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Odour and ammonia removal from pig house exhaust air using a biotrickling filter

机译:使用生物滴滤器去除猪舍废气中的异味和氨气

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Odour from agricultural activities, such as the spreading of manure and the housing of animals, is increasingly being considered a nuisance in densely populated countries like the Netherlands. The objective of this research was to study the odour removal from pig house exhaust air by a biotrickling filter that had been implemented for ammonia abatement. At a regular pig production farm, the performance of a running full-scale biotrickling filter was studied for 72 days. Ammonia and odour removal efficiency were on average 79% and 49% respectively. Ammonia removal appeared to be based on an unintended accumulation of ammonium and nitrite in the system, instead of on production and discharge of nitrate. The odour removal efficiency showed a large variation that, for a major part, about 80%, could be attributed to actual changes in the performance of the biotrickling filter. These changes were probably caused by variations in the composition of the air that were not completely reflected by the olfactometrically measured odour concentration, as the many different components that make up the odour each have different removal characteristics. It seemed that the biotrickling filter was operated below its maximum absolute odour removal capacity [OUE/(m(3) filter)/s], which means that the absolute odour removal will probably rise at increasing load. It was, however, not possible to distinguish between the influence of either the odour load or the odour concentration on the odour removal, because of a positive correlation between the odour concentration and the air flow. To increase the odour removal efficiency (%), the design of the filter probably needs to be optimised for both well and poorly water-soluble odour components.
机译:在人口稠密的国家(如荷兰),越来越多的人认为农业活动产生的气味(如粪便传播和动物住房)令人讨厌。这项研究的目的是研究已通过生物滴滤器去除猪舍废气中的异味,该滤池已实现氨消除。在常规的养猪场中,对运行中的全尺寸生物滴滤池的性能进行了72天的研究。氨和异味去除效率分别平均为79%和49%。氨的去除似乎是基于系统中铵和亚硝酸盐的意外积累,而不是基于硝酸盐的产生和排放。除臭效率显示出很大的差异,在很大程度上,大约80%可以归因于生物滴滤器性能的实际变化。这些变化可能是由于空气成分的变化所引起的,而这种变化并未通过嗅觉测量的气味浓度完全反映出来,因为构成气味的许多不同成分均具有不同的去除特性。似乎生物滴滤池的运行低于其最大绝对除臭能力[OUE /(m(3)过滤器)/ s],这意味着随着负载的增加,绝对除臭可能会增加。然而,由于气味浓度和空气流量之间存在正相关关系,因此无法区分气味负荷或气味浓度对除味的影响。为了提高除臭效率(%),可能需要针对水溶性好和难溶于水的气味成分优化过滤器的设计。

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