• Title/Summary/Keyword: Weed control

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Weed Control Method of Cereals Crops Using Weeder Machine for Environment-friendly Control Practice (수수 이식 및 직파재배시 중경제초에 의한 잡초방제 효과)

  • Hwang, Jae-Bok;Jung, Ki-Yeol;Park, Tae-Seon;Yun, Jong-Tak;Kim, Hak-Sin;Choi, In-Bae;Koo, Bon-Il;Bae, Hee-Soo
    • Weed & Turfgrass Science
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    • v.4 no.3
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    • pp.230-235
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    • 2015
  • The experiment was conducted to elucidate the growth characteristics of sorghum in the different planting methods: direct sowing and transplanting (20 days after sowing, DAS). Weed weight was taken from three randomly chosen-2 plots 60 DAS (DAT). One time (20, 30 days after transplanting, DAT) and two times (10/20, 10/30, 20/30, 20/40 DAS) application of weeder machine (FRT 80E) were conducted for direct sowing and transplanting, respectively. In transplanting, the weed control efficacy of weeder machine at 90 DAT was about 67% (DAT 20), 57% (DAT 30) at one time and 87% at two times. The most effective application number was two times (20/40 DAT) followed by one time (20 DAT). However, when reviewing yield and economy, the frequency and times of using weeder machine were preferably one time and 20 DAT. Results with mechanical weed control have been particularly good in transplanted row crops such as sorghum. In direct sowing, the weed control efficacy of weeder machine 60 DAS was about 87% (10/20 DAS), 88% (10/30 DAS) and 82% (20/30 DAS) at two times, respectively. When reviewing yield and economy, the times and frequency of weeder machine were preferably two times, 10 and 30 DAS.

Emergence and Growth of Weeds and Their Chemical Control in Paddy Field under Different Water Depths (담수심(湛水深)에 따른 논 잡초발생(雜草發生) 상태(狀態)와 제초제(除草劑) 효과(效果)에 미치는 영향(影響))

  • Ku, Y.C.;Oh, Y.J.;Lee, J.H.
    • Korean Journal of Weed Science
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    • v.2 no.1
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    • pp.47-52
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    • 1982
  • This experiment was conducted to evaluate weed control effect of Butachlor, Oxadiazon, and Bifenox under three levels of water depth (0, 3, 6 cm). Number of E. crusgall. and M. vaginalis decreased as water depth increased while that of P. distinctus showed the opposite trend. Water depth did not influence number of E. kuroguwai and C. serotinus. Weed control effect of Butachlor and Oxadiazon was best at 3 cm water depth at while that of Bifenox was best at 6 cm water depth. Injury of Butachlor to rice decreased as water depth increased while that of Oxadiazon and Bifenox showed opposite trend.

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Evaluation of Carfentrazone-ethyl Alone and in Combination with Glyphosate or Glufosinate for Weed Control in Orchards (Carfentrazone-ethyl의 단제와 Glyphosate 및 Glufosinate와의 혼합처리에 의한 과수원에서의 잡초방제효과)

  • Lee, H.J.;Han, S.U.;Guh, J.O.;Kim, M.H.
    • Korean Journal of Weed Science
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    • v.17 no.3
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    • pp.256-261
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    • 1997
  • Effect of a new postemergence herbicide carfentrazone-ethyl on controlling weeds in pear orchards was examined and compared with that of glyphosate and glufosinate. Herbicides tested were applied in mid June when weeds had reached at an average height of 15 to 20cm. The experimented orchards were infested mainly by dicots of Artemisia princeps, Chenopodium album, Polygonum hydropiper, Erigeron canadensis, Commelina cummunis, Calystegia japonica, and Amaranthus ascenders, and monocots of Echinochlor crus-galli, Digitaria sangunalis, Setaria viridis, and several sedges, Carfentrazone-ethyl alone effectively controlled dicot weeds in the orchards, but not monocot weeds. Especially, sedges were not adequately controlled by carfentrazone-ethyl alone at any application rates examined. Glyphosate or glufosinate was more effective to control monocot weeds than carfentrazone-ethyl, whereas carfentrazone-ethyl exhibited higher effect on dicot weeds than glyphosate or glufosinate. Carfentrazone-ethyl mixed with glyphosate of the half recommended rate exhibited a higher degree of weed control, especially of E. crus-galli, as compared to the herbicide mixture of carfentrazone-ethyl with glufosinate of the half recommended rate. However, no phytotocixity of the herbicides to pear trees was observed. Our results demonstrate that catfentrazone-ethyl is useful to reduce the application rates and to accelerate the weed controlling effect of glyphosate or glufosinate. Thus, carfentrazone-ethyl in combination with glyphosate or glufosinate can successfully be used to control the most important weeds in orchards.

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Weed Control in the Field of Cnidium officinale Makino (일천궁재배지(日川芎裁培地)의 효율적(效率的) 잡초방제(雜草防除) 방법(方法))

  • Kwon, Tae-Young;Jung, Ki-Chai;Park, No-Kwuan;Park, Sun-Do;Choi, Boo-Sull
    • Korean Journal of Medicinal Crop Science
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    • v.5 no.4
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    • pp.255-259
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    • 1997
  • The effects of slow-release fertilizer, C. D. U. (cyclo-di-urea), vinyl mulching and herbicides in different combinations were tested for weed control as well as the growth and yield of Cnidium officinale and economics were analyzed. Black vinyl mulching, ethalfluralin EC+white vinyl mulching, and ethalfluralin EC controlled weed completely till 60days after planting. When pendimethalin GR was sprayed more than 4.5kg/10a weed control value was $93.7{\sim}97.3%$, so significant difference was recognized with the recommended application rate (3.0kg/10a).

