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Particle electrode materials dependent tetrabromobisphenol A degradation in three-dimensional biofilm electrode reactors
被引:20
|作者:
Li, Xiu-yan
[1
]
Peng, Pin
[1
]
Wang, Wei-kang
[1
]
Wang, Si-yuan
[1
]
Feng, Lei
[1
]
Zhang, Yan-chen
[1
]
Xu, Juan
[1
,2
]
机构:
[1] East China Normal Univ, Shanghai Organ Solid Wastes Biotransformat Engn T, Sch Ecol & Environm Sci, Shanghai Key Lab Urban Ecol Proc & Ecorestorat, Shanghai 200241, Peoples R China
[2] Inst EcoChongming IEC, 20 Cuiniao Rd, Shanghai 202162, Peoples R China
基金:
中国国家自然科学基金;
关键词:
Granular activated carbon;
Granular zeolite;
Particle electrodes;
Tetrabromobisphenol A;
Three-dimensional biofilm electrode reactors;
FLAME-RETARDANT TETRABROMOBISPHENOL;
DENITRIFICATION;
STIMULATION;
PERFORMANCE;
ELECTRICITY;
METABOLISM;
REMOVAL;
RELEASE;
D O I:
10.1016/j.envres.2021.111089
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
The completely biological degradation of Tetrabromobisphenol A (TBBPA) contaminant is challenging. Bioelectrochemical systems are efficient to promote electrons transfer between microbes and pollutants to improve the degradation of refractory contaminants. In particular, three-dimensional biofilm electrode reactors (3DBERs), integrating the biofilm with particle electrodes, represent a novel bio-electrochemical technology with superior treatment performances. In this study, the electroactive biofilm is cultured and acclimated on two types of particle electrodes, granular activated carbon (GAC) and granular zeolite (GZ), to degrade the target pollutant TBBPA in 3DBERs. Compared to GZ, GAC materials are more favorable for biofilm formation in terms of high specific surface area and good conductivity. The genus of Thauera is efficiently enriched on both GAC and GZ particles, whose growth is promoted by the electricity. By applying 5 V voltage, TBBPA can be removed by over 95% in 120 min whether packing GAC or GZ particle electrodes in 3DBERs. The synergy of electricity and biofilm in TBBPA degradation was more significant in GAC packed 3DBER, because the improved microbial activity by electrical stimulation accelerates debromination rate and hence the decomposition of TBBPA. Applying electricity also promotes TBBPA degradation in GZ packed 3DBER mainly due to the enhanced electrochemical effects. Roles of particle electrode materials in TBBPA removal are distinguished in this work, bringing new insights into refractory wastewater treatment by 3DBERs.
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页数:8
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