Fernández de Dios Maria Ángeles, Iglesias Olaia, Pazos Marta, Sanromán Maria Ángeles
Chemical Engineering Department, University of Vigo, Isaac Newton Building, Campus As Lagoas, Marcosende, 36310 Vigo, Spain.
ScientificWorldJournal. 2014 Feb 26;2014:801870. doi: 10.1155/2014/801870. eCollection 2014.
The applicability of electro-Fenton technology to remediation of wastewater contaminated by several organic pollutants such as dyes and polycyclic aromatic hydrocarbons has been evaluated using iron-enriched zeolite as heterogeneous catalyst. The electro-Fenton technology is an advanced oxidation process that is efficient for the degradation of organic pollutants, but it suffers from the high operating costs due to the need for power investment. For this reason, in this study microbial fuel cells (MFCs) were designed in order to supply electricity to electro-Fenton processes and to achieve high treatment efficiency at low cost. Initially, the effect of key parameters on the MFC power generation was evaluated. Afterwards, the degradation of Reactive Black 5 dye and phenanthrene was evaluated in an electro-Fenton reactor, containing iron-enriched zeolite as catalyst, using the electricity supplied by the MFC. Near complete dye decolourization and 78% of phenanthrene degradation were reached after 90 min and 30 h, respectively. Furthermore, preliminary reusability tests of the developed catalyst showed high degradation levels for successive cycles. The results permit concluding that the integrated system is adequate to achieve high treatment efficiency with low electrical consumption.
以富铁沸石作为非均相催化剂,评估了电芬顿技术对含染料和多环芳烃等几种有机污染物的废水的修复适用性。电芬顿技术是一种高级氧化工艺,对有机污染物的降解效率很高,但由于需要电力投资,其运行成本较高。因此,在本研究中设计了微生物燃料电池(MFC),以便为电芬顿工艺供电,并以低成本实现高处理效率。首先,评估了关键参数对MFC发电的影响。之后,在以富铁沸石为催化剂的电芬顿反应器中,利用MFC提供的电力,评估了活性黑5染料和菲的降解情况。分别在90分钟和30小时后,染料几乎完全脱色,菲降解了78%。此外,对所开发催化剂的初步可重复使用性测试表明,连续循环的降解水平很高。结果表明,该集成系统足以在低电耗的情况下实现高处理效率。