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Generation of bioenergy from industrial waste using microbial fuel cell technology  193

           Further reading


           Das, M.P., 2015. Pharma Chem. 7 (11), 8 10.
           Gautam, R.K., Verma, A., 2019. Microbial electrochemical technology sustainable platform
               for fuels, chemicals and remediation. Biomass Biofuels Biochem. 451 483.
           Karuppiah, T., Pugazhendi, A., Subramanian, S., Jamal, M.T., Jeyakumar, R.B., 2018. 3
               Biotech 8, 437. Available from: https://doi.org/10.1007/s13205-018-1462-1.
           Kokabian, B., Ghimire, U., Gnaneswargude, V., 2018. Renew. Energy 122, 354 361.
           Mehrdadi, N., Nabi-Bidhendi, G., Tashauoei, H.R., 2016. J. Safety Environ. Health Res. 1
               (1), 23 26.
           Nastro, R.A., 2014. Int. J. Performability Eng. 10 (4), 367 376.
           Naveen Kumar, M., 2017. Int. J. Latest Eng. Res. Appl. 02, 01 09.
           Prakash, A., 2016. Microbial fuel cells: a source of energy. J. Microb. Biochem. Technol. 8,
               247 255.
           Sevda, S., Sarma, P.J., Mohanty, K., Sreekrishnan, T.R., Pant, D., 2017. Waste to Wealth.
               Springer, pp. 237 258.
           Shakunthala, C., Manoj, S., 2017. Int. J. Appn. Innov. Eng. Manag 6 (10), 32 37.
           Tamboli, E., Satya Eswari, J., 2019. Microbial electrochemical technology. Biomass Biofuels
               Biochemicals. Elsevier, pp. 407 435.
           Tharali, A.D., Sain, N., Jabez Osborne, W., 2016. Front. Life Sci. 9 (4), 252 266.
           Xu, W., Zhang, E., Yu, E.H., 2016. Chem. Eng. Trans. 51, 37 42.
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