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Abatement of the ecotoxicological risk of landfill leachate by heterogeneous Fenton-like oxidation

Sajid Hussain; Eleonora Aneggi; Clara Comuzzi; Diego Baderna; Daniele Zuccaccia; Alessandro Trovarelli; Daniele Goi
Environmental Science and Pollution Research · Vol. 30, Issue 8 · pp. 21025-21032 · 2022

Abstract

Landfill leachates are highly contaminated liquid waste, and their treatment and detoxification are a challenging task. The current system of ecotoxicological risk assessment is complex and time-consuming. It is of fundamental importance to develop simpler and faster tools for the evaluation of the treated liquid waste and for an easier preliminary screening of the most active catalytic formulation/reaction conditions of the Fenton-like process. Here, several analytical techniques have been used for the assessment of the reduction of toxicity of the landfill leachate after Fenton process over copper-zirconia catalyst (ZrCu). Ultraviolet–visible (UV–vis) spectroscopy and absorbable organic halogens (AOX) analysis have been coupled to achieve further insight into the degradation of contaminants. In addition, for the first time, the qualitative abatement of organic compounds is monitored through proton nuclear magnetic resonance ( 1 H NMR) analysis, providing a new method for evaluating the effectiveness of the treatment. Spectroscopic techniques reveal that the Fenton process induces a significant abatement of the aromatic and halogen compounds (51%) in the landfill leachate with a reduction of the toxicity that has been confirmed by ecotoxicological test with algae. These results validate the investigated tool for a simple rapid preliminary evaluation of the detoxification efficacy.

Bibliographic Information

JournalEnvironmental Science and Pollution Research
PublisherSpringer
Publication Date2022-10-20
Publication Year2022
Volume30
Issue8
Pages21025-21032
Document TypeJournal Article
eISSN1614-7499
DOI10.1007/s11356-022-23682-6

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NARA Access Coverage1994-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11356
Publisher PageOpen Publisher Page
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