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Potential of activated sludge disintegration

机译:活性污泥分解的潜力

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The disposal of sewage sludge and the agricultural use of stabilised sludge are decreasing due to more stringent regulations in Europe. An increasing fraction of sewage sludge must therefore be dewatered, dried, incinerated and the ashes disposed of in landfills. These processes are cost-intensive and also lead to the loss of valuable phosphate resources incorporated in the sludge ash. The implementation of processes that could reduce excess sludge production and recycle phosphate is therefore recommended. Disintegration of biological sludge by mechanical, thermal and physical methods could significantly reduce excess sludge production, improve the settling properties of the sludge and reduce bulking and scumming. The solubilised COD could also improve denitrification if the treated sludge is recycled to the anoxic zone. However, disintegration partly inhibits and kills nitrifiers and could therefore shorten their effective solid retention time, thus reducing the safety of the nitrification. This paper discusses the potential of disintegration on sludge reduction, the operating stability of nitrification, the improvement of denitrification and also presents an energy and cost evaluation.
机译:由于欧洲更加严格的法规,污水污泥的处置和稳定污泥在农业上的使用正在减少。因此,必须对越来越多的污水污泥进行脱水,干燥,焚烧,并将其灰渣填埋。这些过程是成本密集型的​​,并且还导致污泥灰分中有价值的磷酸盐资源的损失。因此,建议实施可减少过量污泥产生并回收磷酸盐的工艺。通过机械,热和物理方法分解生物污泥可以显着减少污泥的过量产生,改善污泥的沉降性能并减少体积和浮渣。如果将处理后的污泥循环到缺氧区,则溶解的化学需氧量还可以改善反硝化作用。但是,崩解部分抑制并杀死硝化剂,因此可能会缩短其有效的固体保留时间,从而降低硝化的安全性。本文讨论了分解对减少污泥的潜力,硝化作用的操作稳定性,反硝化作用的改善,并提出了能源和成本评估方法。

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