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Comparative performance of anaerobic filters at mesophilic and thermophilic temperatures

机译:中温和高温温度下厌氧滤池的比较性能

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摘要

During Phase I anaerobic filters were operated at mesophilic and thermophilic temperatures with hydraulic retention times (HRTs) of 12, 24, and 48 hours at chemical oxygen demand (COD) loads ranging from 2.75 g/L/day to 49.5 g/L/day (172 to 3090 lb/1000 cu ft/day). The purpose of the research was to determine the effect of HRT and organic (COD) loading as independent variables;Results indicated that the mesophilic systems were more sensitive to HRT than were the thermophilic systems with significant decreases in performance of the mesophilic systems with decreases in HRT. The thermophilic reactors showed virtually no reduction in performance with decreased HRT. The increase in organic load produced a reduction in removal efficiency at all HRTs for the mesophilic reactors. The effect of organic load was more significant at lower HRTs for the mesophilic reactors;The thermophilic units, on the other hand, displayed a reduction in COD removal only at the high COD loadings at an HRT of 48 hours. The increase in loadings showed little effect at the lower HRTs (24 and 12 hr) when the systems were able to flush inhibitory substances from the reactor. Overall, the thermophilic systems were able to treat the waste at more than twice the COD loading of the mesophilic systems;Phase II of the research involved initial studies on a two-temperature treatment system using a thermophilic anaerobic filter followed by a mesophilic anaerobic filter. The results showed improved removal efficiencies over the individual thermophilic or mesophilic systems operated at the same HRTs and organic loadings. Although further research is needed, these preliminary results indicate that two-temperature systems may be preferable to single temperature systems in some applications.
机译:在第一阶段中,厌氧滤池在中温和高温下运行,在2.75 g / L / day至49.5 g / L / day的化学需氧量(COD)负荷下,水力停留时间(HRT)为12、24和48小时(172至3090磅/ 1000立方英尺/天)。该研究的目的是确定HRT和有机物(COD)负载作为自变量的影响;结果表明,嗜温系统对HRT的敏感性高于嗜温系统,其中嗜温系统的性能显着降低,而嗜温性随着HRT。嗜热反应器在降低HRT的情况下几乎没有表现出性能下降。有机负荷的增加导致中温反应器在所有HRT的去除效率降低。对于中温反应堆,在较低的HRT下,有机负荷的影响更为显着;另一方面,仅在48小时的HRT下,高COD负荷下,嗜热单元的COD去除量却减少了。当系统能够从反应器中冲洗抑制性物质时,负荷的增加在较低的HRT(24和12小时)上几乎没有影响。总体而言,嗜热系统能够以中温系统COD负荷的两倍以上处理废物;研究的第二阶段包括对先采用嗜热厌氧滤池再进行中温厌氧滤池的两温处理系统进行研究。结果表明,与在相同HRT和有机负荷下运行的各个嗜热或中温系统相比,去除效率得到了提高。尽管需要进一步研究,但这些初步结果表明,在某些应用中,双温系统可能比单温系统更可取。

著录项

  • 作者

    Harris, William Lee;

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  • 年度 1992
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