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Bioremediation and lipid synthesis through mixotrophic algal consortia in municipal wastewater
http://wgbis.ces.iisc.ernet.in/energy/
Durga Madhab Mahapatra a,b                H.N. Chanakya b,c                Ramachandra T V a,b,c,*
a Energy & Wetlands Research Group, Center for Ecological Sciences [CES], b Centre for Sustainable Technologies (astra), c Centre for infrastructure, Sustainable Transportation and Urban Planning [CiSTUP],
Indian Institute of Science, Bangalore, Karnataka, 560 012, India
*Corresponding author: cestvr@ces.iisc.ernet.in
Citation : Durga Madhab Mahapatra, H N Chanakya, Ramachandra. T.V, Bioresource Technology, Volume xxx 2014, 1-9 pages.
Keywords : Mixotrophic algal consortia, Lipid, Wastewater treatment, GC–MS, SEM-EDXA
Publisher : Elsevier Ltd.
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References

  1. APHA, AWWA, WEF, 2005. Standard Methods for the Examination of Water and Wastewater, 20th ed. APHA, Washington, DC, USA.
  2. Bhatnagar, A., Bhatnagar, M., Chinnasamy, S., Das, K., 2010. Chlorella minutissima –a promising fuel alga for cultivation in municipal wastewaters. Appl. Biochem.Biotechnol. 161, 523–536.
  3. Bligh, E.G., Dyer, W.J., 1959. A rapid method of lipid extraction and purification. Can.J. Biochem. Physiol. 37, 911–917.
  4. Chanakya, H.N., Mahapatra, D.M., Sarada, R., Abitha, R., 2012. Algal biofuel production and mitigation potential in India. Miti. Adapt. Strat. Global Change 18, 113–136.
  5. Chen, C.Y., Yeh, K.L., Aisyah, R., Lee, D.J., Chang, J.-S., 2011. Cultivation, photobioreactor design and harvesting of microalgae for biodiesel production: a critical review. Bioresour. Technol. 102, 71–81.
  6. Chinnasamy, S., Bhatnagar, A., Hunt, R.W., Das, K.C., 2010. Microalgae cultivation in a wastewater dominated by carpet mill effluents for biofuel applications. Bioresour. Technol. 101, 3097–3105.
  7. Cho, S., Luong, T.T., Lee, D., Oh, Y.-K., Lee, T., 2011. Reuse of effluent water from a municipal wastewater treatment plant in microalgae cultivation for biofuel production. Bioresour. Technol. 102, 8639–8645.
  8. Damiani, C.M., Popovich, C.A., Constenla, D., Leonardi, P.I., 2010. Lipid analysis in Haematococcus pluvialis to assess its potential use as a biodiesel feedstock. Bioresour. Technol. 101, 3801–3807.
  9. Dean, A.P., Estrada, B., Sigee, D.C., Pittman, J.K., 2010. Using FTIR spectroscopy for rapid determination of lipid accumulation in response to nitrogen limitation in freshwater microalgae. Bioresour. Technol. 101, 4499–4507.
  10. Dean, A.P., Nicholson, J.M.B., Sigee, D.C., 2012. Changing patterns of carbon allocation in lake Phytoplankton: an FTIR analysis. Hydrobiologia 684, 109–127.
  11. Feng, Y., Li, Chao., Zhang, D., 2011. Lipid production of Chlorella vulgaris cultured in artificial wastewater medium. Bioresour. Technol. 101, 101–105.
  12. Li, Z., Yuan, H., Yang, J., Li, B., 2011. Optimization of the biomass production of oil algae Chlorella minutissima UTEX 2341. Bioresour. Technol. 102, 9128–9134.
  13. Mahapatra, D.M., Chanakya, H.N., Ramachandra, T.V., 2013a. Euglena sp. as a suitable source of lipids for potential use as biofuel and sustainable wastewater treatment. J. Appl. Phycol. 25, 855–865.
  14. Mahapatra, D.M., Chanakya, H.N., Ramachandra, T.V., 2013b. Treatment efficacy of algae based sewage treatment plants. Environ. Monit. Assess. 185, 7145–7164.
  15. Mahapatra, D.M., Ramachandra, T.V., 2013. Algal biofuel: bountiful lipid from Chlorococcum sp. proliferating in municipal wastewater. Curr. Sci. 105, 47–55.
  16. Park, J.B.K., Craggs, R.J., Shilton, A.N., 2012. Wastewater treatment high rate algal ponds for biofuel production. Bioresour. Technol. 102, 35–42.
  17. Perez-Garcia, O., de-Bashan, L.E., Hernandez, J.P., Bashan, Y., 2010. Efficiency of growth and nutrient uptake from wastewater by heterotrophic, autotrophic and mixotrophic cultivation of Chlorella vulgaris immobilized with Azospirillum brasilense. J. Phycol. 46, 800–812.
  18. Prathima Devi, M., Venkata Subhash, G., Venkata Mohan, S., 2012. Heterotrophic cultivation of mixed microalgae for lipid accumulation and wastewater treatment during sequential growth and starvation phases. Effect of nutrient supplementation. J. Renew. Energy 43, 276–283.
