조사를 실시하였다. 경운대비 무경운 시험포의 평균 오염부하 삭감율을 분석한 결과 경사도 3% 시험포의 경우 BOD는 35.1%, $COD_{Cr}$은 37.4% 그리고 영양염류인 TN과 TP는 각각 36.9%와 33.5%가 삭감된 것으로 조사되었으며, 경사도 8% 시험포의 경우 BOD가 36.4%, $COD_{Cr}$은 45.8%, TN과 TP는 각각 45.5%와 40.6%가 삭감된 것으로 나타났다. 우리나라에서는 경운(관행) 농법이 영농관리 차원에서 대부분 이용되고 있으나, 본 연구 결과에 기초할 때 무경운 농법으로 영농할 경우 강우유출수 및 하천으로 유입되는 비점오염부하를 효과적으로 제어할 수 있을 것으로 기대된다.

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Changes of Soil Physico-Chemical Properties under Different Tillages of Paddy Soil (경운방법(耕耘方法)에 따른 논 토양(土壤)의 이화학성(理化學性) 변화(變化))

  • Yoo, Chul-Hyun;Shin, Bog-Woo;Jeong, Ji-Ho;Han, Sang-Soo;Kim, Seong-Jo;Han, Seong-Soo
    • Korean Journal of Soil Science and Fertilizer
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    • v.30 no.2
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    • pp.140-145
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    • 1997
  • The change of physico-chemical properties of paddy soil was monitored under different tillage. This study was conducted on Jeonbug silty cly loam, in Honam Agricultural Experiment Station, for four years starting from 1992. Different tillage involved (1)Continued no tillage, (2)Rotavation only with tractor every year, (3)Spring plowing with power tiller plus rotavation with tractor every year. The result of this study can be summarized as: Non tillage, when continued for some years, tended to increase 1)the hardness of soil, 2)the root density in the top soil, 3)the occurrence of annual and perennial weeds, and tended to lower the yield of rice compared to normal tillage(tilling with ow tiller in the spring plus rotavation by tractor before planting.

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Effect of Tillage and No-tillage of Winter Green Manure Crops on Yield of Red Pepper in Plastic Film House (비가림하우스 동계 녹비작물의 경운과 무경운이 고추 생육과 수량에 미치는 영향)

  • Won, Jong-Gun;Jang, Kil-Su;Hwang, Ji-Eun;Kwon, Oh-Hun;Kwon, Tae-Young;Cho, Jeong-Rae
    • Weed & Turfgrass Science
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    • v.1 no.4
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    • pp.18-23
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    • 2012
  • To determine the effect of winter green manure crops for tillage and no-tillage organic pepper cultivation in plastic film house, five different green manure crops were cultivated during winter season. In nutrition composition of green manure crops, total nitrogen contents were higher in Vicia hirsuta and Vicia angustifolia than any other crops. The average dry weights of green manure crops were 8.3 ton per ha in tillage and 7.0 ton per ha in no-tillage, among green manure crops that of Secale cereale was the highest. Fertilizer supply was depended on the biomass of the cultivated green manure crops and nutrition contents, total nitrogen supply of V. angustifolia was 226 kg and that of S. cereale was 251 kg per ha in tillage field. In no-tillage field, N-supply of V. angustifolia was 197 kg and that of S. cereale was 222 kg per ha. In yield components of red pepper, fruit numbers per plant were 55.5 in green manure crop tillage and 37.0 in no-tillage cultivation. Among green manure crops, the yield of dried red pepper was the highest for V. angustifolia in both green manure crop tillage and no-tillage cultivation.

Effects of No-tillage Rice Cover Crop Cropping Systems on Rice Root Growth (무경운 피복작물 작부체계가 벼 뿌리 생육에 미치는 영향)

  • Son, Daniel;Lee, Young-Han
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.3
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    • pp.375-379
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    • 2011
  • This study was conducted to evaluate the effect of rice cover crop cropping systems on rice root growth in a rice field as affected by conventional tillage without rice straw or green manure crop treatment (CTFS, check plot), no-tillage without cover crops (NTNT), no-tillage amended with rape (NTRA), no-tillage amended with rye (NTRY), no-tillage amended with hairyvetch (NTHV), and no-tillage amended with Chinese milk vetch (NTCM). In 0-5 cm soil depth, dry weight of root in NTRS ($128g\;m^{-2}$) was significantly higher than in the other plots (p<0.05) at harvesting stage. In addition, content of active organic matter at 0-5 cm soil depth was $1,684g\;m^{-2}$ in NTCM, $1,309g\;m^{-2}$ in NTRA, $1,295g\;m^{-2}$ in NTRS, $1,072g\;m^{-2}$ in NTRY, $917g\;m^{-2}$ in NTHV, $434g\;m^{-2}$ CTFS, and $426g\;m^{-2}$ in NTNT treatment. In no-tillage rice cover crop cropping system, our findings suggest that NTRS and NTCM should be enhanced root growth and active organic matter in paddy field.

No-Tillage Agriculture of Korean-Style on Recycled Ridge III. Changes in Pepper Growth and Biodiversity at Plastic Film Greenhouse Soil in Organic Cultivation of No-tillage Systems (두둑을 재활용한 한국형 무경운 농업 III. 시설 무경운 유기재배 고추의 생육 및 생물다양성의 변화)

  • Yang, Seung-Koo;Shin, Kil-Ho;Kim, Sun-Kook;Kim, Do-Ik;Han, Yeon-Soo;Jung, Woo-Jin
    • Korean Journal of Organic Agriculture
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    • v.25 no.1
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    • pp.71-84
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    • 2017
  • Hot pepper growth in no-tillage cultivation on recycled ridge was increased by 22% compared with tillage cultivation. At 3 years after no-tillage cultivation, hot pepper growth was increased by 12% compared with tillage cultivation. Dry weight of unripe hot pepper at 2 years of no-tillage cultivation was 348.4 kg/10a increasing 16% compared with tillage cultivation while dry weight of unripe hot pepper was decreased at 3 years of no-tillage cultivation. Bacteria flora at 2 years of no-tillage cultivation was significantly increased compared with tillage cultivation. Bacteria flora was not significantly different at 3 years of no-tillage cultivation. Actinomyces flora at 2 years of no-tillage cultivation was significantly increased compared with tillage cultivation. Actinomyces flora was decreased at 3 years of no-tillage cultivation. Fungi flora at 2 and 3 years of no-tillage cultivation was increased by 1.3 and 1.7 times respectively, compared with tillage cultivation. Generation amount of carbon dioxide at no-tillage cultivation soil was remarkably decreased by 41% compared with tillage cultivation. Population of animalcule in early stage of hot pepper soil was 2 species and 6 individuals on Collembola and Acari at tillage cultivation. Population of animalcule in hot pepper soil was 5 species and 11 individuals including Chilopode at one year of no-tillage cultivation. Population of animalcule in hot pepper soil was 3 species and 5 individuals including Coleoptera and Chilopode at 2 years of no-tillage cultivation. Population of animalcule was 4 species and 40 individuals including Hypogastrurigae and 8 species and 97 individuals including Earwig (Labidura japornica) at 46 days after transplanting on tillage cultivation. Population of animalcule was 9~10 species and 101~107 individuals on no-tillage cultivation. Nature status for environmental change as index organism was 19 points and 33 points, at tillage and no-tillage cultivation, respectively. These results indicate that no-tillage agriculture of korean-style on recycled ridge plays a very important roles on pepper growth, biodiversity of animalcule, and greenhouse gases at plastic film greenhouse soil in no-tillage systems.