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生物滤塔处理含氨气体的长期运行研究
引用本文:殷峻,许文锋. 生物滤塔处理含氨气体的长期运行研究[J]. 环境科学学报, 2011, 31(3): 636-641
作者姓名:殷峻  许文锋
作者单位:1. 浙江工商大学环境科学与工程学院,杭州,310012
2. 杭州市环境保护科学研究院,杭州,310014
基金项目:污染控制与资源化研究国家重点实验室开放基金(No.PCRRF06006)
摘    要:针对含氨恶臭气体的处理,选用堆肥和污泥颗粒作为填料,研究了生物滤塔长期运行(210d)处理氨的效果.结果表明,运行初期在低负荷(NH3浓度<110 mg·m-3)条件下,生物滤塔对氨的去除能力均保持在较高水平,氨去除效率达到99%以上;随着负荷的不断增加,到实验后期,当进气浓度大于190 mg·m-3时,氨去除效率下降...

关 键 词:生物滤塔    生物降解  渗透压
收稿时间:2010-06-30
修稿时间:2010-08-22

Effect of long-term operation of biofilters on biological removal of ammonia
YIN Jun and XU Wenfeng. Effect of long-term operation of biofilters on biological removal of ammonia[J]. Acta Scientiae Circumstantiae, 2011, 31(3): 636-641
Authors:YIN Jun and XU Wenfeng
Affiliation:School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310012 and Hangzhou Academy of Environmental Science, Hangzhou 310014
Abstract:Long-term operation of biofilters for biological removal of ammonia was investigated using compost (BG1) and sludge (BG2) as packing materials. At the beginning of the experiment, during the low ammonia load period, the elimination capacities of both biofilters were high and the ammonia removal efficiencies could reach more than 99%. With the increase of ammonia load, at the end of the experiment when the inlet concentration of ammonia was higher than 190 mg·m-3, the removal efficiencies of both biofilters decreased to 50%. The maximum elimination capacities of BG1 and BG2 were 288 and 243 g (NH3)·m-3·d-1, respectively. Most of the NH3 removal was performed in the bottom layers of the reactors. Ammonia was mainly oxidized to nitrate. After long time operation and high load of ammonia, deactivation occurred in both biofilters. There are two possible reasons: First, with the increase of the inlet concentration of ammonia, large amounts of ammonium were adsorbed and accumulated in the packed bed, thus causing inhibition of nitrifying bacteria due to free ammonia accumulation. Second, the accumulation of ammonium and its products caused high salt concentrations, and the increased osmotic pressure due to the high salt concentration inhibited the activity of nitrifying bacteria.
Keywords:biofilter   ammonia   biodegradation   osmotic pressure
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