  19. Ramachandra, T.V., Mahapatra, D.M., Karthick, B., Gordon, R., 2009. Milking diatoms for sustainable energy: biochemical engineering versus gasoline-secreting diatom solar panels. Ind. Eng. Chem. Res. 48, 8769–8788.
  20. Ramachandra, T.V., Mahapatra, D.M., Samantray, S., Joshi, N.V., 2013. Biofuel from urban wastewater: scope and challenges. Renew. Sustain. Energy Rev. 21, 767–777.
  21. Salim, S., Bosma, P., Vermue, M.H., Wijffels, R.H., 2011. Harvesting of microalgae by bio-flocculation. J. Appl. Phycol. 23, 849–855.
  22. Salmon, E., Behar, F., Lorant, F., Hatcher, P.G., Metzger, P., Marquaire, P.-M., 2009. Thermal decomposition process in algaenan of Botryococcus brauii race L. Part 1. Experimental data and structural evolution. Org. Geochem. 40, 400–415.
  23. Seyfabadi, J., Ramezanpour, Z., Khoeyi, Z.A., 2011. Protein, fatty acid and pigment content of Chlorella vulgaris under different light regimes. J. Appl. Phycol. 23, 721–726.
  24. Silva, J.O., Filho, G.R., Meireles, C.S., Ribeiro, S.D., Vieira, J.G., Da Silva, C.V., Cerqueira, D.A., 2012. Thermal analysis and FTIR studies of sewage sludge produced in treatment plants – the case of sludge in the city of Uberlan-dia—MG, Brazil. Thermochim. Acta 528, 72–75.
  25. Sostaric, M., Klinar, D., Bricelj, M., Golob, J., Berovic, M., Likozar, B., 2012. Growth, lipid extraction and thermal degradation of the microalga Chlorella vulgaris. New Biotechnol. 29, 325–331.
  26. Stehfest, K., Toepel, J., Wilhelm, C., 2005. The application of micro-FTIR spectroscopy to analyse nutrient stress related changes in biomass composition of phytoplankton algae. Plant Physiol. Biochem. 43, 717–726.
  27. Su, Y.Y., Mennerich, A., Urban, B., 2011. Municipal wastewater treatment and biomass accumulation with a wastewater-born and settleable algal–bacterial culture. Water Res. 45, 3351–3358.
  28. Venkata Mohan, S., Prathima Devi, M., Mohanakrishna, G., Amarnath, N., Lenin Babu, M., Sarma, P.N., 2011. Potential of mixed microalgae to harness biodiesel from ecological water-bodies with simultaneous treatment. Bioresour. Technol. 102, 1109–1117.
  29. Wang, B., Lan, C.Q., 2011. Biomass production and nitrogen and phosphorus removal by the green alga Neochloris oleoabundans in simulated wastewater and secondary municipal wastewater effluent. Bioresour. Technol. 102, 5639–5644.
  30. Wang, L., Li, Y., Chen, P., Min, M., Chen, Y., Zhu, J., Ruan, R.R., 2010. Anaerobic digested dairy manure as a nutrient supplement for cultivation of oil-rich green microalgae Chlorella sp.. Bioresour. Technol. 101, 2623–2628.
  31. Woertz, I., Feffer, A., Lundquist, T., Nelson, Y., 2009. Algae grown on dairy and municipal wastewater for simultaneous nutrient removal and lipid production for biofuel feedstock. J. Environ. Eng. 135, 1115–1122.
  32. Wu, Z., Zhu, Y., Huang, W., Zhang, C., Li, T., Zhang, Y., Li, A., 2012. Evaluation of flocculation induced by pH increase for harvesting microalgae and reuse of flocculated medium. Bioresour. Technol. 110, 496–502.
  33. Yujie, F., Li, C., Zhang, D., 2011. Lipid production of Chlorella vulgaris cultured in artificial wastewater medium. Bioresour. Technol. 102, 101–105.
  34. Zhou, W., Cheng, Y., Li, Y., Wan, Y., Liu, Y., Lin, X., Ruan, R., 2012a. Novel fungal pelletization-assisted technology for algae harvesting and wastewater treatment. Appl. Biochem. Biotechnol. 167, 214–228.
  35. Zhou, W., Min, M., Hu, B., Ma, X., Cheng, Y., Chen, P., 2012b. A heterophotoautotrophic two-stage cultivation process to improve wastewater
    nutrient removal and enhance algal lipid accumulation. Bioresour. Technol. 110, 448–455.
* Corresponding Author :
  Dr. T.V. Ramachandra
Energy & Wetlands Research Group, Centre for Ecological Sciences, Indian Institute of Science, Bangalore – 560 012, India.
Tel : 91-80-23600985 / 22932506 / 22933099,      Fax : 91-80-23601428 / 23600085 / 23600683 [CES-TVR]
E-mail : cestvr@ces.iisc.ernet.in, energy@ces.iisc.ernet.in,     Web : http://wgbis.ces.iisc.ernet.in/energy
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