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Sludge pre-treatment with pulsed electric fields

机译:用脉冲电场进行污泥预处理

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The anaerobic stabilization process depends - among other things - on the bio-availability of organic carbon. Through pre-treatment of the sludge which leads to the destruction of micro-organisms and to the setting-free of cell content substances (disintegration), the carbon can be microbially converted better and faster. Moreover, effects on the digestion are likely. However, only little experience is available in sludge treatment with pulsed electric fields. Laboratory-scale digestion tests have been run to analyse the influence of pulsed electric fields on the properties of sludge, anaerobic degradation, sludge water reload and foaming of digesters. The results will be compared with those of other disintegration methods (high pressure homogeniser, thermal treatment). The effect of pre-treatment on the sludge is shown by the COD release. Degrees of disintegration have been achieved up to 20%. The specific energy input was high. The energy consumption has been decreased by initial improvements (pre-heating to 55°C). The filament bacteria were partially destroyed. The foam reduction in the digesters was marginal. The anaerobic degradation performance has been improved in every case. The degradation rate of organic matter increased about 9%. Due to the increase of degradation, there is a higher reload of the sludge-water with COD and nitrogen compounds.
机译:厌氧稳定过程取决于 - 除其他事项外 - 有机碳的生物利用度。通过前处理污泥的这导致微生物的破坏和对细胞的物质含量自由设定-(崩解),碳可以是微生物转化更好更快。此外,在消化的影响是可能的。然而,只有很少的经验是在污泥处理与脉冲电场提供。实验室规模的试验消化已运行来分析的污泥,厌氧降解,污泥水重载和沼气池的泡沫的性质脉冲电场的影响。结果将与那些其它崩解的方法(高压均化器,热处理)进行比较。在污泥预处理的效果由COD所示释放。崩解度已经达到了20%。具体的能量输入高。能量消耗已经下降了初始改进(预加热至55℃)。灯丝细菌部分破坏。在沼气池的泡沫减少是微不足道的。厌氧降解性能在任何情况下得到改善。的有机物的降解速率提高了约9%。由于降解的增加,有污泥水与COD和氮化合物的一个更高的重载。

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