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Articles

Microbial Bioconversion of Dairy Wastewater in Packed Bed Biofilm Reactor into Liquid Biofertilizer

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Pages 249-258 | Received 07 Jul 2021, Accepted 10 Sep 2021, Published online: 26 Sep 2021

References

  • Agrawal GD. 1999. Diffuse agricultural water pollution in India. Wat Sci Technol. 39:33–47.
  • Al-Wasify RS, Ali MN, Hamed SR. 2017. Biodegradation of dairy wastewater using bacterial and fungal local isolates. Water Sci Technol. 76:3094–3100.
  • Asri M, Elabed S, Ibnsouda Koraichi S, El Ghachtouli N. 2019. Biofilm-based systems for industrial wastewater treatment. In: Hussain C., editors. Handbook of Environmental Materials Management. Cham: Springer.
  • Biswas T, Bhushan S, Prajapati SK, Ray Chaudhuri S. 2021. An eco-friendly strategy for dairy wastewater remediation with high lipid microalgae-bacterial biomass production. J Environ Manage. 286:112196.
  • Biswas T, Chatterjee D, Barman S, Chakraborty A, Halder N, Banerjee S, Ray Chaudhuri S. 2019. Cultivable bacterial community analysis of dairy activated sludge for value addition to dairy waste water. Microbiol Biotechnol Lett. 47:585–595.
  • Cataldo DA, Maroon M, Schrader LE, Youngs VL. 1975. Rapid colorimetric determination of nitrate in plant tissues by nitration of salicylic acid. Commun Soil Sci Plant Anal. 6:71–80.
  • Chen K, Pachter L. 2005. Bioinformatics for Whole-Genome Shotgun Sequencing of Microbial Communities. PLoS Comput Biol. 1:0106–0112.
  • Chen T, Liu N, Ren P, Xi X, Yang L, Sun W, Yu B, Ying H, Ouyang P, Liu D, et al. 2019. Efficient Biofilm-based fermentation strategies for L-threonine production by Escherichia coli. Front Microbiol. 10:1773–1784.
  • Chu C, Lu C, Lee C. 2005. Effects of inorganic nutrients on the regrowth of heterotrophic bacteria in drinking water distribution systems. J Environ Manage. 74:255–263.
  • Das S, Mukherjee I, Sudarshan M, Sinha TP, Thakur AR, RayChaudhuri S. 2012. Bacterial isolates of marine coast as commercial producer of protease. OnLine J Biol Sci. 12:96–107.
  • Dębowski M, Zieliński M, Kisielewska M, Krzemieniewski M, Makowska M, Grądkowski M, Tor-Świątek A. 2018. Simulated dairy wastewater treatment in a pilot plant scale magneto-active hybrid anaerobic biofilm reactor (Ma-Habr). Braz J Chem Eng. 35:553–562.
  • Deniges G. 1920. Reaction de coloration extremement sensible des phosphates et des arseniates, ses. applications. Acad Des Sci Compt Rend. 171:802–804.
  • Díaz M, Castro M, Copaja S, Guiliani N. 2018. Biofilm formation by the acidophile bacterium Acidithiobacillus thiooxidans involves c-di-GMP pathway and pel exopolysaccharide. Genes. 9:113–128.
  • Doran PM, Bailey JE. 1986. Effects of immobilization on growth, fermentation properties, and macromolecular composition of Saccharomyces cerevisiae attached to gelatin. Biotechnol Bioeng. 28:73–87.
  • Edstrom Industries, INC. 1997. Biofilm: The Key to Understanding and Controlling Bacterial Growth in Automated Drinking Water Systems. Wisconsin: Edstrom Industries 819 Bakke Avenue Waterford.
  • Ellwood DC, Keevil CW, Marsh PD, Brown CM, Wardell JN, Le Roux N. 1982. Surface associated growth [and discussion]. Philos T R Soc B. 297:517–532.
  • Fang W, Hu JY, Ong SL. 2009. Influence of phosphorus on biofilm formation in model drinking water distribution systems. J Appl Microbiol. 106:1328–1335.
  • Galaviz-Villa I, Landeros-Sánchez C, del Refugio Castañeda-Chávez M, Martínez-Dávila JP, Pérez-Vázquez A, Nikolskii-Gavrilov I, Lango-Reynoso F. 2010. Agricultural contamination of subterranean water with nitrates and nitrites: an environmental and public health problem. J Agr Sci. 2:17–30.
