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Characterizing Manure and Litter Properties and Their Carbon Dioxide Production in an Aviary Laying-Hen Housing System

机译:禽舍系统的粪便和凋落物特性及其二氧化碳生成的特征

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摘要

Contribution of carbon dioxide (CO2) production from manure or litter can be significant relative to animal metabolic CO2 production in housing systems with less frequent excretion removal. Such CO2 contribution should be accounted for in order to improve the accuracy of estimating building ventilation rate (VR) and animal bioenergetics based on CO2 mass balance. The objective of this study was to investigate the thermal conditions (temperature and relative humidity, or RH), production, moisture content (MC), and CO2 production of laying-hen manure on collection belts and on litter in an aviary house. Hens spent about 15.25 h day-1 in the aviary colony where their manure was deposited on the belts, and the remaining 8.75 h day-1 on the litter floor where manure was deposited on belt or litter. Manure belts were operated 1/3 of their length each day.Results show that temperature and RH were, respectively, 1.8 ± 9.3˚C (mean ± standard deviation) and 79 ± 14% for ambient air, 18.5 ± 1.7˚C and 76 ± 16% for air near manure on belt, and 19.8 ± 1.5˚C and 80 ± 17% for air near the litter. The overall daily manure production was 35.8 ± 1.4 g hen-1 day-1 on dry basis, with 90.9% deposited on manure belt and 9.1% on litter floor. MC of manure on belt was 66.4 ± 5.8%, which was significantly higher than 14.6 ± 2.4% for the litter. The combined moisture production from manure on belt and litter was estimated to be 22.6 g day-1 hen-1. The CO2 production from as-is manure was 0.10 ± 0.06 ml s-1 kg-1 (or 0.32 ± 0. 20 ml s-1 kg-1 on dry basis), whereas CO2 production from as-is litter was much lower, 0.02 ± 0.02 ml s-1 kg-1 (or 0.03 ± 0.02 ml s-1 kg-1 on dry basis). Without litter removal, CO2 production from manure and litter could amount to as high as 8.1% of the hen’s respiration CO2 at 60 week of age. This potentially significant contribution should be considered when estimating VR or animal bioenergetics using CO2 mass balance method in aviary housing systems.
机译:相对于住房系统中排泄物清除频率较低的情况,粪便或垃圾中二氧化碳(CO2)的产生相对于动物代谢二氧化碳的产生可能是重要的。应当考虑此类CO2贡献,以提高基于CO2质量平衡估算建筑物通风率(VR)和动物生物能学的准确性。这项研究的目的是调查鸡舍粪便在收集带和禽舍中的热条件(温度和相对湿度,或RH),生产,水分(MC)和CO2的产生。母鸡在第1天大约15.25 h的时间在将其粪便沉积在皮带上的鸟舍中,其余的8.75 h第1天在将粪便沉积在皮带或垃圾上的垫料地板上。粪肥带每天进行操作,其长度为其长度的1/3。结果表明,温度和相对湿度分别为1.8±9.3ËC(平均值±标准偏差)和79±14%(对于环境空气),18.5±1.7±C带上肥料附近的空气为76±16%,垫料附近空气为19.8±1.5ËšC和80±17%。整体上每天的粪便总产量为35.8±1.4 g hen-1 day-1,以干基计,其中90.9%沉积在粪肥带上,而9.1%沉积在垫料地板上。带上肥料的MC为66.4±5.8%,明显高于垫料的14.6±2.4%。皮带和垫料上粪便产生的总水分估计为22.6 g day-1 hen-1。从原状粪便产生的CO2为0.10±0.06 ml s-1 kg-1(或以干基为0.32±0. 20 ml s-1 kg-1),而从原产地垫料产生的CO2则很多较低,0.02±0.02 ml s-1 kg-1(或以干基计0.03±0.02 ml s-1 kg-1)。如果不清除垫料,则在60周龄时,粪便和垫料产生的CO2可能高达母鸡呼吸CO2的8.1%。在禽舍系统中使用CO2质量平衡法估算VR或动物生物能学时,应考虑这一潜在的重大贡献。

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