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Improvement of anaerobic digestion of sewage mixed sludge using free nitrous acid and Fenton pre-treatment

机译:用游离亚硝酸和芬顿预处理改善污水混合污泥的厌氧消化

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摘要

Abstract Background Recently, it has been indicated that free nitrous acid (FNA) and Fenton pre-treatment of waste activated sludge can enhance methane production in anaerobic digestion of waste activated sludge. In addition, it has been revealed that the substances used in these pre-treatments are both eco-friendly and economically attractive because not only are they produced in anaerobic digestion, but they are also low priced. Since primary sludge and waste activated sludge are mixed prior to anaerobic digestion in the majority of wastewater treatment plants, this study aims to assess the influence of combined FNA and Fenton on the anaerobic digestion of mixed sludge. Results According to this study’s results, methane generation from anaerobic digestion of mixed sludge was enhanced when using FNA and Fenton pre-treatment, affirming the effectiveness of the individual and combined pre-treatments in anaerobic digestion of mixed sludge. The enhanced methane production was significant in combined pre-treatments (up to 72%), compared with FNA and Fenton pre-treatment alone (25% and 27%, respectively). This corroborates the positive synergistic effect of the combined pre-treatments on methane production. The enhanced methane can be attributed to augmented soluble fractions of organic matter in addition to increased readily biodegradable organic matter, caused by the pre-treatments. Additionally, the amount of chemical oxygen demand (COD) was assessed during anaerobic digestion, and it was revealed that COD decreased considerably when the pre-treatment strategies were combined. Conclusions This study reveals that the pre-treatments are potentially applicable to full-scale wastewater treatment plants because a mixture of primary sludge and waste activated sludge was used for the pre-treatments. Additionally, combined FNA and Fenton pre-treatments prove more effective in enhancing methane production and organic removal than these pre-treatments alone. The enhanced methane production is important for two reasons: a higher amount of renewable energy could be generated from the enhanced methane production and the COD of digested sludge reduces in such a way that facilitates application of the sludge to agricultural lands and reduces sludge transport costs.
机译:的废物抽象背景最近,已经表明,游离亚硝酸(FNA)和芬顿预处理的活性污泥可以提高甲烷产量废活性污泥的厌氧消化。此外,据透露,在这些预处理中使用的物质都是环保和经济上的吸引力,因为他们不仅是在厌氧消化产生的,但他们也便宜。由于初级污泥和废活性污泥是在多数废水处理厂的厌氧消化之前混合,本研究的目的是评估在混合污泥的厌氧消化组合FNA和芬顿的影响。结果根据该研究的结果,从混合污泥的厌氧消化产生甲烷使用FNA时得到增强和芬顿预处理,确认在混合污泥的厌氧消化的个体和组合的预治疗的有效性。增强的甲烷产量为组合的预处理(高达72%)显著,单独用FNA和芬顿预处理(25%和27%,分别地)进行比较。这证实了的对甲烷产生组合的预治疗的阳性协同作用。增强的甲烷可以归因于的除有机物增强可溶性部分增加的易于生物降解的有机物,所造成的预处理。此外,化学需氧量(COD)的量厌氧消化过程中被评估,并且它显露COD显着降低当预治疗策略合并。结论本研究显示,因为和初级污泥的混合物废物被用于预处理活性污泥预治疗是潜在地可应用于全规模的废水处理厂。另外,合并的FNA和芬顿预处理证明在提高甲烷生产和有机物的去除比单独这些预处理更有效。增强的甲烷产量是两个重要的原因:可从增强的甲烷生产中产生的可再生能源的较高量的和消化污泥的COD以促进污泥农田应用并减少污泥运输成本这样的方式减少。

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