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Comparison of Direct vs. Indirect Ventilation Rate Determination for Manure Belt Laying Hen Houses

机译:粪肥带铺设鸡舍直接和间接通风率测定的比较

摘要

Direct measurement of ventilation rate in livestock housing can be a formidable task due to uncontrollable variations in fan and system performance as caused by factors such as operation static pressure, fan belt condition, and dust accumulation on shutters and blades. Indirect, CO2-balance method offers a potentially viable, more flexible alternative to estimating ventilation rate. The reliability of CO2 balance method depends on the validity of relationship between CO2 production and metabolic rate of the animals and the knowledge of CO2 generation by the housing environment. Metabolic rates of modern laying hens have recently been quantified in intensive large-scale laboratory measurements. However, performance of the indirect method remains to be evaluated under field production conditions. This paper compares ventilation rates of a commercial laying hen house with manure belt (manure removed daily) obtained from direct measurement based on in-situ fan performance and runtime vs. indirect determination based on CO2 balance. The results indicate that indirect determination based on CO2 balance was well in agreement with that of direct measurement. Application of the CO2-balance method to evaluate building ventilation rate can improve the affordability and versatility of poultry emission studies.
机译:由于诸如操作静压,风扇皮带状况以及百叶窗和刀片上的灰尘等因素引起的风扇和系统性能的不可控制变化,直接测量牲畜舍的通风率可能是一项艰巨的任务。间接的二氧化碳平衡法可以提供一种潜在的可行的,更灵活的替代方法来估算通气率。 CO2平衡方法的可靠性取决于动物体内CO2产生与代谢率之间关系的有效性以及居住环境对CO2产生的了解。现代蛋鸡的代谢率最近在密集的大规模实验室测量中得到了量化。但是,间接方法的性能仍需在现场生产条件下进行评估。本文比较了通过基于现场风机性能和运行时间的直接测量与基于CO2平衡的间接测定获得的带有粪肥带(每天去除粪肥)的商业蛋鸡舍的通风速率。结果表明,基于CO2平衡的间接测定与直接测定非常吻合。应用二氧化碳平衡法评估建筑物的通风速率可以提高家禽排放研究的可负担性和多功能性。

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