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Influence of Soil Tillage System on Agropyron repens and Cirsium arvense Crop Weed Growth

机译:耕作制度对白草,草皮作物杂草生长的影响

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800x600 The objectives of research are as follows: establishing the influence of soil tillage method on weed growth in corn crop; establishing the influence of soil tillage method on weed growth in soybean crop; establishing the influence of soil tillage method on weed growth in wheat crop; determining the evolution of weed growth under the influence of a soil tillage system during the three years corn-soybean-wheat crop rotation; establishing the influence of weed growth of couch grass on corn, soybean and wheat crop production; establishing the influence of weed growth of couch grass on corn, soybean and wheat crop production; establishing the influence of weed growth of creeping thistle on corn, soybean and wheat crop production. Results concerning the corn crop, considering the ploughed tillage system as control variant, all the other 3 systems (paraplow, chisel and direct sowing) gave crop yields between 4355 and 5082 kg /ha, with very significant negative differences, with limits between 984 and 1274 for paraplow and chisel, respectively 2001 kg /ha for direct sowing. The weed growth in soybean crop depending on soil tillage system is confirmed by a variation of weeds number/m 2 from 94 (in variant worked with plough) to 157 (in direct sowing variant). Based on the registered data, we can estimate an increase by 30.85% of weed growth in paraplow variant, respectively by 138.29% in chisel variant, compared to variant plough worked soil. The 31 - 38% increase in the unconventional variants paraplow and chisel is significant and imposes a change of weed control strategy, due to the pronounced early start of weed growth which will have an influence on soybean crop production. Soil tillage system applied on wheat crop influence on weed growth emphasize a different degree in weed growth depending on tillage system; thus, compared to witness variant with plough, where 85 plants/mp were identified, in chisel and paraplow working systems the number of weed plants range between 104 - 105, meaning an increase with 22 - 24%. In the case of direct sowing, the weed growth degree is the highest, reaching 141 plants/mp, meaning an increase with 65.88%. Normal 0 false false false EN-US X-NONE X-NONE MicrosoftInternetExplorer4 /* Style Definitions */ table.MsoNormalTable {mso-style-name:"Table Normal"; mso-tstyle-rowband-size:0; mso-tstyle-colband-size:0; mso-style-noshow:yes; mso-style-priority:99; mso-style-parent:""; mso-padding-alt:0cm 5.4pt 0cm 5.4pt; mso-para-margin:0cm; mso-para-margin-bottom:.0001pt; mso-pagination:widow-orphan; font-size:10.0pt; font-family:"Times New Roman","serif";}
机译:800x600的研究目标如下:建立土壤耕作方法对玉米作物杂草生长的影响;建立土壤耕作方法对大豆作物杂草生长的影响;建立土壤耕作方法对小麦作物杂草生长的影响;在三年的玉米-大豆-小麦作物轮作中,确定在土壤耕作系统的影响下杂草生长的演变;建立草皮杂草生长对玉米,大豆和小麦作物生产的影响;建立草皮杂草生长对玉米,大豆和小麦作物生产的影响;建立creep草杂草生长对玉米,大豆和小麦作物生产的影响。关于玉米作物的结果,将耕作系统作为控制变量,其他所有3种系统(除草机,凿子和直接播种)的作物产量在4355至5082千克/公顷之间,非常显着的负差,极限在984至900千克/公顷之间。犁刀和凿子分别为1274 kg / ha,直接播种为2001 kg / ha。大豆农作物的杂草生长取决于土壤耕作制度,其方法是通过将杂草数/ m 2从94(在耕作下耕作)更改为157(在直接播种下进行耕作)进行确认。根据已注册的数据,与耕作耕作土壤相比,我们可以估算,犁式耕作土壤杂草生长量增加了30.85%,凿式耕作土壤杂草生长量则增加了138.29%。由于杂草生长的明显提前开始,这将对大豆作物的生产产生影响,非常规变型的除草机和凿子增加了31%至38%,这是很重要的,并且改变了杂草控制策略。耕作制度对小麦作物对杂草生长的影响强调了不同耕作制度对杂草生长的影响程度。因此,与带有耕作的见证人变种相比,在杂草和伞式工作系统中,鉴定出的杂草数量为85株/ mp,杂草的数量在104-105之间,增加了22-24%。在直接播种的情况下,杂草的生长程度最高,达到141株/ mp,增幅为65.88%。正常0否否否EN-US X-NONE X-NONE MicrosoftInternetExplorer4 / *样式定义* / table.MsoNormalTable {mso-style-name:“ Table Normal”; mso-tstyle-rowband-size:0; mso-tstyle-colband-size:0; mso-style-noshow:是; mso-style-priority:99; mso-style-parent:“”; mso-padding-alt:0cm 5.4pt 0cm 5.4pt; mso-para-margin:0cm; mso-para-margin-bottom:.0001pt; mso分页:寡妇孤儿;字体大小:10.0pt;字体家族:“ Times New Roman”,“ serif”;}

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