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首页> 外文期刊>Plant, Soil and Environment >Effects of tillage on soil physical properties and root growth of maize in loam and clay in central China.
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Effects of tillage on soil physical properties and root growth of maize in loam and clay in central China.

机译:耕作对华中壤土和黏土中玉米土壤物理特性和根系生长的影响。

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摘要

Subsoil compaction can result in unfavourable soil physical conditions and hinder the root growth of maize. The effects of deep tillage and conventional tillage on soil physical properties and root growth of maize were studied during 2010-2011 at two sites (loam at Hebi and clay at Luohe) in central China. The results showed that soil penetration resistance, bulk density, water content and root length density were significantly affected by tillage, soil depth and year. Deep tillage had lower penetration resistance and lower soil bulk density, but higher soil water content than conventional tillage across years and depths. Averaged over the whole soil profile, deep tillage not only significantly decreased penetration resistance and soil bulk density, but significantly increased soil water content and root length density on loam, while deep tillage only significantly increased the root length density on clay. We conclude that deep tillage on the loam is more suitable for the root growth of summer maize.
机译:下层土壤压实会导致不利的土壤物理条件并阻碍玉米的根系生长。在中国中部两个地点(鹤壁壤土和and河黏土),研究了2010年至2011年深耕和常规耕作对玉米土壤物理特性和根系生长的影响。结果表明,耕作,土壤深度和年限对土壤渗透阻力,容重,含水量和根长密度有显着影响。与传统耕作相比,深耕在多年不同深度上具有较低的抗穿透性和较低的土壤容重,但土壤含水量较高。在整个土壤剖面上取平均值,深耕不仅显着降低了壤土的抗渗透性和土壤容重,而且显着提高了土壤水分含量和壤土根长密度,而深耕仅显着增加了黏土根长密度。我们得出的结论是,在壤土上进行深耕更适合于夏玉米的根系生长。

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