Jing Wang, Lihua Li, Jiti Zhou, Hong Lu, Guangfei Liu, Ruofei Jin, Fenglin Yang
School of Environmental Science and Technology, Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), Dalian University of Technology, 116024 Dalian, China.
J Hazard Mater. 2009 Sep 15;168(2-3):1098-104. doi: 10.1016/j.jhazmat.2009.02.152. Epub 2009 Mar 13.
The biodecolorization rate of azo dyes can be improved by the addition of some soluble quinoid redox mediators, but continuous dosing and discharge of these mediators will result in the secondary contamination due to their recalcitrant trait. In this study, the effect of anthraquinone-2,6-disulfonate (AQDS) bound into polypyrrole (PPy) on activated carbon felt (ACF) on anaerobic biodecolorization of azo dyes was investigated and compared with that immobilized on platinum (Pt). The results showed that in the presence of AQDS/PPy/ACF, the biodecolorization efficiency of azo dye RR15 reached over 80% at the optimal pH 7 in 8h and kept stable during successive 10 times repeated experiments. In contrast, in the presence of AQDS/PPy/Pt biodecolorization efficiency of RR15 was less than 60% under the above conditions, and the PPy doped by AQDS desquamated from the substrate material Pt at the third biodecolorization experiment. In addition, in the presence of AQDS/PPy/ACF biodecolorization efficiencies of 5 reactive dyes, 4 acid dyes and 2 direct dyes increased more than 3-fold than that without AQDS. This indicates that electropolymerization-immobilized AQDS (AQDS/PPy/ACF) has potential applications in accelerating the anaerobic biodecolorization of azo dyes.
添加一些可溶性醌类氧化还原介质可以提高偶氮染料的生物脱色率,但由于这些介质具有难降解的特性,持续投加和排放会导致二次污染。本研究考察了负载于活性炭毡(ACF)上的聚吡咯(PPy)结合蒽醌 - 2,6 - 二磺酸盐(AQDS)对偶氮染料厌氧生物脱色的影响,并与负载于铂(Pt)上的情况进行了比较。结果表明,在AQDS/PPy/ACF存在下,偶氮染料RR15在最佳pH值7时8小时内生物脱色效率达到80%以上,且在连续10次重复实验中保持稳定。相比之下,在上述条件下,AQDS/PPy/Pt存在时RR15的生物脱色效率低于60%,且在第三次生物脱色实验时,AQDS掺杂的PPy从底物材料Pt上脱落。此外,在AQDS/PPy/ACF存在下,5种活性染料、4种酸性染料和2种直接染料的生物脱色效率比无AQDS时提高了3倍以上。这表明电聚合固定化的AQDS(AQDS/PPy/ACF)在加速偶氮染料厌氧生物脱色方面具有潜在应用。