• 제목/요약/키워드: tillage

검색결과 415건 처리시간 0.022초

논토양에서 경운 및 무경운재배시 재배방법별 메탄 배출 양상 (Effects of Cultural Practices on Methane Emission in Tillage and No-tillage Practice from Rice Paddy Fields)

  • 고지연;이재생;김민태;강항원;강위금;이동창;신용광;김건엽;이경보
    • 한국토양비료학회지
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    • 제35권4호
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    • pp.216-222
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    • 2002
  • 무경운 재배가 논토양 온실가스 배출에 미치는 영향을 살펴보고자, 1998~2000년에 걸쳐 식질계 답토양에서 질소비종(요소, 유안, 완효성비료), 시비방법(전층시비, 표층시비), 유기물 시용(볏집시용, 무시용) 및 재배양식(건답직파, 중묘이앙) 등의 다양한 재배조건별 메탄가스 배출량을 경운과 무경운재배에서 조사하였다. 질소비종은 경운유무에 관계없이 유안시비구에서 메탄배출량이 가장 낮았다(요소 대비 26.6~41.1% 저감). 그러나 경운재배에 비해 수량이 낮은 무경운재배에서는 완효성 비료가 메탄배출량이 요소구에 비해 약간 적었고, 수량은 다른 질소비료 시비량이 80% 처리수준에서도 가장 높아 더 효율적인 비종으로 고려되었다. 시비방법에 따라서는 전층시비시 경운구에 비해 무경운구의 메탄배출량이 낮았으나 표층시비시에는 반대의 경향을 보였다. 볏짚 시용시에는 무경운에 의한 메탄배출 저감 효과가 강조되는 경향으로, 볏짚을 시용하지 않았을 때는 경운 대비 10.7% 저감되었고, $5000kg\;ha^{-1}$시용 시는 26.6% 저감되었다. 중묘이앙 재배시 무경운은 경운에 비해 26.6%의 메탄 배출 저감효과를 나타내었으나, 건답직파 재배시는 무경운에서 경운보다 메탄배출이 11.2% 증가하였는데 이는 건답직파시 논토양이 완전 담수되는 3엽기 이전에 경운에 의해 토양에 투입된 볏짚 중 상당한 양이 산화적으로 분해되어 $CO_2$로 대기중으로 배출되었기 때문이라 생각되었다.

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

  • 원종건;장길수;황지은;권오훈;권태영;조정래
    • Weed & Turfgrass Science
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    • 제1권4호
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    • pp.18-23
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    • 2012
  • 본시험은 고추 연작으로 인해 염류가 집적되고 병충해가 빈번히 발생되는 고추 비가림하우스내 동계 녹비작물이 고추의 생육 및 수량에 미치는 영향을 검토하고자 경상북도 농업기술원 영양고추시험장 친환경 고추재배 비가림하우스에서 우리나라에서 겨울철에 월동 가능한 자생콩과 녹비작물을 중심으로 시험을 실시하였다. 다섯가지 녹비작물인 재배완두, 새완두, 살갈퀴, 헤어리베치와 호밀을 가을에 파종하여 이듬해 봄에 녹비작물을 경운과 무경운 상태에서 고추를 재배한 결과는 다음과 같다. 동계 녹비작물의 경운 유무에 따른 건물량은 경운에서 ha 당 8.3 ton이었고, 무경운재배에서는 7.0 ton이었다. 녹비작물별 건물량은 경운 무경운 동일하게 호밀에서 16.6, 14.6 ton으로 가장 많았고, 콩과 녹비작물에서는 살갈퀴가 6.6, 5.7 ton으로 양호하였다. 식물체내 질소 함유량은 살갈퀴와 새완두에서 높게 나타났으며, ha당 질소 공급량은 경운에서 살갈퀴가 226 kg, 호밀이 251 kg이었으며, 무경운재배시 살갈퀴는 197, 호밀은 222 kg이었다. 녹비작물의 경운과 무경운재배에 따른 고추 수량에서 주당 수확과수는 경운재배에서 55.5개로 무경운의 37개보다 18.5개가 더 많아 수량은 7.5 ton으로 무경운에 비해 약 67% 증수되었다. 경운과 무경운에서 공히 녹비작물별 고추의 수량은 질소질 비교의 공급량이 많았던 살갈퀴에서 현저히 많았던 것을 알 수 있었다.

