• Title/Summary/Keyword: no-tillage cultivation

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Effects of Partial Tillage Seeding of Hairy vetch on Green Manure Biomass and Rice Yield in Rice-based Cropping System

  • Ryu, Jin-Hee;Jeon, Weon-Tai;Kim, Min-Tae;Choi, Jong-Seo;Kim, Sook-Jin;Kim, Kwang-Seop;Park, Ki-Do;Kang, Hang-Won
    • Korean Journal of Soil Science and Fertilizer
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    • v.46 no.6
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    • pp.606-609
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    • 2013
  • To investigate the effect of partial tillage seeding of hairy vetch on green manure biomass and rice yield, on-farm experiment was conducted at eco-friendly hairy vetch cultivation area located in Yesan-gun, Chungcheongnam-do. Seeding methods of hairy vetch consisted of partial tillage seeding (PTS) and broadcasting before rice harvesting (BBRH). Hairy vetch was incorporated into soil on May 18 and rice seedling was transplanted on May 26. The growths of hairy vetch before overwintering were investigated on November 11. Plant height of BBRH plot was longer than that of PTS plot, but somewhat larger number of seedling stand was found in PTS. Biomass and N production of hairy vetch were investigated on May 18. Results of the investigation showed no difference between two seeding methods. Although the seeding time was 21 days late in PTS, the biomass of hairy vetch and rice yield were equivalent to those of BBRH seeding, so we conclude that PTS could improve overwintering survival of hairy vetch in rice cropping system.

Effect of Milk Vetch(Astragalus sinicus L.) on the Physico-chemical Properties and Rice Yield in the Paddy Soil of Rice No-tillage Seeding (자운영(Astragalus sinicus L.) 입모중 벼 무경운 직파재배가 토양 이화학성 및 벼수량에 미치는 영향)

  • Jeong, Ji-Ho;Sin, Bok-Woo;Yoo, Chul-Hyun
    • Korean Journal of Soil Science and Fertilizer
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    • v.34 no.2
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    • pp.117-121
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    • 2001
  • This study was carried out to investigate the effects of rice cultivation of no-tillage seeding on the physicochemical properties and rice yield in the paddy soil of Milk vetch (Astragalus sinicus L.) established. The number of Milk vetch establishment was 256 per $m^2$ in the before experiment but 440 per $m^2$ in the after experiment. The seed numbers of Milk vetch were sufficient that Milk vetch seed were not sown again in the next year. Soil physicochemical properties of the plot of Milk vetch cultivation were similar to the conventional plot. The amount of weed occurrence was 87g dry weight per $m^2$ in the conventional but not occurrence in the sowing of Milk vetch establishment. Rice yield was 4.9ton per ha in the conventional and 4.5 ton per ha in the soybean seeder sowing of Milk vetch establishment.

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Effect of Rice-straw and Dead Waterfoxtail Mulch on Growth of Rice and Paddy Weeds in No-tillage Rice Cultivation (벼 무경운재배시 볏짚과 둑새풀 고사체 피복이 벼와 논잡초의 생육에 미치는 영향)

  • Chae, J.C.;Jun, D.K.;Kim, D.W.
    • Korean Journal of Weed Science
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    • v.18 no.3
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    • pp.191-196
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    • 1998
  • This experiment was conducted to investigate the mulch effect of rice straw and dead water foxtail treated with herbicides on weed germination, seedling establishment, and early growth of rice under the no-till culture condition. The percent seedling establishment of rice straw + dead water foxtail mulch was decreased significantly compared to rice straw mulch and non-mulch. Rice straw mulch and rice straw + dead water foxtail mulch inhibited the early growth of no-till direct seeded rice remarkably. However, they promoted rice growth after active tillering stage. Rice straw mulch and rice straw+dead water foxtail mulch in no-till direct seeding decreased weed occurrence significantly. The control value of barnyardgrass, compared with non-mulch, was 96.5% in the rice straw mulch and 75.6% in the rice straw + dead water foxtail mulch, respectively. The pH and concentration of dissolved oxygen in irrigated water were reduced significantly by both rice straw mulch and rice straw+dead water foxtail mulch during early rice growth stage.

