<HashMap><database>ENA</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Fastqsanger.gz>ftp://ftp.sra.ebi.ac.uk/vol1/fastq/SRR217/074/SRR21780974/SRR21780974_1.fastq.gz</Fastqsanger.gz><Fastqsanger.gz>ftp://ftp.sra.ebi.ac.uk/vol1/fastq/SRR217/074/SRR21780974/SRR21780974_2.fastq.gz</Fastqsanger.gz></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Genomics</omics_type><center_name>Thiruvalluvar University</center_name><full_dataset_link>https://www.ebi.ac.uk/ena/browser/view/PRJNA885971</full_dataset_link><long_description>Textile effluent contains a highly toxic and refractory azo dyes. eco-friendly method for efficient decolorization and degradation of textile effluent is essential. In this study, textile effluent was treated by sequential electro oxidation and photo electro oxidation using RuO2-IrO2 coated titanium electrode as an anode and cathode followed by biodegradation. The pre-treatment of textile effluent by photo electro oxidation for decolorization. Subsequent biodegradation of the pre-treated textile effluent enhanced the reduction of chemical oxygen demand. Hence, integrating sequential photo electro oxidation and biodegradation proposed an efficient and eco-friendly approach for treating textile effluent.</long_description><repository>ENA</repository><description_synonyms>biochemical pathways, biotransformation, secretion, Textile., biodegradation, degradation, catabolism</description_synonyms></additional><is_claimable>false</is_claimable><name></name><description>Sequential photo electro oxidation and biodegradation of textile effluent: Elucidation of microbial diversity and evolution of phytotoxicity</description><dates><last_updated>2023-05-17</last_updated><first_public>2022-10-07</first_public></dates><accession>PRJNA885971</accession><cross_references/></HashMap>