Evaluation of Soil Loss According to Surface Covering and Tillage Methods in Corn Cultivation

  • Lee, Jeong-Tae;Lee, Gye-Jun;Ryu, Jong-Soo;Kim, Jeom-Soon;Han, Kyung-Hwa;Park, Seok-Ho
    • 한국토양비료학회지
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    • 제46권6호
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    • pp.510-518
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    • 2013
  • Corn was mainly cultivated in slope land during summer season when heavy rain falls so that soil loss occurs severely. Especially, soil disturbance and exposure of topsoil by conventional tillage intensifies soil loss by heavy rain. The aim of this study was to develop surface covering and tillage methods for reducing soil loss in corn cultivation. The experiment was conducted in 17% sloped lysimeter with 8 treatments including strip tillage after surface covering with rye residue, strip tillage after residue covering of several crops and sod culture, black polyethylene film covering after conventional tillage and control. Amount of runoff water and eroded soil, and corn growth were investigated. Amounts of runoff water in all plots except black polyethylene plot ranged from 152 to 375 $m^3\;ha^{-1}$, accounting for 13~32% of 1,158 $m^3\;ha^{-1}$ in control. Amount of eroded soil decreased by 94 to 99% (3 to 89 kg $ha^{-1}$) in plots of strip tillage after covering with crop residues compared to control with 1,739 kg $ha^{-1}$. Corn yields in plots of strip tillage after covering with crop residues ranged from 6.0 to 6.9 Mg $ha^{-1}$, while that of control was 6.5 Mg $ha^{-1}$. The results suggest that strip tillage methods after surface covering with crop residues are very effective on soil conservation of slope land in corn cultivation.

Effects of Short-Term Soil Tillage Management on Activity and Community Structure of Denitrifiers under Double-Cropping Rice Field

  • Tang, Haiming;Li, Chao;Cheng, Kaikai;Shi, Lihong;Wen, Li;Xiao, Xiaoping;Xu, Yilan;Li, Weiyan;Wang, Ke
    • Journal of Microbiology and Biotechnology
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    • 제30권11호
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    • pp.1688-1696
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    • 2020
  • Soil physical and chemical characteristics, soil potential denitrification rates (PDR), community composition and nirK-, nirS- and nosZ-encoding denitrifiers were studied by using MiSeq sequencing, quantitative polymerase chain reaction (qPCR), and terminal restriction fragment polymorphism (T-RFLP) technologies base on short-term (5-year) tillage field experiment. The experiment included four tillage treatments: conventional tillage with crop residue incorporation (CT), rotary tillage with crop residue incorporation (RT), no-tillage with crop residue retention (NT), and rotary tillage with crop residue removed as control (RTO). The results indicated that soil organic carbon, total nitrogen and NH4+-N contents were increased with CT, RT and NT treatments. Compared with RTO treatment, the copies number of nirK, nirS and nosZ in paddy soil with CT, RT and NT treatments were significantly increased. The principal coordinate analysis indicated that tillage management and crop residue returning management were the most and the second important factors for the change of denitrifying bacteria community, respectively. Meanwhile, this study indicated that activity and community composition of denitrifiers with CT, RT and NT treatments were increased, compared with RTO treatment. This result showed that nirK, nirS and nosZ-type denitrifiers communities in crop residue applied soil had higher species diversity compared with crop residue removed soil, and denitrifying bacteria community composition were dominated by Gammaproteobacteria, Deltaproteobacteria, and Betaproteobacteria. Therefore, it is a beneficial practice to increase soil PDR level, abundance and community composition of nitrogen-functional soil microorganism by combined application of tillage with crop residue management.