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Corn (Zea mays L.) Root Distribution in Response to Variation in Soil Water Content (토양 수분함량에 따른 옥수수 뿌리 분포의 변화)

  • Kim, Won-Il;Jung, Goo-Bok;Huck, M.G.;Kim, Yong-Woong;Park, Ro-Dong
    • Korean Journal of Soil Science and Fertilizer
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    • v.35 no.1
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    • pp.1-11
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    • 2002
  • Root distribution was monitored in the root zone of corn fields on several soil series in central Illinois during three growing seasons in order to find the effect of soil series and tillage system on root growth. A minirhizotron technique was used to videotape each soil profile in weekly intervals to a depth of 75 cm under conventional tillage (CT) and no tillage (NT) systems of cultivation. Root distribution near soil surface generally increased during the early stages of the growing season, but declined as surface soil moisture was depleted in late summer. Even though root distribution was not significantly different between soil series in this experiment. differences in root distribution between soil series were associated with the increases in root-available water storage capacity. Root population in the top 30 cm of NT plots. where increased water infiltration rates and saturated flow of soil moisture into the subsoil, was generally higher than that of CT plots in Illinois corn fields. Foots appeared in the deeper layers later in the growing season, with root penetration into subsoil layers occurring as much as 2-3 weeks earlier on the NT plots than in CT plots. In conclusion, root distribution was significantly affected by the tillage systems, but not different by soil series.

Effect of Nitrogen Application Rate on Growth and Yields of Aster scaber Thunb. and Ligularia fischeri Turcz. in the First Year after Transplanting (참취와 곰취의 정식 후 1년차 수량 및 생육특성에 미치는 질소 시용 효과)

  • Choi, Seong-Chul;Ahn, Mun-Sup;Ahn, Su-Yeong;Ok, Yong-Sik;Son, Jung-Su;Joo, Jin-Ho
    • Korean Journal of Environmental Agriculture
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    • v.28 no.3
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    • pp.243-248
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    • 2009
  • Chinese cabbage cultivation has been typically practiced in alpine sloped farmland in Gangwon province, and caused severe soil erosion by soil disturbance like tillage. Cultivation of wild edible greens such as Aster scaber Thunb. and Ligularia fischeri Turcz. could be one of alternative ways to reduce soil erosion, because their residues become stubble mulch after harvest, and there is no need for tillage every year. Therefore, the objective of this research was to estimate the effect of nitrogen application rates for the maximum production of Aster scaber Thunb. and Ligularia fischeri Turcz. in the early cultivation stages. Total N contents of Aster scaber Thunb. and Ligularia fischeri Turcz. increased with the increment of fertilizer application rates. Maximum growth of Aster scaber Thunb. and Ligularia fischeri Turcz. was observed with the highest rates of fertilizer. We obtained the relationship between Aster scaber Thunb. and N application rate, as y = $-0.296x^2$ + 73.82x + 5246 (R = 0.998). There was no significant difference for Aster scaber Thunb production between N application rates for 120 and 160 kg/ha. Also, the relationship between Ligularia fischeri Turcz. and N application rate was y = $-0.135x^2$ + 32.86x + 1529 ($R^2$ = 0.965) in the first year trial after transplanting.

Effects of Tillage Practice and Planting Date on Maize-onion Growth and Yield in Southern Regions Paddy Field (경운방법 및 파종시기가 남부지역 논 재배 옥수수와 후작 양파의 생육과 수량에 미치는 영향)

  • Park, Wonsang;Kim, Gamgon;Jeong, Yonghyun;Choi, Nayoung;Na, Chae-In
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.66 no.4
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    • pp.392-402
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    • 2021
  • The present study investigated the effects of tillage practices (deep cultivation [DC] and conventional tillage [CT]) and extended planting dates (mid-June to July) for maize-onion rotation in paddy fields. The silage corn (Zea mays L.) cultivar 'Kwangpyeongok' and the waxy corn cultivar 'Ilmichal' were planted on June 14, July 3, and July 15 in 2019. In both maize, the plant height of June 14 planted was up to 100 cm greater than that of July 15 planted on August 16 and up to 40 cm on August 30. At 30 Days after planting, the leaf area index (LAI) of silage corn planted on July 3 and 15 greater than that of corn planted on June 14 due to high temperature in the early season; however, there were no differences in the LAI of waxy corn according to the planting date. Despite favorable temperature, plants sown on July 3 and 15 experienced high moisture stress during the seedling stage due to consistent rainfall, and waxy corn was highly sensitive to high moisture stress. The total yield of silage corn was 1,232 (845 in TDN), 860 (598 in TDN), and 765 (508 in TDN) DW kg·10a-1 for plants sown on June 14, July 3, and July 15, respectively. The fresh marketable ear yield of waxy corn was 872, 814, and 525 FW kg·10a-1 for plants sown on June 14, July 3, and July 15, respectively. After the completion of maize cultivation, onion seedlings (Allium cepa L.) were transplanted on November 12, 2019, and harvested on May 27, 2020. Neither summer tillage nor maize planting date affected onion growth or yield. The marketable onion yield was 8,305 and 7,848 kg·10a-1 with DC and CT, respectively. In conclusion, DC did not improve maize growth or yield under paddy conditions. Mid-June to early July is a practical window for maize planting for growers in this region.