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Effect of Weed Control and Lodging Reduction for Increase the Grain Yield of Buckwheat (메밀증수를 위한 잡초방제 및 도복경감 효과)

  • Heo, Kwon;Lee, Han-Bum;Park, Chul-Ho;Choi, Yong-Soon
    • Korean Journal of Plant Resources
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    • v.13 no.3
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    • pp.243-248
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    • 2000
  • This study was conducted to evaluate the effects of weed control and lodging reduction in the cultivation of buckwheat. The effect of weed control was significant. In the herbicide plot, nevertheless, grain yield and plant height were more decreased than habitual and vinyl mulching plots. Therefore, the application of herbicide was considered unnecessary in buckwheat cultivation having short growth period. In the habitual plot, dominant weed species are Digitaria sanguinalis, Erigeron annuus, E. canadensis, Setaria viridis, and Stellaria alsine var. undulata. On the effect of plant dwarf agent, C.C.C. and TIBA, plant height became shorter than habitual plot but the grain yield decreased. The latter tip pinching time, the less in grain yield which indicate tip pinching is ineffective in grain yield and lodging reduction. Among the wild species and cultivars of Fagopyrum, F. urophyllum was differentiated into xylem and phloem tissues indicating woody plant. Stem hardness of this species was the hardest as 625,110,000 dyne/cm$^2$which is at least 3.5 times harder than F. esculentum cv. Suwon #12. Therefore, it needs that the woody habitat gene of F. urophyllum is transfered into other cultivars in buckwheat breeding strategy.

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Control and Occurrence of Herbicide Resistance Echinochloa oryzicola in Rice Paddy Field of Honam Area (호남지역에서 제초제 저항성 강피의 발생과 방제)

  • Im, Il-Bin;Im, Bo-Hyeok;Park, Jea-Hyeon;Im, Min-Hyeok;Kim, Dae-Hyeon;Jang, Jeong-Han;Choi, Kyeong-Jin
    • Weed & Turfgrass Science
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    • v.6 no.1
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    • pp.32-39
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    • 2017
  • This study was carried out to investigate the ACCase inhibiting herbicide resistant Echinochloa oryzicola collected in a Honam rice field and to investigate the control of E. oryzicola in directly seeded paddy rice field. The study result showed that about 44% of the 67 biotypes collected in the rice field in Honam region were resistant to ACCase-inhibiting herbicides. The efficacy of several chemical herbicides on these resistant E. oryzicola biotypes was evaluated according to their application timings. Among herbicides applied 4 days before seeding, pretilachlor, butachlor, oxadiazon, oxadiargyl, oxadiazon+pretilachlor, and fentrazamide+oxadiargyl, provided 95% or higher control of the resistant E. oryzicola biotypes. Among the herbicides applied 10 days after seeding, bromobutide+fentrazamide+imazosulfuron, benzobicyclon+fentrazamide+imazosulfuron, pyrazosulfuron-ethyl+thiobencarb, fentrazamide+imazosulfuron, bromobutide+imazosulfuron+mefenacet and bromobutide+imazosulfuron+pyraclonil provided ${\geq}95%$ control of the weeds. Bromobutide+imazosulfuron+mefenacet and bromobutide+pyrazosulfuron-ethyl+pyriminobac-methyl, applied 15 days after seeding, provided ${\geq}95$ and 90% control of the weeds. Foliar application of cyhalofop-butyl+propanil at 30 days after seeding provided ${\geq}90%$ control of the weeds. In addition, oxaziclomefone provided ${\geq}90%$ control for 40 days after soil application. These results show that E. oryzicola biotypes resistant to ACCase-inhibiting herbicides could be effectively controlled in directly seeded rice in submerged paddy fields using single or tank-mixed chemical herbicides currently available on the market.

Mixing Pyroligneous Acids with Herbicides to Control Barnyardgrass (Echinochloa crus-galli)

  • Acenas, Xernan Sebastian;Nunez, John Paolo Panisales;Seo, Pil Dae;Ultra, Venecio Uy Jr.;Lee, Sang Chul
    • Weed & Turfgrass Science
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    • v.2 no.2
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    • pp.164-169
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    • 2013
  • Alternatives to commercial chemical herbicide are currently being searched and tested due to the numerous adverse effects of commercially available herbicides to the environment. Barnyardgrass (Echinochloa crusgalli) is an important weed species around the world, especially in paddy rice fields. This study focuses on the favorable effects of mixing pyroligneous acids with commercial liquid herbicides. Seedlings were transplanted and grown under greenhouse conditions. The effect of treatment time or leaf-stage on herbicide-pyroligneous acid efficacies was checked, coupled with isolation and quantification of biochemical compounds. Results revealed that herbicide treatment at early post emergence (2~3 leaf stage) of Echnochloa crus-galli leads to effective control. Both liquid herbicides affected fatty acid, protein, and amino acid syntheses as reflected on their contents. The influence of wood vinegar (WV) or rice vinegar (RV) on these compounds was not thoroughly verified due to lack of information on the pyroligneous products. We observed that mixing WV or RV with BCB (bentazone + cyhalof-butyl) gives more favorable results than BUC (butachlor + clomazone), mixed with WV or RV. The result would indicate the potential of mixing pyroligneous acid in reducing herbicide application rate.