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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Assessment of the influence of media particle size on the biofiltration of odorous exhaust ventilation air from a piggery facility
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Assessment of the influence of media particle size on the biofiltration of odorous exhaust ventilation air from a piggery facility

机译:评估介质粒径对猪场恶臭废气通风生物过滤的影响

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摘要

Two pilot scale biofiltration systems were constructed and installed at the University College Dublin Research Farm, Lyons Estate. Experimental units consisting of two pens in a 12 pen pig house were sealed off from other pens. Air from each pen was extracted and treated separately in two biofiltration systems. Wood chips larger than 20 mm were selected as the medium for biofiltration system 1, whereas chips of between 10 and 16 mm were used in biofiltration system 2. The moisture content of the media was maintained at 69 +/- 4% (w.w.b.) using a load cell method. The volumetric loading rates ranged from 769 to 1847 m(3) [gas] m(-3) [medium] h(-1) over a 63-day experimental period. Both biofilters reduced odour between 88% and 95%. Ammonia removal efficiencies ranged from 64% to 92% and 69% to 93% for biofiltration systems I and 2, respectively. Sulphur-containing compounds were reduced between 9-66% and -147-51% across biofiltration systems I and 2. The pH of the biofilters' leachate remained between 6 and 8. Pressure drop for biofilter 2 was 16 Pa greater than that of biofilter I at the maximum volumetric loading rate of 1847 m(3) [gas] m(-1) [medium] h(-1). It is recommended that a wood chip media particle size greater than 20 mm be used for large scale operation of a biofiltration system on intensive pig production facilities to reduce the development of anaerobic zones and to minimize pressure drop on the system fans. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 82]
机译:在里昂庄园的都柏林大学研究农场建造并安装了两个中试规模的生物过滤系统。在一支12支猪舍中,由两支钢笔组成的实验单元与其他钢笔隔离。从每个笔中抽取空气,并分别在两个生物过滤系统中进行处理。选择大于20毫米的木屑作为生物过滤系统1的介质,而将10毫米至16毫米之间的木屑用于生物过滤系统2。使用以下方法将介质的水分含量保持在69 +/- 4%(wwb)称重传感器方法。在63天的实验期内,体积加载率的范围为769至​​1847 m(3)[气体] m(-3)[中等] h(-1)。两种生物滤池的气味均在88%至95%之间。生物过滤系统I和2的除氨效率分别为64%至92%和69%至93%。在生物过滤系统I和2中,含硫化合物减少了9-66%和-147-51%。生物过滤器的渗滤液的pH值保持在6和8之间。生物过滤器2的压降比生物过滤器大16 Pa。我在1847 m(3)[气体] m(-1)[中] h(-1)的最大体积加载速率下。建议在集约化猪生产设施上的生物过滤系统的大规模操作中使用大于20 mm的木屑介质,以减少厌氧区的产生并最大程度地降低系统风扇上的压降。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:82]

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