AI Article Synopsis

  • Phenol is highly toxic to aquatic life and accumulates in the environment, posing challenges for assessing ecological risks.
  • A new three-stage assessment method revealed that phenol concentrations are generally higher in northern rivers of China, with ecological risks varying by season and river location.
  • Fish are more vulnerable to phenol toxicity than invertebrates, highlighting the need for updated water quality standards and targeted strategies to protect river ecosystems.

Article Abstract

Phenol, known for its bioaccumulative nature and severe toxicity to riverine organisms, poses complex challenges for ecological risk assessment. To tackle this issue, we developed a three-stage incremental assessment method, providing an integrated perspective on phenol toxicity risk for aquatic organisms. The findings indicated that phenol concentrations were generally higher in the aquatic environments of northern rivers, such as the Hun River, Taizi River, and Liao River, compared to those in southern China. The evaluation results at individual points showed that the ecological risk of phenol to aquatic organisms ranked from high to low during rainy, dry, and normal seasons, showing seasonal variation characteristics. Regarding spatial variation along the river, the ecological risk of phenol gradually increased from upper reaches, peaked in the middle reaches, and then decreased in the lower reaches. Considering the different species types, fish face a higher risk of toxic effects of phenol than invertebrates when exposed to phenol over a long period of time, probably due to the bioaccumulative nature of phenol. To address ecological risk control at the watershed scale, there is an urgent need to revise China's current river water quality standards. It is essential to increase the emphasis on ecological risk control for aquatic organisms. Developing more targeted and refined ecological risk control strategies for river phenols is crucial to maintain a healthier and more vibrant river ecosystem.

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Source
http://dx.doi.org/10.1007/s10661-023-12089-6DOI Listing

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