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Biological hydrogen production by anaerobic digestion of food waste and sewage sludge treated using various pretreatment technologies

机译:厌氧消化餐厨垃圾和污水污泥的生物制氢,采用各种预处理技术处理

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The purpose of this study was to enhance the efficiency of anaerobic co-digestion with sewage sludge using pretreatment technologies and food waste. We studied the effects of various pretreatment methods (thermal, chemical, ultrasonic, and their combination) on hydrogen production and the characteristics of volatile fatty acids (VFAs) using sewage sludge alone and a mixture of sewage sludge and food waste. The pretreatment combination of alkalization and ultrasonication performed best, effecting a high solubilization rate and high hydrogen production (13.8 mL H2/g VSSconsumed). At a food waste:pretreated sewage sludge ratio of 2:1 in the mixture, the peak hydrogen production value was 5.0 L H2/L/d. As the production of hydrogen increased, propionate levels fell but butyrate concentrations rose gradually.
机译:这项研究的目的是使用预处理技术和食物垃圾来提高厌氧消化与污泥共消化的效率。我们研究了各种预处理方法(热,化学,超声波及其组合)对制氢的影响以及仅使用污水污泥以及污水污泥和食物垃圾的混合物中挥发性脂肪酸(VFA)的特性。碱化和超声处理的预处理效果最佳,可实现高溶解度和高产氢量(消耗13.8 mL H2 / g VSS)。在混合物中食物垃圾:预处理的污水污泥比为2:1的情况下,氢的峰值产值为5.0 L H2 / L / d。随着氢气产量的增加,丙酸酯含量下降,而丁酸酯含量逐渐上升。

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