Evaluation of various waste substrates for biofilm formation and subsequent use in aerobic packed-bed reactor for secondary treatment of domestic wastewater

被引:0
作者
Suman Zimba
Thanikachalam Sathish Kumar
Natarajan Mohan
Polur Hanumantha Rao
机构
[1] Madras Christian College,Department of Microbiology
[2] University of Madras,Centre for Advanced Studies in Botany
[3] Guindy Campus,undefined
来源
World Journal of Microbiology and Biotechnology | 2021年 / 37卷
关键词
Bacterial surface immobilization; Biofilms; Bioremediation; Fixed-film reactors; Secondary treatment of domestic wastewater; Sewage;
D O I
暂无
中图分类号
学科分类号
摘要
Immobilization of bacterial cells on suitable substrates is of utmost importance in the secondary treatment of wastewater using fixed-film reactors. Therefore, screening of efficient and cheaper materials for bacterial surface immobilization was carried out. Eleven waste materials were used as substrates, packed in a column, and bacterial surface immobilization was carried out using cow dung slurry/MLSS mixture. All the chosen substrates were screened for bacterial immobilization/biofilm formation by standard bacterial enumeration technique. The substrate with the highest biofilm-forming ability was used for secondary treatment of raw domestic wastewater. The results showed that high-density polyethylene and aluminium foil sheets have poor immobilizing characteristics with 2.2 × 108 and 2.4 × 108 CFU/cm2 respectively, whereas jute fibres were observed to be the most efficient among the substrates with 5.1 × 1023 CFU/cm2. The column packed with jute fibres was used for wastewater treatment. Various physico-chemical parameters were analyzed before and after treatment and there was a significant reduction in major parameters after treatment. The bacteria-immobilized jute fibres showed maximum immobilization potential and were highly efficient in wastewater treatment, and therefore these findings offer immense promise in the synthesis of composite polymers for bacterial immobilization and subsequent secondary treatment.
引用
收藏
相关论文
共 110 条
[1]  
Akpomie Olubunmi O(2016)Bioremediation of soil contaminated with tannery effluent by combined treatment with cow dung and microorganisms isolated from tannery effluent J Bioremediat Biodegrad 7 1-5
[2]  
Ejechi Bernard O(2018)Sulfate-reducing bacteria as an effective tool for sustainable acid mine bioremediation Front Microbiol 9 1986-1702
[3]  
Ayangbenro AS(2017)Biodegradation of an actual petroleum wastewater in a packed bed reactor by an immobilized biomass of J Environ Chem Eng 5 1696-257
[4]  
Olanrewaju OS(2019)Immobilization of microbial cells for the biotreatment of wastewater: a review Environ Chem Lett 17 241-66
[5]  
Babalola OO(2011)The biodegradation pathway of triethylamine and its biodegradation by immobilized J Hazard Mater 186 59-3174
[6]  
Banerjee A(2009) cells Bioresour Technol 100 3167-1627
[7]  
Ghoshal AK(2010)Immobilization of bioluminescent Bioresour Technol 101 1611-231
[8]  
Bouabidi ZB(2000) cells using natural and artificial fibers treated with polyethylenimine Proc Biochem 36 225-382
[9]  
El-Naas MH(2015)Immobilized microalgae for removing pollutants: review of practical aspects Trends Microbiol 23 376-77
[10]  
Zhang Z(1997)Production of cephamycin C in repeated batch operations from immobilized Appl Microbiol Biotechnol 47 73-86