Treatment of Tannery Wastewater through the Moving-Bed Biofilm Reactor

被引:3
作者
Rech, Henrique Azevedo [1 ]
Agustini, Caroline Borges [1 ]
Soares, Mariliz Gutterres [1 ]
机构
[1] Fed Univ Rio Grande do Sul UFRGS, Chem Engn Dept, Lab Leather & Environm Studies LACOURO, Av Luiz Englert, BR-90040040 Porto Alegre, RS, Brazil
关键词
Moving-bed biofilm reactor; tannery effluent; biocarriers; biofilms; wastewater; hydraulic retention time; OXYGEN-TRANSFER; ATTACHED BIOFILM; ACTIVATED CARBON; DYE REMOVAL; SLUDGE; EFFLUENT; MBBR; IMPACT; PERFORMANCE; NITRIFICATION;
D O I
10.2174/1570193X17666201208000809
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The leather industry is an essential sector, especially in countries with highly developed livestock as they use rawhide to produce high-valued leather products. The leather-making process uses different chemicals and is a source of environmental pollution if the wastewater is not properly treated. Therefore, the purpose of this study is to analyze a Moving-Bed Biofilm Reactor (MBBR) as a new technology for the biological treatment of tannery wastewater. This system incorporate benefits provided by the suspended growth systems, which have already been consolidated in treating wastewater, such asactivated sludge and the advantage of growth adhered to biocarriers that have a large surface area. Incorporating activated sludge into MBBR enables the removal of both organic and nitrogen pollutants. Studies have shown that MBBR treatment efficiency depends on biocarrier surface area, composition, texture, and reactor operating conditions, such as filling fraction, hydraulic retention time, dissolved oxygen, and volumetric organic load.
引用
收藏
页码:402 / 411
页数:10
相关论文
共 74 条
[1]  
Ahmadi M., 2016, Asian J. Microbiol. Biotechnol. Environ. Sci., V18, P833
[2]  
Ahmadi M., 2017, J KERMAN U MED SCI, V24, P320
[3]   Impact of phenol shock loads on the performance of a combined activated sludge-moving bed biofilm reactor system [J].
Alves, A. P. A. ;
Lima, P. S. ;
Dezotti, M. ;
Bassin, J. P. .
INTERNATIONAL BIODETERIORATION & BIODEGRADATION, 2017, 123 :146-155
[4]   The impact of biofilm thickness-restraint and carrier type on attached growth system performance, solids characteristics and settleability [J].
Arabgol, Raheleh ;
Vanrolleghem, Peter A. ;
Piculell, Maria ;
Delatolla, Robert .
ENVIRONMENTAL SCIENCE-WATER RESEARCH & TECHNOLOGY, 2020, 6 (10) :2843-2855
[5]   Critical review on biofilm methods [J].
Azeredo, Joana ;
Azevedo, Nuno F. ;
Briandet, Romain ;
Cerca, Nuno ;
Coenye, Tom ;
Costa, Ana Rita ;
Desvaux, Mickael ;
Di Bonaventura, Giovanni ;
Hebraud, Michel ;
Jaglic, Zoran ;
Kacaniova, Miroslava ;
Knochel, Susanne ;
Lourenco, Analia ;
Mergulhao, Filipe ;
Meyer, Rikke Louise ;
Nychas, George ;
Simoes, Manuel ;
Tresse, Odile ;
Sternberg, Claus .
CRITICAL REVIEWS IN MICROBIOLOGY, 2017, 43 (03) :313-351
[6]   Impact of carrier filling ratio on oxygen uptake & transfer rate, volumetric oxygen transfer coefficient and energy saving potential in a lab-scale MBBR [J].
Barwal, Anjali ;
Chaudhary, Rubina .
JOURNAL OF WATER PROCESS ENGINEERING, 2015, 8 :202-208
[7]   To study the performance of biocarriers in moving bed biofilm reactor (MBBR) technology and kinetics of biofilm for retrofitting the existing aerobic treatment systems: a review [J].
Barwal, Anjali ;
Chaudhary, Rubina .
REVIEWS IN ENVIRONMENTAL SCIENCE AND BIO-TECHNOLOGY, 2014, 13 (03) :285-299
[8]   The application of moving bed bio-reactor (MBBR) in commercial laundry waste water treatment [J].
Bering, Slawomira ;
Mazur, Jacek ;
Tarnowski, Krzysztof ;
Janus, Magdalena ;
Mozia, Sylwia ;
Morawski, Antoni Waldemar .
SCIENCE OF THE TOTAL ENVIRONMENT, 2018, 627 :1638-1643
[9]   Characterization and Identification of Recalcitrant Organic Pollutants (ROPs) in Tannery Wastewater and Its Phytotoxicity Evaluation for Environmental Safety [J].
Bharagava, Ram Naresh ;
Saxena, Gaurav ;
Mulla, Sikandar I. ;
Patel, Devendra Kumar .
ARCHIVES OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 2018, 75 (02) :259-272
[10]   In situ enrichment of anammox bacteria in anoxic biofilms are possible due to the stable and long-term accumulation of nitrite during denitrification [J].
Chen, Kaiqi ;
Zhang, Liang ;
Sun, Shihao ;
Li, Jianwei ;
Jia, Tipei ;
Peng, Yongzhen .
BIORESOURCE TECHNOLOGY, 2020, 300