Effects of Short-Term Tillage on Rhizosphere Soil Nitrogen Mineralization and Microbial Community Composition in Double-Cropping Rice Field

  • Haiming Tang;Li Wen;Kaikai Cheng;Chao Li;Lihong Shi;Weiyan Li;Yong Guo;Xiaoping Xiao
    • Journal of Microbiology and Biotechnology
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    • 제34권7호
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    • pp.1464-1474
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    • 2024
  • Soil extracellular enzyme plays a vital role in changing soil nitrogen (N) mineralization of rice field. However, the effects of soil extracellular enzyme activities (EEA) and microbial community composition response to N mineralization of rice field under short-term tillage treatment needed to be further explored. In this study, we investigated the impact of short-term (8-year) tillage practices on rhizosphere soil N transformation rate, soil enzyme activities, soil microbial community structure, and the N mineralization function gene abundances in double-cropping rice field in southern China. The experiment consisted of four tillage treatments: rotary tillage with crop straw input (RT), conventional tillage with crop straw input (CT), no-tillage with crop straw retention (NT), and rotary tillage with all crop straw removed as a control (RTO). The results indicated that the rhizosphere soil N transformation rate in paddy field under the NT and RTO treatments was significantly decreased compared to RT and CT treatments. In comparison to the NT and RTO treatments, soil protease, urease, β-glucosaminidase, and arginase activities were significantly improved by the CT treatment, as were abundances of soil sub, npr, and chiA with CT and RT treatments. Moreover, the overall diversity of soil bacterial communities in NT and RTO treatments was significantly lower than that in RT and CT treatments. Soil chitinolytic and bacterial ureolytic communities were also obviously changed under a combination of tillage and crop straw input practices.

30년 콩-옥수수 윤작 및 경운처리 장기시험 포장의 토양 온실가스 발생 (Soil Greenhouse Gas Emissions from Three Decades Long-term Experimental Field of Corn-Soybean Rotation and Tillage Treatments)

  • 서종호
    • 한국작물학회지
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    • 제57권1호
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    • pp.89-97
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    • 2012
  • 1. 30년 장기 연용구의 연작 대비 윤작에 의한 옥수수 및 콩의 수량증대는 옥수수보다 콩이 더 컸으며, 연작시 무경운에 따라 수량이 감소되었던 옥수수는 윤작에 의해 수량이 많이 회복되었다. 콩은 연 윤작구 모두 무경운에서도 수량이 감소하지 않았다. 2. 윤작구의 작물재배기간의 이산화탄소 누적발생량은 재배작물 및 처리간 차이가 없었으며, 메탄은 콩의 재배시 plow 경운구에서 생육초기에 증가하였다. 3. 아산화질소의 발생은 옥수수 생육초기 질소시비 후에 질소비료의 무기화 과정에서 발생량이 증가하였는데, 경운방법에 따라 차이가 뚜렷하여 chisel 경운에서 가장 높았고, 무경운에서 가장 낮았다. 4. 콩-옥수수 윤작체계에서 plow 및 chisel 경운에 비해 무경운(no-tillage)의 채택에 따라 작물의 수량 감소없이 콩 재배 시 메탄 $0.7kg\;C\;ha^{-1}$ 및 옥수수 재배 시 아산화질소 $2{\sim}4kg\;N\;ha^{-1}$ 발생량을 감소시킬 수 있었다.

CHARACTERISTICS OF MINIMUM TILLAGE BY ROTARY TILLER FOR DIRECT RICE SEEDER

  • Park, S. H.;Lee, K. S.;Lee, C. S.
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2000년도 THE THIRD INTERNATIONAL CONFERENCE ON AGRICULTURAL MACHINERY ENGINEERING. V.II
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    • pp.154-161
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    • 2000
  • A series of soil bin experiment was carried to investigate the effects of rotary blade shape, rotational direction of rotary blade, number of blade and soil cutting disk blade on the characteristics of partial tillage. Among the three types of rotary blades, rotary blade for cultivator was considered to be proper for partial tillage of direct seeder considering the torque requirements and ratio of soil breaking. There is no need to attach so many blades to the rotary shaft. Four rotary blades were enough for efficient partial tillage by rotary tiller. Though soil cutting disk blade assisted the better formation of seedbed furrow, attachment of the soil cutting disk blade increased torque requirements.

