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Combined free nitrous acid and hydrogen peroxide pre-treatment of waste activated sludge enhances methane production via organic molecule breakdown

机译:结合的游离亚硝酸和过氧化氢预处理废活性污泥可通过有机分子分解提高甲烷产量

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摘要

This study presents a novel pre-treatment strategy using combined free nitrous acid (FNA i.e. HNO2) and hydrogen peroxide (H2O2) to enhance methane production from WAS, with the mechanisms investigated bio-molecularly. WAS from a full-scale plant was treated with FNA alone (1.54 mg N/L), H2O2 alone (10–80 mg/g TS), and their combinations followed by biochemical methane potential tests. Combined FNA and H2O2 pre-treatment substantially enhanced methane potential of WAS by 59–83%, compared to 13–23% and 56% with H2O2 pre-treatment alone and FNA pre-treatment alone respectively. Model-based analysis indicated the increased methane potential was mainly associated with up to 163% increase in rapidly biodegradable fraction with combined pre-treatment. The molecular weight distribution and chemical structure analyses revealed the breakdown of soluble macromolecules with the combined pre-treatment caused by the deamination and oxidation of the typical functional groups in proteins, polysaccharides and phosphodiesters. These changes likely improved the biodegradability of WAS.
机译:这项研究提出了一种新颖的预处理策略,该方法结合了游离亚硝酸(FNA,即HNO2)和过氧化氢(H2O2)来提高WAS的甲烷产量,并对生物分子机理进行了研究。大规模工厂的WAS单独用FNA(1.54μmgN / L),H2O2(10-80μmg/ g TS)以及它们的组合进行处理,然后进行生化甲烷潜力测试。联合使用FNA和H2O2预处理可将WAS的甲烷潜力大幅提高59-83%,而单独使用H2O2和单独使用FNA进行预处理的甲烷潜力分别为13-23%和56%。基于模型的分析表明,结合联合预处理,甲烷潜力的提高主要与快速可生物降解馏分的增加高达163%有关。分子量分布和化学结构分析表明,可溶性大分子在蛋白质,多糖和磷酸二酯中典型官能团的脱氨基和氧化作用下,由于联合预处理而分解。这些变化可能会提高WAS的生物降解性。

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