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Accumulated Organic Matter Degradation and the Function of Porous Media during Enhanced Sewer Self-purification

机译:增强有机质降解和多孔介质在增强下水道自纯化期间的功能

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摘要

This study aims to clarify the function of different porous media layers during accumulated organic matter degradation with enhanced sewer self-purification by porous sponge media. To do so, intermittent flow and low continuous flow were applied to channels containing sponge media while maintaining similar volumetric flow rates per channel. Accumulated organic matter, in the form of margarine, was placed underneath the sponge media. Aerobic activity related to organic matter degradation was monitored for 32 days followed by test sponge oxygen consumption and biomass density evaluation. Porous sponge media of different pore cell radii and thicknesses were tested under the described conditions. Findings for intermittent flow showed that although the top layers did not have direct contact to accumulated organic matter, they contributed 33–70% to the total aerobic activity related to organic matter degradation. A lower contribution of 12–42% was found for the top layers for channels subjected to low continuous flow. For all channels, higher biomass density was found for the bottom layer directly in contact with accumulated organic matter. Findings show that while the bottom layer may have higher contribution to organic matter degradation, the upper media layer contributes significantly to aerobic activity during enhanced sewer self-purification.
机译:本研究旨在阐明在累积有机物降解过程中阐明不同多孔介质层的功能,通过多孔海绵介质通过增强的下水道自纯化。为此,将间歇流和低连续流量施加到包含海绵介质的通道,同时保持每个通道类似的体积流速。以人造黄油形式累积有机物被置于海绵介质下方。监测与有机物质降解相关的有氧活性32天,然后进行试验海绵氧消耗和生物质密度评估。在所述条件下测试不同孔细胞半径和厚度的多孔海绵介质。间歇性流动的发现表明,尽管顶层没有直接接触积累的有机物质,但它们会导致33-70%与有机质降解相关的总食。为低于连续流动的通道的顶层发现12-42%的较低贡献。对于所有通道,对底层直接与积聚有机物质接触的底层找到更高的生物量密度。结果表明,虽然底层对有机物质降解具有更高的贡献,但是上介质层在增强的下水道自纯化期间有可能显着贡献到有氧活性。

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