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Enhancement of sludge anaerobic biodegradability by combined microwave-H2O2 pretreatment in acidic conditions

机译:微波-H2O2组合预处理在酸性条件下提高污泥厌氧生物降解性

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The aim of this study was to increase the sludge disintegration and reduce the cost of microwave (MW) pretreatment. Thermodynamic analysis of MW hydrolysis revealed the best fit with a first-order kinetic model at a specific energy of 18,600 kJ/kg total solids (TS). Combining H2O2 with MW resulted in a significant increment in solubilization from 30 to 50 % at 18,600 kJ/kg TS. The pH of H2O2-assisted MW-pretreated sludge (MW + H2O2) was in the alkaline range (pH 9-10), and it made the sludge unfavorable for subsequent anaerobic digestion and inhibits methane production. In order to nullify the alkaline effect caused by the MW + H2O2 combination, the addition of acid was considered for pH adjustment. H2O2-assisted MW-pretreated sludge in acidic conditions (MW + H2O2 + acid) showed a maximum methane production of 323 mL/g volatile solids (VS) than others during anaerobic biodegradability. A cost analysis of this study reveals that MW + H2O2 + acid was the most economical method with a net profit of 59.90 a,not sign/t of sludge.
机译:这项研究的目的是增加污泥的分解并降低微波预处理的成本。 MW水解的热力学分析显示,在一级能量为18,600 kJ / kg总固体(TS)的情况下,最适合一级动力学模型。在18,600 kJ / kg TS下,H2O2与MW的结合导致溶解度从30%显着增加到50%。 H2O2辅助的MW预处理污泥的pH(MW + H2O2)在碱性范围内(pH 9-10),这使污泥不利于后续的厌氧消化并抑制了甲烷的产生。为了消除由MW + H2O2组合引起的碱性效应,考虑添加酸来调节pH。在厌氧生物降解过程中,在酸性条件下(MW + H2O2 +酸),H2O2辅助的MW预处理污泥显示最大甲烷生成量为323 mL / g挥发性固体(VS)。这项研究的成本分析表明,MW + H2O2 +酸是最经济的方法,净利润为59.90 a,而不是污泥的征兆/吨。

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