<p>The release of pollutants, especially bisphenol A, the most important endocrine disruptor, from plastic recycling industries is critical. This study aims to examine the pollution load of bisphenol A (BPA) in the effluent of plastic recycling facilities located in the coastal provinces of the southern Caspian Sea to achieve a comprehensive understanding of their release into the environment. Physicochemical factors (Biochemical Oxygen Demand (BOD), Chemical Oxygen Demand (COD), and pH) were measured as influential factors. BPA measurement was conducted using gas chromatography–mass spectrometry after extraction. The average concentration of BPA, BOD, COD, and pH value in the effluent of recycling units without treatment was 0.24&#xa0;ppb, 2502.33&#xa0;mg/L, 8497.61&#xa0;mg/L and 7.44, and with treatment was 0.13&#xa0;ppb, 353.3&#xa0;mg/L, 1201.43&#xa0;mg/L and 6.92, respectively. The highest concentration of BPA is related to the effluent of the untreated polyethylene terephthalate (PET) unit in Gilan province (0.71&#xa0;ppb), which indicated the effect of the treatment in the reduction of pollutants. A positive correlation was observed between COD with BPA concentration (P &lt; 0.05). The ecological risk of BPA for the effluent of PET units without treatment was 0.11&#xa0;ppb which was in moderate ecological risk and higher than the others.</p> Graphical Abstract <p></p>

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Pollution load of bisphenol a in the effluent of plastic recycling industries in the coastal areas of Southern Caspian Sea

  • Sepideh Keshtkar Sahnsarayi,
  • Fatemeh Shariati,
  • Hasan Karimzadegan

摘要

The release of pollutants, especially bisphenol A, the most important endocrine disruptor, from plastic recycling industries is critical. This study aims to examine the pollution load of bisphenol A (BPA) in the effluent of plastic recycling facilities located in the coastal provinces of the southern Caspian Sea to achieve a comprehensive understanding of their release into the environment. Physicochemical factors (Biochemical Oxygen Demand (BOD), Chemical Oxygen Demand (COD), and pH) were measured as influential factors. BPA measurement was conducted using gas chromatography–mass spectrometry after extraction. The average concentration of BPA, BOD, COD, and pH value in the effluent of recycling units without treatment was 0.24 ppb, 2502.33 mg/L, 8497.61 mg/L and 7.44, and with treatment was 0.13 ppb, 353.3 mg/L, 1201.43 mg/L and 6.92, respectively. The highest concentration of BPA is related to the effluent of the untreated polyethylene terephthalate (PET) unit in Gilan province (0.71 ppb), which indicated the effect of the treatment in the reduction of pollutants. A positive correlation was observed between COD with BPA concentration (P < 0.05). The ecological risk of BPA for the effluent of PET units without treatment was 0.11 ppb which was in moderate ecological risk and higher than the others.

Graphical Abstract