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Bioscrubber treatment of exhaust air from intensive pig production: Case study in northern Germany at mild climate condition

机译:集约化养猪生产的废气的生物洗涤器处理:以德国北部温和气候条件为例

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摘要

Treatment by field‐scale bioscrubber of exhaust air, including ammonia (NH ) and the greenhouse gases methane (CH ), nitrous oxide (N O), and carbon dioxide (CO ), from 13 intensive pig production houses located in northern Germany were investigated in 2013 and 2015. NH removal efficiencies varied between 35 and 100% with an overall average value of 79% under the NH inlet fluctuations from 34 to 755 g d m in both 2013 and 2015. Results of the electron microscopic analyses demonstrated that the bacteria sp. and methanotrophs were the dominant NH and CH oxidizers, respectively. However, overall average removal efficiencies of CH was approximately zero, which means CH is hard to remove in bioscrubbers under normal operation. The pH of recirculation water in the bioscrubber varied from 6.1 to 8.1, and the bioscrubbers with low pH values (<7.0) had high NH removal efficiencies (>79%). Electrical conductivity was commonly used to diagnose the bioscrubbers’ performance; in the present study, electrical conductivity presented a significant linear relationship with dissolved inorganic nitrogen, which indicates the performance stability of the 13 selected bioscrubbers.
机译:通过现场规模的生物洗涤器处理了德国北部13个集约化猪场的废气,包括氨(NH)和温室气体甲烷(CH),一氧化二氮(NO)和二氧化碳(CO)。 2013年和2015年。在2013年和2015年的NH入口波动范围从34 gdm至755 gdm的情况下,NH3的去除效率在35%至100%之间,总体平均值为79%。甲烷和甲烷营养菌分别是主要的NH和CH氧化剂。但是,CH的总体平均去除效率约为零,这意味着在正常操作下,很难在生物洗涤塔中去除CH。生物洗涤器中再循环水的pH在6.1到8.1之间变化,pH值较低(<7.0)的生物洗涤器具有较高的NH去除效率(> 79%)。电导率通常用于诊断生物洗涤塔的性能。在本研究中,电导率与溶解的无机氮呈显着的线性关系,这表明选择的13种生物洗涤塔的性能稳定。

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