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Biofilter response to biomass reactivation for VOC treatment

机译:生物滤池对VOC处理中生物质再活化的响应

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摘要

[Abstract] This research has undertaken a comparative study on using a fresh activated sludge or a refrigerated/ reactivated sludge as active biomass source for biofiltration purposes. A sludge sample was initially selected based on the ratio between volatile solid content and total solid content before and after refrigeration at 6 oC for 90 days. The degradation rate of the activated sample for three addition doses of toluene was established before and after refrigeration. The same procedure was also carried out for ethylbenzene and p-xylene after refrigeration/reactivation. Surprisingly, the degradation rate for toluene was higher after refrigeration and the results were very similar for an addition of 2 and 8 µL. Subsequently, one biofilter was inoculated with the activated sample and another with the reactivated sample, and both were fed with toluene ranging from 2.6 to 26.2 g toluene m-3 h-1. Concerning the elimination capacity of both biofilters, no relevant differences were found. It was concluded that the active biomass degrading toluene was not affected by refrigeration, in spite of the fact that the SV/ST ratio decreased after the storage period. The elimination capacity of the other two biofilters (ethylbenzene and p-xylene) was highly influenced by the gas flow rate. 1 INTRODUCTION Environmental regulations for pollution control are frequently enacted before «suitable» (affordable, effective and environmentally friendly) technologies have been fully developed. Amongst biotechnologies, biofiltration is a seemingly simple system whose effectiveness relies on the optimization of several operating parameters and the selection of a suitable packing material and degrading biomass
机译:[摘要]这项研究进行了比较研究,该研究使用新鲜的活性污泥或冷藏/再生的污泥作为生物滤目的活性生物质源。首先根据在6 oC冷藏90天前后挥发性固体含量和总固体含量之间的比率选择污泥样品。在冷藏之前和之后,确定了三个添加剂量甲苯后活化样品的降解速率。冷冻/再活化后,对乙苯和对二甲苯也进行相同的步骤。出人意料的是,冷藏后甲苯的降解率更高,添加2和8 µL的结果非常相似。随后,一个生物过滤器接种了活化的样品,另一个生物过滤器接种了再活化的样品,并向它们都注入了2.6至26.2 g甲苯m-3 h-1的甲苯。关于两种生物滤池的清除能力,未发现相关差异。结论是,尽管在储存期后SV / ST比降低,但活性生物质降解甲苯不受冷藏的影响。其他两种生物滤池(乙苯和对二甲苯)的清除能力受气体流速的影响很大。 1引言在“合适的”(价格合理,有效且环保的)技术得到全面开发之前,经常会制定环境污染控制法规。在生物技术中,生物过滤是一个看似简单的系统,其有效性取决于几个操作参数的优化以及合适包装材料的选择和生物质的降解。

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