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Furrows, press wheels and wetting agents improve crop emergence and yieldon water repellent soils

机译:犁沟,压榨轮和润湿剂可改善憎水土壤的出苗率和产量

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摘要

The rates of emergence of wheat and lupin were measured in 13 field experiments on water repellent sands. Conventional sowing was compared with furrow sowing either with or without the use of a press wheel and several rates of banded wetting agent. Measurements included, severity of water repellence, plant emergence, rainfall, soil temperature at sowing and, at one site, the area of wet soil after sowing. All ameliorative techniques improved emergence, with responses being greatest when seeds were sown into dry soil. Compared with conventional sowing, furrow sowing increased wheat and lupin emergence by an overall average of 16 and 41%, respectively. The benefits were greater at the drier sites. Increases in emergence due to the use of a press wheel were sometimes small, although they always occurred (1-19%). It was visually observed that press wheel use gave more uniform seeding depth, reduced clods and ensured more accurate placement of banded wetting agent. Banded wetting agent consistently improved wheat and lupin emergence, particularly where early rains were light and press wheels were used. The wetting agent increased the cross-sectional area of wet topsoil (0-10 cm) which was positively related with increased wheat emergence (R-2 = 0.91). At 0.5 L ha(-1) of banded wetting agent, the soil along the furrow was four times wetter than without wetting agent. Wetting agent at 0.5 and 1 L ha(-1) (with press wheels) increased wheat emergence by 6 and 11% and lupin emergence by 13 and 11%, respectively. The high rates of banded wetting agent gave highest plant densities. Grain yield was only measured at three sites. Furrow sowing did not increase grain yield, however, press wheels use with furrow sowing increased grain yield by 30%. Banded wetting agent increased grain yield and they were positively correlated. The highest rate increased grain yields by a further 9% above press wheels and furrow sowing.
机译:小麦和羽扇豆的出苗率是在13个防水砂田野试验中测得的。将常规播种与在有或没有使用压轮以及几种带状润湿剂的情况下进行的沟播进行了比较。测量包括疏水性的严重性,植物出苗,降雨,播种时的土壤温度,以及在某一地点播种后的湿土壤面积。所有改良技术均改善了出苗率,将种子播种到干燥的土壤中时,其响应最大。与常规播种相比,犁沟播种使小麦和羽扇豆的出苗率分别增加了16%和41%。较干燥的地方收益更大。尽管经常发生压轮,但由于压轮的出现而出现的增加很小(1-19%)。肉眼观察到,使用压轮可提供更均匀的播种深度,减少了凝块,并确保了带状润湿剂的更准确放置。带状的润湿剂持续改善小麦和羽扇豆的出苗,特别是在早雨少且使用压榨轮的地方。湿润剂增加了湿表土的横截面积(0-10厘米),与小麦出苗率增加呈正相关(R-2 = 0.91)。在带状润湿剂为0.5 L ha(-1)时,犁沟土壤的润湿性是没有润湿剂的四倍。 0.5和1 L ha(-1)的润湿剂(带压轮)分别使小麦出苗增加了6%和11%,羽扇豆出苗增加了13%和11%。带状润湿剂的高比率赋予了最高的植物密度。仅在三个位置测量了谷物产量。犁沟播种并没有增加谷物的产量,但是,在犁沟播种的同时使用压榨轮可以使谷物产量增加30%。带状的润湿剂增加了谷物的产量,并且呈正相关。最高收率比压榨轮和犁沟播种使谷物单产进一步提高了9%。

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