  • Galazzo JL, Bailey JE. 1990. Growing Saccharomyces cerevisiae in calcium-alginate beads induces cell alterations which accelerate glucose conversion to ethanol. Biotechnol Bioeng. 36:417–426.
  • Gautam SP. 2011. Guide manual: water and waste water analysis. Central Pollution Control Board, Government of India; Accessed January 27, 2020. Available at https://www.indiawaterportal.org/articles/water-and-wastewater-analysis-guide-manual-central-pollution-control-board.
  • Gogoi M, Biswas T, Biswal P, Saha T, Modak A, Gantayet LM, Nath R, Mukherjee I, Thakur AR, Sudarshan M, et al. 2021a. A novel strategy for microbial conversion of dairy wastewater into biofertilizer. J Clean Prod. 293:126051.
  • Gogoi M, Bhattacharya P, Bhushan S, Sen SK, Mukherjee I, Ray Chaudhuri S. 2021b. Aquaculture effluent Treatment with ammonia remover Bacillus albus (ASSF01). J Environ Chem Eng. 9:105697.
  • Gogoi M, Mukherjee I, Ray Chaudhuri S. 2021c. Characterization of ammonia remover Bacillus albus (ASSF01) in terms of biofilm formation ability with application in aquaculture effluent treatment. Environ Sci Pollut Res Int. 2021:8.
  • Halder N, Gogoi M, Sharmin J, Gupta M, Banerjee S, Biswas T, Agarwala BK, Gantayet LM, Sudarshan M, Mukherjee I, et al. 2020. Microbial consortium–based conversion of dairy effluent into biofertilizer. J Hazard Toxic Radioact Waste. 24:04019039–040190397.
  • Hurlow J, Couch K, Laforet K, Bolton L, Metcalf D, Bowler P. 2015. Clinical biofilms: a challenging frontier in wound care. Adv Wound Care. 4:295–301.
  • Jechalke SG, Franchini AG, Bastida F, Bombach P, Rosell M, Seifert J, Bergen von M, Vogt C, Richnow HH. 2013. Analysis of structure, function, and activity of a benzene-degrading microbial community. FEMS Microbiol Ecol. 85:14–26.
  • Kinoshita T, Katoh T, Tsuji M, Kanada A, Inoue T. 2003. Downward movement of inorganic nitrogen in tea [Camellia sinensis] fields of yellow soil affected by different N-fertilizer application. Jpn J Soil Sci Plant Nutr. 74:637–643.
  • Kirillova A, Danilushkina A, Irisov D, Bruslik N, Fakhrullin R, Zakharov Y, Bukhmin V, Yarullina D. 2017. Assessment of resistance and bioremediation ability of lactobacillus strains to lead and cadmium. Int J Microbiol. 2017:9869145–9869147.
  • Kushwaha JP, Srivastava VC, Mall ID. 2011. An overview of various technologies for the treatment of dairy wastewaters. Crit Rev Food Sci Nutr. 51:442–452.
  • Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. 1951. Protein measurement with the Folin phenol reagent. J Biol Chem. 193:265–275.
  • Martins C., Martins C, Fiuza L, Santaella S. 2013. Immobilization of microbial cells: a promising tool for treatment of toxic pollutants in industrial wastewater. Afr J Biotechnol. 12:4412–4418.
  • Molinos M, Hernández-Sancho F, Sala-Garrido R. 2013. Cost modeling for sludge and waste management from wastewater treatment plants: an empirical approach for Spain. Desalin Water Treat. 51:5414–5420.
  • Monsan P, Durand G, Navarro JM. 1987. Immobilization of microbial cells by adsorption to solid supports. In: Mosbach K, editor. Methods in Enzymology. New York: Academic Press; p307–318.
  • Nasholm T, Kielland K, Ganeteg U. 2009. Uptake of organic nitrogen by plants. New Phytol. 182:31–48.
  • Navarro JM, Durand G. 1980. Modification of the growth of Saccharomyces ouvarum by immobilization on a solid carrier. C R Acad Sci Paris. 290:453–456.
  • O’Toole GA. 2011. Microtiter dish biofilm formation assay. J Vis Exp. 47:2437–2438.
  • Prabhakar A, Mishra S, Das AP. 2019. Isolation and Identification of Lead (Pb) solubilizing Bacteria from automobile waste and its potential for recovery of lead from end of life waste batteries. Geomicrobiol J. 36:894–903.
