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1.
乙草胺防除辣椒田杂草的药效试验   总被引:1,自引:0,他引:1  
50 %乙草胺EC 12 0 0、15 0 0ml/hm2 在辣椒苗移栽前 1d对土壤用药 ,对辣椒安全 ,除草效果在 75 .0 %~ 82 .6 %之间 ;乙草胺对禾本科杂草的防效好于阔叶草  相似文献   
2.
Field studies were undertaken to explore the weed management strategies for transplanted and direct wet-seeded rice in the Dera Ismail Khan district of North-west Frontier Province, Pakistan. The experimental design was a randomized complete block with a split plot arrangement. The main plots consisted of two planting techniques (transplantation and direct seeding), while weed control practises assigned to the subplots included the use of the granular herbicide Sunstar 15WG (ethoxy sulfuron), Machete 60EC (butachlor), conventional hand weeding, and the weedy check (untreated control). Data were recorded on weed dynamics and the agronomic parameters of the rice crop. Economic analyses on the data were also run. The weed density and biomass were lower in the transplantation plots than the direct-seeding plots. The herbicides ethoxy sulfuron and butachlor reduced the density over the weedy check, with a density comparable to hand weeding in 2002, but slightly higher in 2003. As a result of weed management by hand weeding and herbicides, the paddy yield and its components were significantly higher for the transplanted method compared to the direct-seeded method. The comparable yield of herbicides with hand weeding offers an option for the use of herbicides as an alternative management tool. In light of our findings, it is concluded that for good economic returns, rice crops may be transplanted rather than direct-seeded. The herbicides ethoxy sulfuron and butachlor offer a weed control cover comparable with hand weeding under the transplantation method, while butachlor is good for controlling weeds even under the direct-seeded conditions in the agroclimatic conditions of the area.  相似文献   
3.
Summary Stem thickness of the weed Solanum nigrum and the crop sugarbeet was determined with a He–Ne laser using a novel non‐destructive technique measuring stem shadow. Thereafter, the stems were cut close to the soil surface with a CO2 laser. Treatments were carried out on pot plants, grown in the greenhouse, at two different growth stages, and plant dry matter was measured 2–5 weeks after treatment. The relationship between plant dry weight and laser energy was analysed using two different non‐linear dose–response regression models; one model included stem thickness as a variable, the other did not. A binary model was also tested. The non‐linear model incorporating stem thickness described the data best, indicating that it would be possible to optimize laser cutting by measuring stem thickness before cutting. The general tendency was that more energy was needed the thicker the stem. Energy uses on a field scale are discussed.  相似文献   
4.
Three field experiments were carried out in organically grown winter wheat in Denmark. The treatments were sowing time (normal or late sowing) and false seedbed, row width (12 and 24 cm) and weed control method [untreated; mechanical weed control (weed harrowing at 12 cm supplemented with inter‐row hoeing at 24 cm); and herbicide weed control]. Weed biomass in midsummer was greatest on plots sown at the normal sowing time (compared with delayed sowing) and was reduced by mechanical or chemical weed control (compared with untreated plots). Row width alone had no influence on weed biomass, but in the experiment with high weed pressure, the more intensive mechanical weed control used at a row width of 24 cm reduced weed biomass. Normal sowing time tended to give higher yields, but this was only statistically significant in one of the three experiments. Wide rows gave a yield decrease in the experiment with low weed pressure. The effect of weed control on yield was dependent on the weed pressure. At low weed pressure, mechanical weed control caused a yield decrease compared with untreated or herbicide treated. At intermediate weed levels there were no differences, whereas at high weed pressure, mechanical weed control and herbicide treatment caused a yield increase compared with untreated. False seedbeds were shown to contribute to a decrease in the soil seed reserve.  相似文献   
5.
B Bukun 《Weed Research》2004,44(5):404-412
Field studies were conducted over 4 years in south‐eastern Turkey in 1999–2002 to establish the critical period for weed control (CPWC). This is the period in the crop growth cycle during which weeds must be controlled to prevent unacceptable yield losses. A quantitative series of treatments of both increasing duration of weed interference and of the weed‐free period were applied. The beginning and end of CPWC were based on 5% acceptable yield loss levels which were determined by fitting logistic and Gompertz equations to relative yield data representing increasing duration of weed interference and weed‐free period, estimated as growing degree days (GDD). Total weed dry weight increased with increasing time prior to weed removal. Cotton heights were reduced by prolonged delays in weed removal in all treatments in all 4 years. The beginning of CPWC ranged from 100 to 159 GDD, and the end from 1006 to 1174 GDD, depending on the weed species present and their densities. Practical implications of this study are that herbicides (pre‐emergence residual or post‐emergence), or other weed control methods should be used in Turkey to eliminate weeds from 1–2 weeks post‐crop emergence up to 11–12 weeks. Such an approach would keep yield loss levels below 5%.  相似文献   
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7.
简述了都兰县天然草地有毒植物种类、毒性原理及毒草分布,提出防治毒草的对策,为今后进一步开展毒草防治和研究工作提供参考。  相似文献   
8.
在甜菜田内利用灰藜等藜科杂草引诱发甜菜大龟甲成虫取食产物,然后集中消灭,减轻其对甜菜的危害,是一项可行措施。  相似文献   
9.
玉米苗期杂草的计算机识别技术研究   总被引:19,自引:5,他引:14  
利用计算机视觉技术和人工神经网络技术对识别玉米苗期田间杂草进行了研究。首先利用类间方差最大自动阈值法二值化杂草图像的超绿特征,再进行连续腐蚀与膨胀,然后根据长宽比、圆度、第一不变矩3个形状特征由BP网络识别出玉米幼苗,最后利用种子填充法从阈值分割结果中擦除玉米目标,剩余的就是杂草目标。研究表明,基于BP网络的杂草识别算法对玉米幼苗与杂草的正确识别率分别为87.5%和93.0%,处理一幅640×480像素的杂草图像平均耗时约为58 ms。  相似文献   
10.
河北省冬小麦田杂草群落特征   总被引:3,自引:10,他引:3  
为了明确河北省冬小麦田杂草的群落组成和结构,采用倒置"W"取样法对河北省7个地区146块冬小麦田的杂草进行了调查和物种多样性测度。结果显示,河北省冬小麦田有61种杂草,隶属于21科53属,播娘蒿、打碗花、荠菜、麦瓶草和麦家公是河北省冬小麦田的优势杂草。保定地区麦田杂草群落的物种丰富度最大;沧州地区麦田杂草群落的Shannon-Wiener指数和Pielou指数最大;廊坊地区麦田杂草群落的Gleason指数、Shannon-Wiener指数和Pielou指数最小,优势草种比较突出。经聚类分析和主成分分析,河北省冬小麦田杂草群落分为3组:石家庄、保定、邢台和廊坊的麦田杂草群落中耐旱杂草的相对多度较高;沧州和衡水的麦田杂草群落中耐盐杂草的相对多度较高;邯郸的麦田杂草群落中喜湿杂草的相对多度较高。说明土壤的盐度和湿度是影响河北省冬小麦田杂草群落组成的主要生态因子。  相似文献   
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