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首页> 外文期刊>Ultrasonics sonochemistry >Optimization of magnetic field-assisted ultrasonication for the disintegration of waste activated sludge using Box-Behnken design with response surface methodology
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Optimization of magnetic field-assisted ultrasonication for the disintegration of waste activated sludge using Box-Behnken design with response surface methodology

机译:用响应面法使用Box-Behnken设计的废物活性污泥崩解的磁场辅助超声波优化

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This study investigated for the first time the feasibility of using a magnetic field for sludge disintegration. Approximately 41.01% disintegration degree (DD) was reached after 30 min at 180 mT magnetic field intensity upon separate magnetic field treatment. Protein and polysaccharide contents significantly increased. This test was optimized using a Box-Behnken design (BBD) with response surface methodology (RSM) to fit the multiple equation of the DD. The maximum DD was 43.75% and the protein and polysaccharide contents increased to 56.71 and 119.44 mg/L, respectively, when the magnetic field strength was 119.69 mT, reaction time was 30.49 min, and pH was 9.82 in the optimization experiment. We then analyzed the effects of ultrasound alone. We are the first to combine magnetic field with ultrasound to disintegrate waste-activated sludge (WAS). The optimum effect was obtained with the application of ultrasound alone at 45 kHz frequency, with a DD of about 58.09%. By contrast, 62.62% DD was reached in combined magnetic field and ultrasound treatment. This combined test was also optimized using BBD with RSM to fit the multiple equation of DD. The maximum DD of 64.59% was achieved when the magnetic field intensity was 197.87 mT, ultrasonic frequency was 42.28 kHz, reaction time was 33.96 min, and pH was 8.90. These results were consistent with those of particle size and electron microscopy analyses. This research proved that a magnetic field can effectively disintegrate WAS and can be combined with other physical techniques such as ultrasound for optimal results. (C) 2017 Elsevier B.V. All rights reserved.
机译:本研究首次研究了使用磁场用于污泥崩解的可行性。在单独的磁场处理后30分钟后30分钟达到约41.01%的崩解度(DD)。蛋白质和多糖含量显着增加。使用响应表面方法(RSM)的Box-Behnken设计(BBD)进行了优化了该测试,以适应DD的多个方程。最大DD为43.75%,蛋白质和多糖含量分别增加到56.71和119.44 mg / L,当磁场强度为119.69mt时,反应时间为30.49分钟,优化实验中pH为9.82。然后我们单独分析超声波的影响。我们是第一个将磁场与超声波结合以崩解废物活性污泥(是)。通过仅在45kHz频率下仅施用超声波获得最佳效果,DD约为58.09%。相比之下,在组合磁场和超声处理中达到62.62%的DD。此组合测试也使用BBD进行优化,以符合DD的多个方程。当磁场强度为197.87mt时,实现了64.59%的最大DD,超声波频率为42.28kHz,反应时间为33.96分钟,pH为8.90。这些结果与粒度和电子显微镜分析的结果一致。该研究证明,磁场可以有效地崩解是并且可以与其他物理技术(例如超声)组合以获得最佳结果。 (c)2017 Elsevier B.v.保留所有权利。

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