Effects of the Slow-releasing Fertilizer and Sowing Date on Waxy Corn "Mibaek 2" Propagated through Double Cropping without Tillage in the Middle Region of Korea

  • Lee, Jae-Wung;Hwang, Se-Gu;Moon, Hye-Rim;Kim, Ik-Jei;Kim, Young-Ho
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.65 no.4
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    • pp.477-484
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    • 2020
  • This study was conducted to investigate the effects of slow-releasing fertilizer and sowing date on waxy corn propagated through double cropping without tillage. "Mibaek 2" was sown for first cropping on March 25th, April 5th, and April 15th, and for second cropping on July 5th, July 15th, and July 25th in 2018-2019. In order to save labor, slow-releasing fertilizer was utilized only one time before sowing. The accumulated temperature from sowing to silking was about 590-700℃. It took 65-77 days when "Mibaek 2" was sown in early April, but the one sown in early July took 42-52 days. In the first cropping, the culm length and ear length caused by the sowing date had no statistical significance, but the kernel set length was the highest at 123 cm in the sowing district on April 5th. The weight of marketable ears was the highest at 100%, in addition to soil testing-based recommended fertilization. Meanwhile, in the second cropping, culm length, ear length, and yield were less compared to the first cropping. The culm length, kernel set length, ear length, and seed set length decreased as sowing date was delayed. The number and yield of marketable ears were the highest at 100%, in addition to soil testing-based recommended fertilization like in the first cropping. It has been found that securing yield by July 15th to finish the second seeding of the crop in the central part of Korea is advantageous. These results of this study will be helpful to farmers for the double cropping of waxy corn cultivation and management.

Changes of Pepper Yield and Chemical Properties of Soil in the Application of Different Green Manure Crops and No-Tillage Organic Cultivation (무경운 유기재배에서 녹비작물별 고추의 수량과 토양 화학성 변화)

  • Yang, Seung-Koo;Seo, Youn-Won;Kim, Yong-Soon;Kim, Sun-Kook;Lim, Kyeong-Ho;Choi, Kyung-Ju;Lee, Jeong-Hyun;Jung, Woo-Jin
    • Korean Journal of Organic Agriculture
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    • v.19 no.2
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    • pp.255-272
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    • 2011
  • This work studied the growth and yield of green crops, changes of mineral composition in greenhouse soil and green crops, and infection with wintering green crops cultivation in greenhouse field. At 74 days after seeding of wintering green crops, dry matter was 710kg/10a in rye, 530kg/10a in barley, 230kg/10a in hairy vetch, and 240kg/10a in bean or weeds. Total nitrogen content in green crops was 4.5% in pea and hairy vetch, and 3~4% in barley and rye. $P_2O_5$, CaO, and MgO contents in all green crops were about 1.0%, and $K_2O$ content was the highest level by 4~5% among macro elements. Total nitrogen fixing content in shoot green crops uptaken from soil was 22.1kg/10a in rye, 20.6kg/10a in barley, 10.6kg/10a in hairy vetch, and 9.6kg/10a in pea and giant chickweed. $P_2O_5$ fixing content in shoot green crops uptaken from soil was 8.4kg/10a in rye, 6.3kg/10a in barley, and 2.3 kg/10a in hairy vetch and pea. $K_2O$ fixing content in shoot green crops uptaken from soil was 28kg/10a in rye, 24.7kg/10a in barley, and 11kg/10a in hairy vetch and pea. CaO fixing content in shoot green crops uptaken from soil was 2~3kg/ 10a in all green crops, and MgO fixing content was 1.7~2.6kg/10a in all green crops. Pepper growth in no-tillage was not a significant difference at all green manure crops. The number of fruit and fruit weight were higher in control, pea, hairy vetch and harvest barley than rye and barley. Soil mineral compositions in wintering green crops increased at pH, organic matter, CEC compared with control. Soil chemical compositions were stable level at green crops cultivation according as decreases of EC, available phosphoric acid, Ca, and Mg contents. After no-tillage by green manure crops, pH in soils was higher in green manure crops than control. EC content in soils was lower in green manure crops than control, and was remarkably low level in barley harvest. Organic matter content in soils increased in hairy vetch and barley green manure but decreased by 35% in barley harvest. Total nitrogen and avaliable $P_2O_4$ content in soils remarkably increased but was not a significant difference at all green manure crops. Cation (K, Ca, and Mg) content in soils decreased by 15~20% in K, 2~11% in Ca, and 3~6% in Mg at rye, barley and pea compared with control.

