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Ionization for reducing particulate matter emissions from poultry houses.

机译:电离可减少禽舍中的颗粒物排放。

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摘要

We evaluated the effect of ionization in reducing particulate and gaseous emissions in broiler houses and its effect on particle size distribution. Furthermore, we evaluated the performance of the tested ionization system and its influence on bird performance. The experiment was done during two consecutive rearing cycles in a pilot-scale broiler house with four identical rooms in the Netherlands. We measured concentrations of PM10 and PM2.5, airborne microorganisms, ammonia, and odour of the incoming and outgoing air. Emissions were calculated by multiplying measured concentration difference of each pollutant by measured ventilation exchange rates. Performance of the system was evaluated through quantifying ion concentration, ozone production, and ultrafine particle concentration. Moreover, we recorded bird weight gain, consumption variables, mortality, exterior quality, and foot pad lesions. Overall measured mass emissions reductions were 36% for PM10 and 10% for PM2.5. Total mass was reduced less for PM2.5 because reduction efficiency decreased to the end of the growing period (P<0.10). This coincided with increased particulate concentrations, increased ventilation exchange rates, and dust accumulation on surfaces. Higher reduction efficiencies were observed in relation to increased particle size. Ionization did not have a significant effect on micro-organism, ammonia, or odor emissions or on bird performance. Ionization proved to be a practical and effective technique for particulate reduction, with minimal maintenance required for use in broiler houses.
机译:我们评估了电离作用对减少肉鸡舍颗粒物和气体排放的影响及其对粒度分布的影响。此外,我们评估了测试电离系统的性能及其对鸟类性能的影响。实验是在荷兰有四个相同房间的中型肉鸡舍连续两个饲养周期中进行的。我们测量了PM10和PM2.5的浓度,空气传播的微生物,氨以及进出空气的气味。通过将每种污染物的测量浓度差乘以测量的通风交换率来计算排放量。通过量化离子浓度,臭氧产生量和超细颗粒浓度来评估系统的性能。此外,我们记录了家禽体重增加,消耗变量,死亡率,外部质量和脚垫病变。总体测得的PM10排放量减少了36%,PM2.5减少了10%。对于PM2.5,总质量减少得更少,因为减少效率下降到了生长期( P <0.10)。这与颗粒物浓度增加,通风交换率增加和表面上的灰尘堆积相吻合。观察到与增加的粒度有关的更高的还原效率。电离对微生物,氨气或异味排放或禽类性能没有显着影响。事实证明,电离是一种减少微粒的实用有效的技术,并且对肉鸡舍使用时所需的维护最少。

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