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- W4229367617 endingPage "136902" @default.
- W4229367617 startingPage "136902" @default.
- W4229367617 abstract "• Occurrence, fate, and environmental impacts of hydrophobic PhACs were overall reviewed. • Migration and transformation of hydrophobic PhACs in anaerobic digestion were retrospected. • The potential mechanisms involved in PhACs migration and transformation were summarized. • The future scopes of PhACs behavior investigation in anaerobic digestion were proposed. The environmental behavior and ecological impacts of pharmacologically active compounds (PhACs) now have attracted intensive attention due to their potential negative effects on the ecosystem and human health. As a large number of studies illuminated that most of the PhACs are discharged from communities and transferred to wastewater treatment plants via pipe network. Nevertheless, traditional wastewater treatment processes fail to efficiently mineralize the PhACs and a considerable amount of PhACs is adsorbed on waste activated sludge (WAS) due to their refractory and hydrophobic properties. Anaerobic digestion is a recommended technology to treat WAS to achieve reduction of organics, stabilization and harmlessness of the wastes as well as resource recovery. Unfortunately, the removal efficiency of hydrophobic PhACs in the anaerobic digestion process is unsatisfactory. The migration and transformation of hydrophobic PhACs during anaerobic digestion have caused extensive concerns since residual contaminants could end up in the environment along with the disposal of digestates. To safely dispose WAS via anaerobic digestion, it is essential to understand the migration and transformation of hydrophobic PhACs in the process. Thus, this review is wrapped up to examine the occurrence, fate, and environmental impacts of hydrophobic PhACs, to exhibit the migration and transformation behavior of hydrophobic PhACs in the various stages of anaerobic digestion, and to further reveal the potential mechanisms. Besides, the future research prospects of hydrophobic PhACs in anaerobic digestion have been addressed in this present work." @default.
- W4229367617 created "2022-05-10" @default.
- W4229367617 creator A5000359400 @default.
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- W4229367617 creator A5042318951 @default.
- W4229367617 creator A5052441498 @default.
- W4229367617 creator A5070633162 @default.
- W4229367617 creator A5072994413 @default.
- W4229367617 date "2022-10-01" @default.
- W4229367617 modified "2023-10-18" @default.
- W4229367617 title "Recent advancements on the migration and transformation of hydrophobic pharmaceutically active compounds in anaerobic digestion process" @default.
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