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1.
Mar Pollut Bull ; 203: 116442, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38718547

ABSTRACT

Plastic nurdles pose a significant environmental threat due to recurrent accidental spills into marine ecosystems. This report examines the nurdle pollution over the 1498 km of the Galician coastline (Spain) following the spill of 25 t of nurdles into the Northwest Atlantic after the loss of six containers from the Toconao vessel in December 2023. This accident highlights the urgent need for proactive, effective measures in maritime transport to prevent and mitigate such environmental catastrophes. The complexity of nurdle dispersion challenges the evaluation of their fate at sea, and the potential long-term consequences on the marine ecosystem and food web remain uncertain and yet to be investigated. This report also presents the VIEIRA collaborative and underscores the critical role of citizen-led initiatives in responding to such environmental disasters, and advocates for efficient policy reforms, involving cross-border collaboration. Furthermore, we call for greater international cooperation to underpin effective regulatory frameworks to address the growing hazard of plastic nurdle pollution worldwide.


Subject(s)
Plastics , Water Pollutants, Chemical , Spain , Plastics/analysis , Water Pollutants, Chemical/analysis , Environmental Monitoring , Ships , Atlantic Ocean
2.
Chemosphere ; 201: 399-416, 2018 Jun.
Article in English | MEDLINE | ID: mdl-29529567

ABSTRACT

Over the last decades, advanced oxidation processes have often been used alone, or combined with other techniques, for remediation of ground and surface water pollutants. The application of heterogeneous catalysis to electrochemical advanced oxidation processes is especially useful due to its efficiency and environmental safety. Among those processes, electro-Fenton stands out as the one in which heterogeneous catalysis has been broadly applied. Thus, this review has introduced an up-to-date collation of the current knowledge of the heterogeneous electro-Fenton process, highlighting recent advances in the use of different catalysts such as iron minerals (pyrite, magnetite or goethite), prepared catalysts by the load of metals in inorganic and organic materials, nanoparticles, and the inclusion of catalysts on the cathode. The effects of physical-chemical parameters as well as the mechanisms involved are critically assessed. Finally, although the utilization of this process to remediation of wastewater overwhelmingly outnumber other utilities, several applications have been described in the context of regeneration of adsorbent or the remediation of soils as clear examples of the feasibility of the electro-Fenton process to solve different environmental problems.


Subject(s)
Electrochemical Techniques/methods , Environmental Restoration and Remediation/methods , Catalysis , Electrochemical Techniques/trends , Environmental Restoration and Remediation/trends , Hydrogen Peroxide , Iron , Oxidation-Reduction , Water Pollutants, Chemical/chemistry
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