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肉鸡活动、生长速度和垫料对二氧化碳平衡的影响,用于确定肉鸡生产中的通风流量。

The influence of broiler activity, growth rate, and litter on carbon dioxide balances for the determination of ventilation flow rates in broiler production.

机构信息

Institute of Animal Science and Technology, Universitat Politècnica de Valencia, Valencia, Spain.

出版信息

Poult Sci. 2011 Nov;90(11):2449-58. doi: 10.3382/ps.2011-01580.

Abstract

Carbon dioxide balances are useful in determining ventilation rates in livestock buildings. These balances need an accurate estimation of the CO(2) produced by animals and their litter to determine the ventilation flows. To estimate the daily variation in ventilation flow, it is necessary to precisely know the daily variation pattern of CO(2) production, which mainly depends on animal activity. The objective of this study was to explore the applicability of CO(2) balances for determining ventilation flows in broiler buildings. More specifically, this work aimed to quantify the amount of CO(2) produced by the litter, as well as the amount of CO(2) produced by the broilers, as a function of productive parameters, and to analyze the influence of broiler activity on CO(2) emissions. Gas concentrations and ventilation flows were simultaneously measured in 3 trials, with 1 under experimental conditions and the other 2 in a commercial broiler farm. In the experimental assay, broiler activity was also determined. At the end of the experimental trial, on the day after the removal of the broilers, the litter accounted for 20% of the total CO(2) produced, and the broilers produced 3.71 L/h of CO(2) per kg of metabolic weight. On the commercial farm, CO(2) production was the same for the 2 cycles (2.60 L/h per kg of metabolic weight, P > 0.05). However, substantial differences were found between CO(2) and broiler activity patterns after changes in light status. A regression model was used to explain these differences (R(2) = 0.52). Carbon dioxide increased with bird activity, being on average 3.02 L/h per kg of metabolic weight for inactive birds and 4.73 L/h per kg of metabolic weight when bird activity was highest. Overall, CO(2) balances are robust tools for determining the daily average ventilation flows in broiler farms. These balances could also be applied at more frequent intervals, but in this case, particular care is necessary after light status changes because of discrepancy between animal activity and CO(2) production.

摘要

二氧化碳平衡在确定牲畜建筑物的通风率方面很有用。这些平衡需要对动物及其垫料产生的 CO2 进行准确估计,以确定通风流量。为了估计通风流量的日变化,有必要精确了解 CO2 产生的日变化模式,这主要取决于动物的活动。本研究的目的是探讨 CO2 平衡在确定肉鸡建筑物通风流量方面的适用性。具体而言,这项工作旨在量化垫料产生的 CO2 量以及肉鸡产生的 CO2 量作为生产参数的函数,并分析肉鸡活动对 CO2 排放的影响。在 3 次试验中同时测量了气体浓度和通风流量,其中 1 次在实验条件下进行,另外 2 次在商业肉鸡养殖场进行。在实验测定中,还确定了肉鸡的活动情况。在实验试验结束后的第二天,即肉鸡被移除后的那天,垫料占总 CO2 产生量的 20%,肉鸡每代谢体重公斤产生 3.71 升/小时的 CO2。在商业农场,2 个周期的 CO2 产生量相同(每代谢体重公斤 2.60 升/小时,P>0.05)。然而,在光照状态变化后,CO2 和肉鸡活动模式之间存在显著差异。使用回归模型解释了这些差异(R2=0.52)。CO2 随鸟类活动增加,活动不活跃的鸟类平均为每代谢体重公斤 3.02 升/小时,活动最高时为每代谢体重公斤 4.73 升/小时。总体而言,CO2 平衡是确定肉鸡养殖场日平均通风流量的可靠工具。这些平衡也可以更频繁地应用,但在这种情况下,由于动物活动和 CO2 产生之间存在差异,需要特别注意光照状态变化后。

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