首页> 外文期刊>The Science of the Total Environment >Thermal hydrolysis of sewage sludge partially removes organic micropollutants but does not enhance their anaerobic biotransformation
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Thermal hydrolysis of sewage sludge partially removes organic micropollutants but does not enhance their anaerobic biotransformation

机译:污水污泥的热水解可部分去除有机微污染物,但不会增强其厌氧生物转化

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Pretreatment technologies prior to anaerobic digestion (AD) have been developed with the aim of enhancing bio-gas productivity and reducing the presence of pathogens in digested sludge. Among them, thermal hydrolysis (TH) appears as the most promising one. In wastewater treatment plants (WWTPs) sludge is the end point of many organic micropollutants (OMPs), which was proved to lead to important environmental and human risks since sludge is commonly used in agriculture. The objective of this work is to determine the fate OMPs in TH and subsequent AD. Sewage sludge was pretreated in a TH pilot plant at 170 degrees C for 20 min. Afterwards, two anaerobic digesters with a working volume of 14 L fed with fresh and pretreated sludge were operated in parallel in mesophilic conditions. TH proved to be an effective technology to partially or totally remove the dissolved fraction of OMPs as well as the fraction sorbed into those suspended solids that are solubilised after this pretreatment. However, it did not affect the OMPs sorbed concentration into solids that are not solubilised. Globally, the OMPs removal efficiency during TH appears to be linked to the solids solubilisation during this process. Afterwards, the OMPs biotransformation efficiency in AD of fresh and pretreated sludge was determined. Noticeable differences between the microbiome of both reactors was determined, but the anaerobic biotransformation was not substantially different for most of the OMPs. However, it affected musk fragrances, which presented considerably lower biotransformation efficiency in the reactor fed with pretreated sludge. Therefore, TH was proved effective in partially removing OMPs but not in enhancing their bioavailability and subsequent anaerobic biotransformation. (C) 2019 Elsevier B.V. All rights reserved.
机译:已经开发出厌氧消化(AD)之前的预处理技术,目的是提高沼气的生产率并减少消化污泥中病原体的存在。其中,热水解(TH)似乎是最有前途的一种。在废水处理厂(WWTP)中,污泥是许多有机微污染物(OMP)的终点,事实证明,由于污泥通常用于农业,因此会导致重大的环境和人类风险。这项工作的目的是确定TH和后续AD中的命运OMP。污水污泥在TH中试设备中在170摄氏度下预处理20分钟。此后,在中温条件下并行运行两个厌氧消化池,它们的工作体积为14 L,分别装有新鲜的和预处理的污泥。事实证明,TH是一种有效的技术,可以部分或全部除去OMP的溶解部分以及吸附到这些预处理后可溶解的悬浮固体中的部分。但是,它不会影响OMP吸附到不溶解的固体中的浓度。在全球范围内,TH期间OMPs的去除效率似乎与该过程中的固体增溶有关。之后,确定新鲜的和预处理的污泥在AD中的OMPs生物转化效率。确定了两个反应器的微生物组之间的显着差异,但是对于大多数OMP,厌氧生物转化没有实质性差异。但是,它影响了麝香香气,在预处理污泥进料的反应器中,麝香香气的生物转化效率大大降低。因此,TH被证明可有效地部分去除OMP,但不能增强其生物利用度和随后的厌氧生物转化。 (C)2019 Elsevier B.V.保留所有权利。

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