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Systems for Eliminating Pathogens from Exhaust Air of Animal Houses

机译:从动物房屋排出的排出气体的系统

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Recent outbreaks of highly infectious viral diseases like swine fever and avian influenza in The Netherlands have shown that despite extensive bio-security measures aiming at minimizing physical contacts between farms, disease spread could not be halted. Dust in exhaust air from swine and chicken houses may provide a favorable environment in which these viruses and other pathogenic microorganisms can survive and be transported over long distances to other farms. In a field study and in an experimental pilot-scale system, the effects of air scrubbers (bio-scrubber and acid scrubber) were tested. The field test showed higher bacterial counts in the outlet air than in the inlet air of the bio-scrubber (increase from 6.1 x 104 to 24.4 x 104 cfu/m3). Anacid scrubber with sulfuric acid reduced bacteria emissions from 27 x 104 to 8.4 x 104 cfu/m3. In the pilot-scale cleaning system, different disinfectants were tested, including hydrogen peroxide, ozone, and peracetic acid. Peracetic acid gave by far thebest results. It reduced bacteria and virus emissions to below detectable levels and reduced ammonia emissions by 96%. We conclude that an acid scrubber with sulfuric acid is very useful to reduce ammonia and dust emissions to the atmosphere; however, it cannot prevent the emission of pathogens. Peracetic acid reduces all these emissions, but is too costly to be used continuously. Therefore, an interesting option to prevent disease spread is to replace or supplement sulfuric acid in existing scrubberswith peracetic acid in times of high risk of disease outbreak.
机译:荷兰猪瘟和禽流感爆发的最近爆发了,尽管广泛的生物安全措施,但旨在最大限度地减少农场之间的物理接触,疾病蔓延不能停止。来自猪和鸡舍的废气中的灰尘可以提供有利的环境,其中这些病毒和其他致病微生物可以存活并在远距离到其他农场运输。在实地研究和实验试验规模系统中,测试了空气洗涤器(生物洗涤器和酸洗)的影响。现场试验显示出出口空气中的细菌计数比生物洗涤器的入口空气(从6.1×10 4增加到24.4×10 4 CFU / m 3)。具有硫酸的嗜酸盐,硫酸降低了27×104至8.4×10 4 Cfu / m3的细菌排放。在试验规模清洁系统中,测试了不同的消毒剂,包括过氧化氢,臭氧和过乙酸。过乙酸越来越远的结果。它将细菌和病毒排放减少到低于可检测水平,并减少氨排放量为96%。我们得出结论,用硫酸的酸性洗涤器非常有用,可使氨和灰尘排放到大气中;但是,它无法阻止发射病原体。过乙酸减少了所有这些排放,但持续使用的所有这些排放量。因此,预防疾病扩散的有趣选择是在疾病爆发的高风险中替代诸如过乙酸的现有洗涤酸中的硫酸。

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