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Effect of Tillage on Nonpoint Source Pollution of Surface and Ground Water System (I); Effect of Tillage Practices on Density and Saturation of Soil

  • 최정대;;류영환;최예환
    • 한국농공학회지
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    • 제34권E호
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    • pp.1-11
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    • 1992
  • Increasing national concern on nonpoint source pollution of surface and ground water Systems has led researchers and policy makers to develop certain agricultural Best Management Practices. As an initial step of broad study program above mentioned, this study reflected the effects of different tillage practice on bulk density and degree of saturation on two regional soils, namely Tama silt loam and Catlin silt loam. Results may help to clarify some of the conflicting findings on the impact of tillage systems on these parameters and it may also explain some of the reasons for specific role that different tillage systems play regarding nonpoint source pollution from agricultural fields.

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Consumed-Power and Load Characteristics of a Tillage Operation in an Upland Field in Republic of Korea

  • Kim, Jeong-Gil;Kim, Young-Joo;Kim, Jung-Hun;Shin, Beom-Soo;Nam, Ju-Seok
    • Journal of Biosystems Engineering
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    • 제43권2호
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    • pp.83-93
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    • 2018
  • Purpose: This study derived the consumed power and load characteristics of a tillage operation performed in an upland field located in Seomyeon, Chuncheon, Rep. Korea, where potatoes and cabbages were cultivated in two crops. Methods: A plow and rotavator were mounted on a tractor with 23.7 kW of rated power to perform the tillage operation. The work conditions were determined, considering the actual working speed of the tillage operation performed by the local farmers. The power consumption of the rear axle, engine, and power take-off (PTO), PTO torque, and tractive force were measured under each work condition. The consumed power and load characteristics were analyzed using their average values. Results: The rotary-tillage operation consumed more engine power than the plow operation for the same tractor-transmission gear condition. The PTO in the rotary-tillage operation and the rear axle in the plow operation consumed the most power. The power consumption of the engine and the PTO for the rotary-tillage operation tended to increase as the transmission gears of the tractor and the PTO became higher. In contrast, the rear-axle power consumption was insignificant. In addition, the PTO torque tended to rise as the tilling pitch increased. For the plow operation, the drawbar power and the rear axle power accounted for 68-90% of the engine power. The engine and rear axle power, drawbar power, and tractive force tended to rise as the working speed increased. Conclusions: The power consumption and load characteristics differed for the plow and rotary-tillage operations. They may also differ depending on the soil conditions. Therefore, the power consumption and load characteristics in various work environments and regions should be analyzed, and reflected in the design of tractors and working implements. The results derived from this study can be used as a reference for such designs.

Effects of cultivation methods on methane emission in rice paddy

  • Kim, Sukjin;Choi, Jong-Seo;Kang, Shin-gu;Park, Jeong-wha;Yang, Woonho
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.319-319
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    • 2017
  • Methane is the main greenhouse gas released from rice paddy field. Methane from paddy fields accounts for 11 % of the global total methane emission. The global warming potential (GWP) of methane is 25 times more than that of carbon dioxide on a mass basis. It is well known that most effective practice to mitigate methane in paddy is related to the water management during rice growing season and the use of organic matters. This study was conducted to investigate the effects of tillage and cultivation method on methane emission in paddy. Tillage (tillage and no-tillage) and cultivation methods (transplanting and direct seeding) were combined tillage-transplanting (T-T), tillage-wet hill seeding (T-W), tillage-dry seeding (T-D) and no-till dry seeding (NT-D) to evaluate methane mitigation efficiency. Daily methane emission was decreased on seeding treatments (T-W, T-D, NT-D) than transplanting treatment (T-T). Amount of methane emission during rice growing season is highest in T-T ($411.7CH_4\;kg\;ha^{-1}y^{-1}$) and lowest in NT-D treatment (89.7). In T-W and T-D treatments, methane emissions were significantly decreased by 36 and 51 % respectively compared with T-T. Methane emissions were highly correlated with the dry weight of whole rice plant ($R^2=0.62{\sim}0.93$). T-T treatment showed highest $R^2$ (0.93) among the four treatments. Rice grain yields did not significantly differ with the tillage and cultivation methods used. These results suggest that direct seeding practice in rice production could mitigate the methane emissions without loss in grain yield.

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