  • Prazeres AR, Luz S, Fernandes F, Jerónimo E. 2020. Cheese wastewater treatment by acid and basic precipitation: application of H2SO4, HNO3, HCl, Ca(OH)2 and NaOH. J Environ Chem Eng. 8:103556.
  • Qazi JI, Shagufta MN, Baig S, Baig S, Syed Q. 2011. Anaerobic fixed film biotreatment of dairy wastewater. Middle-East J Sci Res. 8:590–593.
  • Qureshi N, Annous BA, Ezeji TC, Karcher P, Maddox IS. 2005. Biofilm reactors for industrial bioconversion processes: employing potential of enhanced reaction rates. Microb Cell Fact. 4:24.
  • Ray Chaudhuri S, Sharmin J, Banerjee S, Jayakrishnan U, Saha A, Mishra M, Ghosh M, Mukherjee I, Banerjee A, Jangid K, Sudarshan M, Chakraborty A, Ghosh S, Nath R, Banerjee M, Singh SS, Saha AK, Thakur AR. 2016. Novel microbial system developed from low level radioactive waste treatment plant for environmental sustenance. In: Saleh HEDM, Rahman ROA, editors. Management of Hazardous Wastes. Croatia: Intech; p.121–154
  • Saha S, Bhushan S, Mukherjee P, Chanda C, Bhaumik M, Ghosh M, Sharmin J, Datta P, Banerjee S, Barat P, et al. 2018. Simultaneous sequestration of nitrate and phosphate from wastewater using a tailor made bacterial consortium in biofilm bioreactor. J Chem Technol Biotechnol. 93:1279–1289.
  • Sakano Y, Pickering KD, Strom PF, Kerkhof LJ. 2002. Spatial distribution of total, ammonia-oxidizing, and denitrifying bacteria in biological wastewater treatment reactors for bioregenerative life support. Appl Environ Microbiol. 68:2285–2293.
  • Scherer P, Kluge M, Klein J, Sahm H. 1981. Immobilization of the methanogenic bacterium Methodsanosarcina barkeri. Biotechnol Bioeng. 23:1057–1065.
  • Sehar S, Naz I. 2016. Role of the biofilms in wastewater treatment. In: Dhanasekaran D, Thajuddin N, editor. Microbial Biofilms – Importance and Applications. London: IntechOpen Limited; p121–142.
  • Sharma A, Jamali H, Vaishnav A, Giri BS, Srivastava AK. 2020. Microbial biofilm: an advanced eco-friendly approach for bioremediation. In: Yadav, MK, Singh BP, editor. New and Future Developments in Microbial Biotechnology and Bioengineering: Microbial Biofilms, Netherland: Elsevier, p205–219.
  • Shete BS, Shinkar NP. 2013. Comparative study of various treatments for dairy industry wastewater. IOSR J Eng. 3:42–47.
  • Tang KH, Barry K, Chertkov O, Dalin E, Han CS, Hauser LJ, Honchak BM, Karbach LE, Land ML, Lapidus A, et al. 2011. Complete genome sequence of the filamentous anoxygenic phototrophic bacterium Chloroflexus aurantiacus. BMC Genomics. 12:334.
  • Vlyssides AG, Tsimas ES, Barampouti EMP, Mai ST. 2012. Anaerobic digestion of cheese dairy wastewater following chemical oxidation. Biosyst Eng. 113:253–258.
  • Wang J, Li G, Yin H, An T. 2020. Bacterial response mechanism during biofilm growth on different metal material substrates: EPS characteristics, oxidative stress and molecular regulatory network analysis. Environ Res. 185:109451.
  • Wang ZW, Chen S. 2009. Potential of biofilm-based biofuel production. Appl Microbiol Biotechnol. 83:1–18.
  • Yadav IN. 2014. Comparative study of batch and continuous packed bed bioreactor for treatment of dairy wastewater. Int J Res Advent Technol. 2:211–215.
  • Yeager CM, Gallegos-Graves V, Dunbar J, Hesse CN, Daligault H, Kuske CR. 2017. Polysaccharide degradation capability of actinomycetales soil isolates from a semiarid grassland of the colorado plateau. Appl Environ Microbiol. 83:e03020–16.
  • Yin W, Wang Y, Liu L, He J. 2019. Biofilms: the microbial “protective clothing” in extreme environments. Int. J. Mol. Sci. 20:3423–3441.
  • Zayed G, Winter J. 1998. Removal of organic pollutants and of nitrate from wastewater from the dairy industry by denitrification. Appl Microbiol Biotechnol. 49:469–474.

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