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Nitrogen in global animal production and management options for improving nitrogen use efficiency

机译:全球动物生产和管理选择的氮气,用于提高氮气使用效率

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Animal production systems convert plant protein into animal protein. Depending on animal species, ration and management, between 5% and 45 % of the nitrogen (N) in plant protein is converted to and deposited in animal protein. The other 55%—95% is excreted via urine and feces, and can be used as nutrient source for plant (= often animal feed) production. The estimated global amount of N voided by animals ranges between 80 and 130 Tg N per year, and is as large as or larger than the global annual N fertilizer consumption. Cattle (60%), sheep (12%) and pigs (6%) have the largest share in animal manure N production. The conversion of plant N into animal N is on average more efficient in poultry and pork production than in dairy production, which is higher than in beef and sheep production. However, differences within a type of animal production system can be as large as differences between types of animal production systems, due to large effects of the genetic potential of animals, animal feed and management. The management of animals and animal feed, together with the genetic potential of the animals, are key factors to a high efficiency of conversion of plant protein into animal protein. The efficiency of the conversion of N from animal manure, following application to land, into plant protein ranges between 0 and 60%, while the estimated global mean is about 15%. The other 40%—100% is lost to the wider environment via NH_3 volatilization, denitrification, leaching and run-off in pastures or during storage and/or following application of the animal manure to land. On a global scale, only 40%— 50% of the amount of N voided is collected in barns, stables and paddocks, and only half of this amount is recycled to crop land. The N losses from animal manure collected in barns, stables and paddocks depend on the animal manure management system. Relative large losses occur in confined animal feeding operations, as these often lack the land base to utilize the N from animal manure effectively. Losses will be relatively low when all manure are collected rapidly in water-tight and covered basins, and when they are subsequently applied to the land in proper amounts and at the proper time, and using the proper method (low-emission techniques). There is opportunity for improving the N conversion in animal production systems by improving the genetic production potential of the herd, the composition of the animal feed, and the management of the animal manure. Coupling of crop and animal production systems, at least at a regional scale, is one way to high N use efficiency in the whole system. Clustering of confined animal production systems with other intensive agricultural production systems on the basis of concepts from industrial ecology with manure processing is another possible way to improve N use efficiency.
机译:动物生产系统将植物蛋白转化为动物蛋白质。根据动物物种,对植物蛋白中的5%至45%的氮(n)介于动物蛋白中沉积。其他55%-95%通过尿液和粪便排出,可用作植物(=通常是动物饲料)生产的营养源。估计的全球N的动物量为每年80%至130吨,并且与全球氮肥消耗一样大。牛(60%),绵羊(12%)和猪(6%)在动物粪便N生产中具有最大的份额。植物N进入动物N的转化率在禽畜生产中平均更高效,而不是乳制品生产,高于牛肉和羊生产。然而,由于动物的遗传潜力,动物饲料和管理的巨大影响,动物生产系统内的类型的差异可以与动物生产系统类型之间的差异一样大。动物和动物饲料的管理以及动物的遗传潜力是植物蛋白转化为动物蛋白的关键因素。在施用土地后,从动物粪便中转化为0%至60%的植物毒物的效率,估计的全球平均值约为15%。其他40%-100%通过NH_3挥发,脱硝,在牧场或储存期​​间和/或施加动物粪便到陆地的储存和/或储存和/或储存造成动物粪便。在全球范围内,仅在谷仓,马厩和围场收集40% - 50%的N空无寸型,只有该量的一半被回收到作物土地。从谷仓,马厩和围场收集的动物粪肥的N损失取决于动物粪便管理系统。相对大的损失发生在狭窄的动物饲养行动中,因为这些通常缺乏有效地利用动物粪便的土地基础。当所有肥料在水密封和盖盆地迅速收集时,损失将相对较低,并且随后将它们以适当的量和适当的时间施用于土地,并使用适当的方法(低排放技术)。通过改善群体的遗传生产潜力,动物饲料的组成以及动物粪肥的管理,有机会通过改善群体的遗传生产潜力以及动物粪便的管理来改善动物生产系统中的N转换。作物和动物生产系统的耦合,至少在区域规模,是整个系统中高N使用效率的一种方式。基于粪便处理的工业生态学的概念基于其他集约农业生产系统的狭窄的动物生产系统的聚类是提高N利用效率的另一种可能方法。

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