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首页> 外文期刊>Field Crops Research >Amelioration of dense sodic subsoil using organic amendments increases wheat yield more than using gypsum in a high rainfall zone of southern Australia
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Amelioration of dense sodic subsoil using organic amendments increases wheat yield more than using gypsum in a high rainfall zone of southern Australia

机译:在澳大利亚南部的高雨量地区,使用有机改良剂改善稠密的钠盐土比使用石膏改善了小麦的产量

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摘要

Subsoil constraints are major limiting factors in crop production in many soils of southern Australia. A field study examined effects of deep incorporation of organic and inorganic amendments in 30-40cm on soil properties, plant growth and grain yield of wheat (Triticum aestivum var. Ambrook) on a Sodosol with dense sodic subsoil with or without lucerne history in a high rainfall region (long-term average annual rainfall 576mm) of Victoria. Amendments were applied at a rate of 10-20thap#. Deep ripping alone and deep ripping with gypsum did not significantly affect grain yields. In comparison, application of organic materials doubled biomass production and increased grain yield by 1.7 times. Organic amendment-treated plots produced 60% more grains per area than the untreated control. The crop extracted over 50mm extra water from below 40cm soil in organic amendment-treated plots than the untreated control. Nitrogen uptake was almost doubled (403kghap#) in the organic amendment-treated plots than the untreated control (165kghap#). The improved yield with amendments was related to an increase in plant available water in the hostile subsoil, and prolonged greenness of leaves and supply of nitrogen and other nutrients.
机译:在澳大利亚南部许多土壤中,土壤限制是作物生产的主要限制因素。一项田间研究调查了在高密度的有或没有卢塞恩历史的苏打溶胶下,在30-40cm深度掺入有机和无机改良剂对土壤特性,植物生长和小麦(Triticum aestivum var。Ambrook)谷物产量的影响。维多利亚州的降雨区域(长期平均年降雨量576mm)。修改的速率为10-20thap#。单独进行深层撕裂和用石膏进行深层撕裂不会明显影响谷物的产量。相比之下,有机材料的应用使生物量产量翻了一番,谷物产量提高了1.7倍。经有机改良剂处理的地块比未处理的对照单位面积增加了60%的谷粒。与未经处理的对照相比,在有机改良剂处理过的土地上,农作物从40cm以下的土壤中提取了50mm的额外水分。有机改良剂处理地块的氮吸收量(403kghap#)几乎是未处理对照(165kghap#)的两倍。改良后的单产提高与敌对土壤中植物有效水的增加,叶子的绿色持续时间延长以及氮素和其他养分的供应有关。

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