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- W4319457777 endingPage "125" @default.
- W4319457777 startingPage "111" @default.
- W4319457777 abstract "Bisphenol A (2,2-bis(4-hydroxyphenyl) propane, BPA) belongs to the so-called emerging pollutants having endocrine-disrupting properties. In addition, it is suspected of having carcinogenic properties. BPA is used in the manufacture of several everyday products and, as a result, its discharge into the environment is expected. Thus, it is found in surface water, groundwater, and seawater at concentrations ranging from 5 to 200 ng/L, which are potentially harmful to humans and wildlife. Therefore, the removal of BPA from industrial wastewater to avoid BPA environmental pollution is a matter of serious worldwide concern. The conventional wastewater treatment processes are costly and inefficient for the removal of BPA. This has driven the search for alternative methods such as those based on oxidative enzymes. In this context, laccases are attracting increasing interest in the last decades due to their broad substrate specificity and the fact that they only need molecular oxygen to exert their catalytic action producing water as the only by-product. This approach is believed to be a promising technology since it is cost-effective, environmentally friendly, and does not produce sludge. Detailed characterization of the intermediates and metabolites produced during enzymatic degradation of BPA as well as toxicity studies are of great importance to assess the effectiveness of the biodegradation process. This review reports the metabolites found by different researchers in the degradation of BPA by laccase enzymes." @default.
- W4319457777 created "2023-02-09" @default.
- W4319457777 creator A5074915373 @default.
- W4319457777 date "2023-01-01" @default.
- W4319457777 modified "2023-10-18" @default.
- W4319457777 title "Biotransformation of bisphenol A by laccase enzymes" @default.
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- W4319457777 doi "https://doi.org/10.1016/b978-0-323-99895-6.00005-8" @default.
- W4319457777 hasPublicationYear "2023" @default.
- W4319457777 type Work @default.