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APPLYING PRECISION FEEDING TECHNIQUES IN GROWING- FINISHING PIG OPERATIONS

机译:应用精密喂养技术在生长整理猪操作中

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The high cost of feed ingredients, the use of non-renewable sources of phosphate and the dramatic increase in the environmental load resulting from the excessive land application of manure are major challenges for the livestock industry. Precision feeding is proposed as an essential approach to improve the utilization of dietary nitrogen, phosphorus and other nutrients and thus reduce feeding costs and nutrient excretion. Precision feeding requires accurate knowledge of the nutritional value of feedstuffs and animal nutrient requirements, the formulation of diets in accordance with environmental constraints, and the gradual adjustment of the dietary nutrient supply to match the requirements of the animals. After the nutritional potential of feed ingredients has been precisely determined and has been improved by the addition of enzymes (e.g. phytases) or feed treatments, the addition of environmental objectives to the traditional feed formulation algorithms can promote the sustainability of the swine industry by reducing nutrient excretion in swine operations with small increases in feeding costs. Increasing the number of feeding phases can also contribute to significant reductions in nutrient excretion and feeding costs. However, the use of precision feeding techniques in which pigs are fed individually with daily tailored diets can further improve the efficiency with which pigs utilize dietary nutrients. Precision feeding involves the use of feeding techniques that allow the provision of the right amount of feed with the right composition at the right time to each pig in the herd. An automatic and intelligent precision feeder using precision feeding techniques is under development to improve swine production systems sustainability. Using this approach, it has been estimated that feeding costs can be reduced by more than 4.6%, and nitrogen and phosphorus excretion can both be reduced by more than 38%. Moreover, the integration of precision feeding techniques into large-group production systemscan provide real-time off-farm monitoring of feed and animals for optimal slaughter and production strategies, thus improving the environmental sustainability of pork production, animal well-being and meat-product quality. Current and future research will lead to the development of innovative mathematical models that accurately estimate daily individual nutrient requirements, the proper calibration of these models in commercial conditions, and the evaluation of the practical feeding and nutritional improvements provided by this feeding approach as well as its economic and environmental feasibility.
机译:饲料成分的高成本,使用不可再生的磷来源和粪便过度土地应用的环境负荷剧烈增加是畜牧业的主要挑战。提出精密饲料作为改善利用膳食氮,磷和其他营养素的基本方法,从而降低饲养成本和营养排泄。精密喂养需要准确了解饲料的营养价值和动物养分要求,根据环境限制的饮食的配方,以及逐步调整膳食营养供应,以匹配动物的要求。在精确确定饲料成分的营养潜力并通过添加酶(例如植酸酶)或进料处理而得到改善之后,将环境目标添加到传统的饲料配方算法中,可以通过减少营养素来促进猪工业的可持续性猪业务排泄,饲养成本小幅增加。增加进料阶段的数量也有助于营养排泄和饲养成本的显着降低。然而,使用精密饲养技术,其中猪用每日量定制饮食单独进料,可以进一步提高猪利用膳食营养素的效率。精密喂养涉及使用饲养技术,其允许在合适的时间向牛群中的每只猪提供正确的饲料。采用精密馈电技术的自动和智能精密馈线正在开发中,以改善猪生产系统可持续性。使用这种方法,据估计,饲料成本可以减少超过4.6%,氮和磷排泄均可减少38%以上。此外,精密喂养技术的整合到大型生产系统中,提供了对饲料和动物的实时脱机,以获得最佳的屠宰和生产策略,从而提高猪肉生产的环境可持续性,动物福祉和肉类产品质量。当前和未来的研究将导致开发创新的数学模型,可准确估计每日个人营养需求,适当校准这些模型在商业条件下,以及通过这种饲养方法提供的实际饲养和营养改进的评价以及其经济和环境可行性。

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