Removal of 17β-estrodial in a bio-electro-Fenton system: Contribution of oxidation and generation of hydroxyl radicals with the Fenton reaction and carbon felt cathode
					
						
							
								
									
										
											Xu Nan
										
										
									
								
									
										
										
											Zeng Yaqiong
										
									
								
									
										
										
											Li Jie
										
									
								
									
										
										
											Sun Weiling
										
									
								
                                 · 2015
							
 
							
						 
						
					 
					
						
							
								期刊名称:
								
								    RSC Advances  
									
									2015 年
									
									
									5 卷
									
									
									70 期
									
								
							 
						
						
							
						
						
							
								摘要:
								A bio-electro-Fenton (BEF) system equipped with a Fe@Fe2O3/non-catalyzed carbon felt (NCF) cathode was optimized, and the generation of hydroxyl radicals was confirmed for E2 removal. External resistance was the most significant factor influencing E2 removal. When the external resistance was close to the internal one, both the Fe@Fe2O3/NCF and NCF systems removed over 90% of E2. Sorption experiments suggested that oxidation played a major role in E2 removal instead of cathode sorption. Up to 0.54 mmol L-1 of hydroxyl radicals were detected in the Fe@Fe2O3/NCF system, mostly produced via the Fenton reaction. While in the NCF system, hydroxyl radicals were also detectable at around 0.059 mmol L-1, possibly produced through the activation of H2O2 by persistent free radicals contained in the combustion-generated carbon felt. Although the BEF system was confirmed to possess a much stronger oxidation capacity, a microbial fuel cell equipped with NCF is already efficient in removing trace amounts of organic pollutants.