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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Combined waste resources as compound fertiliser to spring cereals
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Combined waste resources as compound fertiliser to spring cereals

机译:结合废料作为春季谷物的复合肥料

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摘要

There is increasing awareness of the need for efficient nutrient recycling in food production. Therefore, a pot experiment was conducted to contribute to the development of alternative compound fertilisers with balanced nutrient ratios for cereal production. We compared the (1) fertilisation effects and (2) effects on soil chemistry of four organic nitrogen (N)-and phosphorous (P)-rich waste-based products (WBPs), applied with or without potassium (K)-rich bottom wood ash (BWA). WBPs and BWA were applied at two rates (80 kg N ha(-1) + 35 kg K ha(-1) and 160 kg N ha(-1) + 70 kg K ha(-1)) to spring barley (Hordeum vulgare) in year one and spring wheat (Triticum aestivum) in year two, and the effects were compared with those of commercial mineral and organic compound fertilisers. The K fertilisation effects of BWA were masked by the soil's ability to provide plant-available K during both years of the experiment. Plant-available N was, therefore, the growth-limiting factor for barley in year one, when there were no differences in grain yield between treatments with and without K-rich BWA. The mineral fertiliser equivalent of WBPs was 64-118% for N uptake in barley grain, but can be expected to be lower under field conditions. During year two, wheat yield was determined by the plant availability of P and N. Meat-rich meat and bone meal caused P deficiency at the lower application rate as a result of alkaline soil conditions, whereas the P in BWA appeared to be almost as plant-available as soluble mineral P
机译:人们越来越认识到食品生产中需要有效的营养循环利用。因此,进行了盆栽试验,以帮助开发替代均衡肥料,平衡谷物生产中的养分比例。我们比较了(4)富含或不含钾(K)的底部施肥的四种富含有机氮(N)和磷(P)的废物基产品(WBP)的(1)施肥效应和(2)对土壤化学的效应。木灰(BWA)。将WBP和BWA以两种比率(80 kg N ha(-1)+ 35 kg K ha(-1)和160 kg N ha(-1)+ 70 kg K ha(-1))施用到大麦(大麦)第一年和第二年的春小麦(Triticum aestivum),并将其效果与商业矿物和有机复合肥料的效果进行了比较。在实验的两年中,土壤提供植物有效钾的能力掩盖了BWA的钾肥效应。因此,当有和没有富钾BWA的处理之间的谷物产量没有差异时,可利用的N是第一年大麦的生长限制因子。大麦籽粒中氮吸收的WBPs的矿物肥料当量为64-118%,但在田间条件下可以预期会降低。在第二年,小麦的产量取决于磷和氮的植物有效性。由于碱性土壤条件的影响,富含肉类的肉和骨粉在较低的施用量下导致磷缺乏,而BWA中的磷几乎与植物中可溶的矿物质P

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