Microbial consortium for efficient composting of biosolid waste

Microbial consortium for efficient composting of biosolid waste

Authors

  • Shilpa P. College of Agriculture, Kerala Agricultural University, Thrissur 680 656, Kerala, India
  • Girija D. College of Agriculture, Kerala Agricultural University, Thrissur 680 656, Kerala, India

Keywords:

Microbial consortium, Aerobic composting, Biodegradation, Biosolid Waste

Abstract

Evaluation of formulated microbial consortium was carried out for validating the effectiveness of composting biosolid waste along with cow dung and uninoculated treatments. The newly developed microbial consortium was inoculated on biosolid waste in Thumburmuzhi composting units. Observations on volume reduction of biosolid waste and daily variation in temperature were recorded and microbial population in compost was assessed after maturation period. The maximum temperature during composting was recorded in inoculated treatment on the third day of composting and the temperature became stable after 13 days. The volume reduction of biosolid waste in Thumburmuzhi unit was recorded at different time intervals such as 15, 30, 45 and 80 days after inoculation. The results indicated that per cent volume reduction was non-significant among the treatments. However, numerically maximum per cent volume reduction was recorded in inoculated treatment over other treatments. After 80 days of composting, all the compost samples were assessed for microbial population. Significantly higher populations of bacteria and fungi were recorded in inoculated treatment. The results proved that composting of biosolid waste using microbial consortium is more efficient than cow dung and uninoculated method of composting. This investigation highlights the possibility of enhancing degradation of biosolid waste using microbial consortium in aerobic composting.

References

Benson, C. H. and Othman, M. A.1993. Hydraulic and mechanical characteristics of a compacted municipal solid waste compost. Waste Mang. Res. 11: 127–142.

Finstein, M. S., and Morris, M. L. 1975. Microbiology of municipal solid waste composting, Advances App. Microbiol. 19: 113–151.

Game, B. C., Deokar, C. D., and More, P. E. 2017. Efficacy of newly developed microbial consortium for composting of rural and urban wastes. Int. J. Curr. Microbiol. App. Sci. 6 (6): 626-633.

Gaur, A. C. 1999. Microbial Technology for Composting of Agricultural Residues by Improved Methods. Indian Council of Agricultural Research, New Delhi, 85 (2): 197–199.

Gazi, A.V., Kyriacou, A., Kotsou, M. and Lasaridi, K. E. 2007. Microbial community dynamics and stability assessment during green waste composting. Global NEST J. 9 (1): 35-41.

Goyal, S., Dhull, S. K. and Kapoor, K. K. 2005. Chemical and biological changes during composting of different organic wastes and assessment of compost maturity. Bioresour. Technol. 96: 1584-1591.

Himanen, M. and Hanninen, K. 2011. Composting of bio-waste, aerobic and anaerobic sludges: Effect of feedstock on the process and quality of compost. Bioresour. Technol. 102: 2842- 2852.

Indumathi, D. 2017. Microbial Conversion of Vegetable Wastes for Bio fertilizer Production. J. Biotechnol. Biochem. 3 (2): 43-47.

Kanotra, S. and Mathur, R. S. 1994. Biodegradation of paddy straw with cellulolytic fungi and its application on wheat crop. Biores. Technol. 47: 185-188.

Pare, T., Dinel, H., andSchnitzer, M. 1999. Extractability of trace metals during co-composting of biosolids and municipal solid wastes. Biology and Fertility of Soils. 29: 31-37.

Ryckeboer, J., Mergaert, J., Vaes, K., Klammer, S., De Clercq, D., Coosemans, J., Insam, H., and Swings, J. 2003. A survey of bacteria and fungi occurring during composting and self-heating processes. Ann. Microbiol. 53: 349-410.

Sarkar, P., Meghvanshi, M. and Singh, R. 2011. Microbial Consortium: A new approach in effective degradation of organic kitchen wastes. Int. J. Environ.Sci.Develop. 2(3): 67-71.

Taiwo, L. B. and Oso, B.A. 2004. Influence of composting techniques on microbial succession, temperature and pH in a composting municipal solid waste. Afr. J. Biotechnol. 3(4): 239-243.

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Published

28-07-2021

How to Cite

P., S., & D., G. (2021). Microbial consortium for efficient composting of biosolid waste. Journal of Tropical Agriculture, 59(1). Retrieved from https://jtropag.kau.in/index.php/ojs2/article/view/902

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Section

Short communications

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