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利用新型防堵塞生物滤池系统减少食物垃圾堆肥设施中的氨和挥发性有机化合物。

Reduction of ammonia and volatile organic compounds from food waste-composting facilities using a novel anti-clogging biofilter system.

机构信息

Department of Chemical Engineering, Soongsil University, Seoul 156-743, Republic of Korea.

出版信息

Bioresour Technol. 2011 Apr;102(7):4654-60. doi: 10.1016/j.biortech.2011.01.021. Epub 2011 Jan 14.

Abstract

The performance of a pilot-scale anti-clogging biofilter system (ABS) was evaluated over a period of 125days for treating ammonia and volatile organic compounds emitted from a full-scale food waste-composting facility. The pilot-scale ABS was designed to intermittently and automatically remove excess biomass using an agitator. When the pressure drop in the polyurethane filter bed was increased to a set point (50 mm H(2)O m(-1)), due to excess biomass acclimation, the agitator automatically worked by the differential pressure switch, without biofilter shutdown. A high removal efficiency (97-99%) was stably maintained for the 125 days after an acclimation period of 1 week, even thought the inlet gas concentrations fluctuated from 0.16 to 0.55 g m(-3). Due the intermittent automatic agitation of the filter bed, the biomass concentration and pressure drop in the biofilter were maintained within the ranges of 1.1-2.0 g-DCW g PU(-1) and below 50 mm H(2)O m(-1), respectively.

摘要

在 125 天的时间里,评估了一个中试规模抗堵塞生物滤池系统(ABS)处理来自一个大型食品废物堆肥设施排放的氨和挥发性有机化合物的性能。该中试规模 ABS 旨在通过搅拌器间歇式和自动去除过量生物量。当由于过量生物量驯化而导致聚氨酯过滤床的压降增加到设定点(50 毫米 H2O m(-1))时,搅拌器会通过压差开关自动工作,而无需关闭生物滤池。在适应期为 1 周后,经过 125 天的稳定运行,即使入口气体浓度从 0.16 到 0.55 g m(-3)波动,仍能保持高去除效率(97-99%)。由于过滤床的间歇式自动搅拌,生物滤池中的生物量浓度和压降分别保持在 1.1-2.0 g-DCW g PU(-1)和低于 50 毫米 H2O m(-1)的范围内。

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