首页> 外文期刊>Brazilian journal of chemical engineering >SONO-OXIDATIVE PRE-TREATMENT OF WASTE ACTIVATED SLUDGE BEFORE ANAEROBIC BIODEGRADATION
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SONO-OXIDATIVE PRE-TREATMENT OF WASTE ACTIVATED SLUDGE BEFORE ANAEROBIC BIODEGRADATION

机译:在厌氧生物降解前的Sono-oxiatative对废物活性污泥的预处理

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摘要

The effects of sonication, potassium ferrate (K2FeO4) oxidation and their simultaneous combination (called "sono-oxidative pre-treatment") on chemical properties and anaerobic digestion of waste activated sludge (WAS) were investigated and compared comprehensively. Based on chemical parameters, the optimum operating conditions were found to be 0.3 g K2FeO4/g total solids (TS) dosage for 2-h individual K2FeO4 oxidation, 0.50 W/mL ultrasonic power density for 10-min individual sonication and, lastly, the combination of 2.5-min sonication at 0.75 W/mL ultrasonic power density with 2-h chemical oxidation at 0.3 g K2FeO4/g TS dosage for sono-oxidative pre-treatment. The disintegration efficiencies of these methods under the optimized conditions were in the following descending order: 37.8% for sono-oxidative pretreatment 26.3% for sonication 13.1% for K2FeO4 oxidation. The influences of these methods on anaerobic biodegradability were tested with the biochemical methane potential assay. It was seen that the cumulative methane production increased by 9.2% in the K2FeO4 oxidation reactor, 15.8% in the sonicated reactor and 18.6% in the reactor with sono-oxidative pre-treatment, compared to the control (untreated) reactor.
机译:对化学性质和废物活性污泥(IS)的化学性质和厌氧消化进行了超声处理,钾叔丙酯(K2FeO4)氧化及其同时组合(称为“超声氧化预处理”)的影响并进行了比较。基于化学参数,发现最佳操作条件为2-H单独的K 2 FeO 4氧化的0.3g K 2 FeO 4 / g总固体(TS)剂量,0.50W / mL超声波功率密度10分钟,最后, 2.5分辨超声波功率密度的2.5分子超声波功率密度的组合在0.3g K2FeO 4 / g Ts的0.3g化学氧化,用于超声氧化预处理。这些方法在优化条件下的崩解效率按以下下降顺序:37.8%用于超声氧化预处理&超声处理26.3%; K2FeO4氧化的13.1%。用生化甲烷电位测定测试这些方法对厌氧生物降解性的影响。有人认为,与对照(未处理的)反应器相比,累积甲烷产量在K 2 FeO 4氧化反应器中增加了9.2%,在超声反应器中,在超声反应器中的15.8%,反应器中的反应器中的18.6%。

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