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Ozonation of endogenous residue and active biomass from a synthetic activated sludge

机译:来自合成活性污泥的内源性残留物和活性生物质的臭氧化

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Coupling the activated sludge and the ozonation processes is an efficient, although expensive, solution for sludge reduction. A better knowledge of the mechanisms involved in the degradation of various sludge fractions by ozone is needed to optimize the coupled process. The objectives of this study were to determine the biodegradability of ozone-solubilized endogenous residue, the action of ozone on the active biomass and the solubilization yield of these two main sludge fractions. Batch tests were conducted with slug input of ozone stock solution into fresh or aerobically digested synthetic sludge. Biodegradability of the solubilized endogenous residue was increased by ozonation by up to 0.27 g BOD_5/g COD_i. Ozone caused biomass lysis, as opposed to an increase in maintenance needs, as shown by a correlation between the decrease in microbial activity and viability. Lysis caused by ozonation was associated with a solubilization of 20% of the lyzed cell COD mass. Solubilization yields were of 9.6 and of 1.9 to 3.6 g COD/g O_3 for fresh and aerobically digested sludge, respectively. Design of sludge ozonation processes should account for the variability between the solubilization yield and biodegradability of the various sludge fractions.
机译:活性污泥和臭氧化过程的结合是一种有效的解决方案,尽管价格昂贵,但可以减少污泥。需要更好地了解臭氧降解各种污泥馏分所涉及的机制,以优化耦合过程。这项研究的目的是确定臭氧增溶的内源性残渣的生物降解性,臭氧对活性生物量的作用以及这两个主要污泥馏分的增溶产率。批处理测试是将臭氧储备溶液塞入新鲜或需氧消化的合成污泥中进行的。通过臭氧处理,可溶解的内源性残留物的生物降解能力提高了0.27 g BOD_5 / g COD_i。臭氧引起的生物质裂解,而不是维护需求的增加,正如微生物活性降低与生存能力之间的相关性所表明的那样。臭氧化引起的裂解与裂解细胞COD质量的20%溶解有关。新鲜和需氧消化污泥的增溶产率分别为9.6和COD / g O_3的1.9至3.6 g。污泥臭氧化过程的设计应考虑到各种污泥馏分的增溶产率和生物降解性之间的差异。

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