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Enhancement of bio-gas production and xenobiotics degradation during anaerobic sludge digestion by ozone treated feed sludge

机译:臭氧处理的进料污泥在厌氧污泥消化过程中提高了沼气的产生和异物降解

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Elimination of large amounts of sludge produced during biological treatment is a pressing environmental issue both in this country and elsewhere. For example EU Landfill Directive 99/31/EC [41] prohibits land-filling of both liquid and untreated wastes with a target to reduce the current amount of bio-degradable wastes, including sewage sludge, 50% and 65% by the years 2013 and 2020, respectively. Anaerobic digestion has now proven to be the most energy efficient way of destroying and stabilizing waste activated sludge and the methane by-product is a form of fuel. It is demonstrated in this research that anaerobic digestion of waste activated sludge, when coupled with mild ozone treatment (e.g., 1.33 mg O3/g-VSS), practically doubles the volume of biogas produced as compared to conventional digesters, while producing no waste sludge for disposal. Ozone treatment of the feed sludge also affects enhanced removal of endocrine disrupting compounds, EDCs, sorbed onto the sludge.
机译:在该国和其他地方,消除生物处理过程中产生的大量污泥是一个紧迫的环境问题。例如,欧盟垃圾填埋场指令99/31 / EC [41]禁止对液体和未经处理的垃圾进行填埋,目标是到2013年将现有的可生物降解废物(包括污水污泥)的数量减少50%和65%和2020年。现已证明,厌氧消化是销毁和稳定废物活性污泥的最节能方式,甲烷副产物是一种燃料。这项研究表明,废水活化污泥的厌氧消化,再加上温和的臭氧处理(例如1.33 mg O3 / g-VSS),与传统的消化池相比,几乎可以将产生的沼气量增加一倍,而不会产生废物污泥进行处置。臭氧对进料污泥的处理还影响吸附在污泥上的内分泌干扰化合物(EDC)的去除效果。

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