Rice Cropping Methods for Natural Reestablishment of Chinese Milkvetch (자연적인 자운영 재입모를 위한 적정 벼 재배유형)

  • 김영광;홍광표;정완규;최용조;송근우;강진호
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.46 no.6
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    • pp.473-477
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    • 2001
  • Chinese milkvetch (Astragalus sinicus L.) has been traditionally used as a green manure supplying mineral N and organic matters to soil. In rice-Chinese milkvetch interrelay cropping system, three rice cultivating methods (no-till direct seeding, no-till transplanting, and tillage transplanting) were evaluated for stand reestablishment without reseeding Chinese milkvetch with two cropping times (May 25 and June 4) for two years. Chinese milkvetch incorporated was decomposed rapidly in the first week. Decomposition was fast in topsoil than in subsoil. Natural milkvetch reestablishment (NMR), following harvest of no-till-direct-sown rice was good enough to cover the paddy field in both cropping times, but rice yield of this method was lower than that of transplanted rice on paddy field without milkvetch cultivation. Even though good NMR was secured in no-till rice transplanting, the shoot of milkvetch should be removed before machine-transplanting of rice seedlings. NMR was better in rice cropping at the mid-ripening stage of milkvetch (June 4) than at the late-bloom stage (May 25). Rice yield was higher in tillage transplanting at the mid-ripening stage of milkvetch (June 4) than in the other rice cropping method.

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Compaction Characteristics of Multi-cropping Paddy Soils in South-eastern Part of Korea (우리나라 동남부 다모작 논토양의 경반화 특성)

  • Yun, Eul-Soo;Jung, Ki-Yeul;Park, Ki-Do;Sonn, Yeon-Kyu;Park, Chang-Yeong;Hwang, Jae-Bog;Nam, Min-Hee
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.5
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    • pp.688-695
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    • 2011
  • This study was carried out for some survey about soil compaction in the multi-cropping system of paddy field. Investigated sites were 90 farmer's fields in south-eastern part of Korea. The tillage practices season was different according to cropping system of paddy; in spring for mono rice cultivation and in autumn for the multi-cropping field. The average tillage depth in investigated sites was about 25 cm, however, it is different between the farmer's tillage practices and soil characteristics. It is high correlation to tillage deep and minimum resistance of penetration. The reaching soil deep to maximum resistance of penetration was about 27 cm, and average penetration resistance of the deep is 1.8~2.0 MPa for moderately fine-textured soils and more than 3.0 MPa for moderately coarse-textured soils. The difference of penetration resistance between cultivating and compacted layer was in order to sandy loam > clayey loam > clayey, and the difference was lesser in poorly drained soils than somewhat poorly ones. In the rice mono cropping field, the maximum resistance in no-tillage for 15 years was 1.18~1.25 Mpa at 20~25 cm in soil deep, however, the resistance of field with every year tillage practices was 2.03~2.21 Mpa. In the extremely compacted sandy loam textured soils, the penetration resistance at 30 cm in soil depth was drastically reduced by the subsoil from 5.2 Mpa to 3.2 Mpa, and the watermelon root in plastic film house was deep elongated.