Open Access

Methane Production Potential of Azolla Under Different Ratios of C/N, Chemical and Thermal Pre-Treatment


Cite

ABDESHAHIAN, P. – LIM, J. S. – HASHIM, H. – LEE, C. T. 2016. Potential of biogas production from farm animal waste in Malaysia. In Renewable and Sustainable Energy Reviews, vol. 60, pp. 714–723.Search in Google Scholar

ADELARD, L. – POULSEN, T. G. – RAKOTONIA, V. 2015. Biogas and methane yield in response to co- and separate digestion of biomass wastes. In Waste Management and Research, vol. 33, pp. 55–62.Search in Google Scholar

ANONYMOUS. 2013. World Energy Council. London.Search in Google Scholar

BASRI, M. F. – YACOB, S. – HASSAN, M. A. – SHIRI, Y. – WAKISAKA, M. – ZAKARIA, M. R. 2010. Improved biogas production from palm oil mill effluent by a scaled down anaerobic treatment process. In World Journal of Microbiology and Biotechnology, vol. 26, pp. 505–514.Search in Google Scholar

CARMAN, K. 2008. Prediction of soil compaction under pneumatic tires a using fuzzy logic approach. In Journal of Terramechanics, vol. 45, pp. 103–107.Search in Google Scholar

DAS, D. – SIKDAR, K. – CHETTERJEE, A. K. 1994. Potential of Azolla pinnata as biogas generator and as a fish feed. In Indian Journal of Environmental Health, vol. 36, pp. 186–191.Search in Google Scholar

JANKE, R. – KONG, J. – BRABERG, H. – CANTIN, G. – YATES, J. R. – KROGAN, N. J. – HEYER, W. D. 2016. Nonsense-mediated decay regulates key components of homologous recombination. In Nucleic Acids Research, vol. 44, no. 11, pp. 5218–30.Search in Google Scholar

KAŽIMÍROVÁ, V. – GADUŠ, J. – GIERTL, T. 2018. Verification of suitability of substrate composition for production and quality of biogas. In Acta Technologica Agriculturae, vol. 21, no. 3, pp. 118–121.Search in Google Scholar

PAUDEL, B. 2009. Suitability of Azolla for biogas slurry enrichment. Thesis in M.S., Kerala Agricultural University, Kerala, India.Search in Google Scholar

PHETYIMA, N. – WANTHONGA, T. – KANNIKAA, P. – SUPNGAMA, A. 2015. Biogas production from vegetable waste by using dog and cattle manure. In Energy Procedia, vol. 49, pp. 436–441.Search in Google Scholar

ROY, D. C. – PAKHIRA, M. C. – BERA, S. 2016. A review on biology, cultivation and utilization of Azolla. In Advances in Life Sciences, vol. 5, no. 1, pp. 11–15.Search in Google Scholar

SHILPAKAR, P. – SHILPAKAR, D. 2009. Nutrition of rice through Azolla organic material. In Indian Journal of Agronomy, vol. 42, no. 4, pp. 626–633.Search in Google Scholar

TASNIM, F. – AKHTAR, S. – CHOWDHURY, A. R. 2017. Biogas production from anaerobic co-digestion of cow manure with kitchen waste and Water Hyacinth. In Renewable Energy, vol. 109, pp. 434–439.Search in Google Scholar

WILKIE, A. C. 2000. Reducing dairy manure odor and producing energy. In Biocycle, vol. 41, no. 9, pp. 48–57.Search in Google Scholar

YADAVA, L. S. – HESSE, R. P. 1981. The development and use of biogas technology in rural area of Asia. Improving soil fertility through organic recycling. FAO project RAS/75/004, no. 10.Search in Google Scholar

ZHANG, J. – ZHANG, M. – SHAN, S. – WANG, M. 2013. Effect of biogas slurry application on grain yield. In Journal of Agro-Environmental Science, vol. 28, no. 10, pp. 2005–2009.Search in Google Scholar

eISSN:
1338-5267
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other