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Competition in tree row agroforestry systems. 2. Distribution, dynamics and uptake of soil inorganic N

机译:树木行农林业系统的竞争。 2.土壤无机氮的分布,动态和吸收

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The effect of tree row species on the distribution of soil inorganic N and the biomass growth and N uptake of trees and crops was investigated beneath a Grevillea robustaA. Cunn. ex R. Br. (grevillea) tree row and Senna spectabilisDC. (senna) hedgerow grown with Zea mays L. (maize) and a sole maize crop, during one cropping season. The hypothesis was that a tree with a large nutrient uptake would have a greater competitive effect upon coexisting plants than a tree that takes up less and internally cycles nutrients. The field study was conducted on a kaolinitic Oxisol in the sub-humid highlands of western Kenya. Soil nitrate and ammonium were measured to 300 cm depth and 525 cm distance from the tree rows, before and after maize cropping. Ammonium concentrations were small and did not change significantly during the cropping season. There was > 8 mg nitrate kg−1 in the upper 60 cm and at 90–180 cm depth at the start of the season, except within 300 cm of the senna hedgerow where concentrations were smaller. During the season, nitrate in the grevillea-maize system only decreased in the upper 60 cm, whereas nitrate decreased at almost every depth and distance from the senna hedgerow. Inorganic N (nitrate plus ammonium) decreased by 94 kg ha−1 in the senna-maize system and 33 kg ha−1 in the grevillea-maize system.
机译:在GrevillearobustaA下研究了树种对土壤无机氮分布以及树木和农作物生物量生长及氮吸收的影响。坎恩前河(grevillea)树行和番泻树spectabilisDC。在一个种植季节,用玉米(Zea mays L。)(玉米)和唯一的玉米作物种植的(番泻树)树篱。假设是,养分吸收大的树对共存植物的竞争作用要比养分少且内部循环养分的树大。在肯尼亚西部半湿润的高地上的高岭土Oxisol进行了现场研究。在种植玉米之前和之后,测得土壤硝酸盐和铵盐的深度为300 cm,距树木行525 cm。铵浓度很小,在作物季节没有明显变化。在季节开始时,上部60 cm处和深度90-180 cm处有> 8 mg硝酸盐kg-1 ,除了番泻树篱的300 cm内浓度较小。在这个季节中,grevillea-玉米系统中的硝酸盐仅在上部60 cm处减少,而硝酸盐在距番泻树篱几乎所有深度和距离处都减少。在番泻叶玉米系统中,无机氮(硝酸盐和铵态氮)降低了94 kg ha-1 ,而在格雷维尔玉米系统中降低了33 kg ha-1

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