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首页> 外文期刊>Journal of Agricultural Engineering Research >Litter composition and ammonia emission in aviary houses for laying hens: part II, modelling the evaporation of water
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Litter composition and ammonia emission in aviary houses for laying hens: part II, modelling the evaporation of water

机译:蛋鸡舍舍舍的垃圾成分和氨气排放:第二部分,水蒸发模型

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摘要

Experimental research was carried out with laying hens of 47-60 weeks of age to validate a physical model of the evaporation rate of water from litter in a tiered wire floor aviary system. Variation of the evaporation rate of water from the litter was achieved by varying air velocities above the litter between 0.07 and 0.28 m/s, by naturally varying outdoor climatic weather conditions and by removing manure on the belts once a week, once per day, or twice per day. An evaporation model was developed and used to predict the water content of the litter on a certain day. The water content increased with 126.8 g/kg litter (S.F. 19.4) due to the water input by the faeces dropped in the litter by the hens. The evaporation rate of water from the litter waspositively influenced by the air velocity (v{sub}(air){sup}0.287) and the difference between the water vapour pressure in the litter and the water vapour pressure of the air above the litter. The water activity of the litter was estimated to be 0.86 (S.F. 0.07) and decreased the saturated water vapour pressure in the litter. The water vapour pressure of the indoor air highly depended (79%) on the water vapour pressure of the outside air. It was predicted that in this way drying conditions above the litterworsen from April to October under Dutch circumstances, but that this can be compensated by an increase of the litter temperature and higher air velocities. The emission of ammonia was modelled with the following influencing parameters: manure removalinterval (0.76%/h), indoor temperature (8.1%/℃), water content of the litter (0.32%/g/kg) and air velocities above the litter (103%/m/s). The mean emission in the case of daily removal of the manure on the belts amounted to 2.85 mg/h/hen.
机译:对47至60周龄的蛋鸡进行了实验研究,以验证层状铁地板鸟舍系统中垃圾水分蒸发速率的物理模型。垫料上水的蒸发速率的变化是通过在垫料上方的空气流速在0.07至0.28 m / s之间变化,自然变化的室外气候条件以及每周一次,每天一次或每天一次清除皮带上的肥料来实现的。每天两次。开发了蒸发模型并将其用于预测某天垃圾的含水量。水分增加了126.8 g / kg垫料(S.F. 19.4),这是由于母鸡将粪便投入垫料中而输入了水分。来自垫料的水的蒸发速率正好受空气速度(v {sub}(air){sup} 0.287)以及垫料中的水蒸气压力与垫料上方的空气的水蒸气压力之差的影响。垃圾的水活度估计为0.86(S.F. 0.07),并降低了垃圾中的饱和水蒸气压。室内空气的水蒸气压力高度依赖于外部空气的水蒸气压力(79%)。据预测,在荷兰的情况下,4月至10月在立陶宛上空的干燥条件,但可以通过提高立枯温度和提高风速来弥补。用以下影响参数模拟氨的排放量:除草间隔(0.76%/ h),室内温度(8.1%/℃),垫料中的水分含量(0.32%/ g / kg)和垫料上方的空气流速( 103%/ m / s)。每天清除皮带上的粪便的平均排放量为2.85 mg / h / hen。

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