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Improving the sludge disintegration efficiency of sonication by combining with alkalization and thermal pre-treatment methods

机译:结合碱化和热预处理方法提高超声处理污泥的分解效率

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摘要

One of the most serious problems encountered in biological wastewater treatment processes is the production of waste activated sludge (WAS). Sonication, which is an energy-intensive process, is the most powerful sludge pre-treatment method. Due to lack of information about the combined pre-treatment methods of sonication, the combined pre-treatment methods were investigated and it was aimed to improve the disintegration efficiency of sonication by combining sonication with alkalization and thermal pre-treatment methods in this study. The process performances were evaluated based on the quantities of increases in soluble chemical oxygen demand (COD), protein and carbohydrate. The releases of soluble COD, carbohydrate and protein by the combined methods were higher than those by sonication, alkalization and thermal pre-treatment alone. Degrees of sludge disintegration in various options of sonication were in the following descending order: sono-alkalization > sonothermal pre-treatment > sonication. Therefore, it was determined that combining sonication with alkalization significantly improved the sludge disintegration and decreased the required energy to reach the same yield by sonication. In addition, effects on sludge settleability and dewaterability and kinetic mathematical modelling of pre-treatment performances of these methods were investigated. It was proven that the proposed model accurately predicted the efficiencies of ultrasonic pretreatment methods.
机译:生物废水处理过程中遇到的最严重的问题之一是废物活性污泥(WAS)的生产。超声处理是一种耗能的过程,是最强大的污泥预处理方法。由于缺乏有关超声联合预处理方法的信息,因此对联合预处理方法进行了研究,旨在通过超声联合碱化和热预处理方法来提高超声的崩解效率。根据可溶性化学需氧量(COD),蛋白质和碳水化合物的增加量来评估工艺性能。联合使用的方法释放的可溶性COD,碳水化合物和蛋白质的释放量高于单独使用超声,碱化和热预处理的释放量。各种超声处理选项中的污泥分解度按以下降序排列:声碱化>声热预处理>声处理。因此,可以确定,超声处理与碱化处理相结合可显着改善污泥的分解,并降低通过超声处理达到相同产量所需的能量。此外,还研究了这些方法对污泥沉降性和脱水性的影响以及预处理性能的动力学数学模型。事实证明,所提出的模型能够准确预测超声波预处理方法的效率。

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