Page 330 - Refining Biomass Residues for Sustainable Energy and Bioproducts
P. 330
Potentials of postharvest rice crop residues as a source of biofuel 299
MoA, 2012. Agricultural Statistics at a Glance. Ministry of Agriculture (MoA), New Delhi.
Mofijur, M., et al., 2012. Prospects of biodiesel from Jatropha in Malaysia. Renew. Sustain.
Energy Rev. 16, 5007 5020.
Murphy, C., Kendall, A., 2015. Lifecycle analysis of biochemical cellulosic ethanol under
multiple scenarios. GCB Bioenergy 7, 1019 1033.
National Research Council (NRC), 2008. Water Implications of Biofuels Production in the
United States. NRC, Washington, DC.
Nigam, P.S., Gupta, N., Anthwal, A., 2009. Pre-treatment of agro-industrial residues.
In: Nigam, P.S., Pandey, A. (Eds.), Biotechnology for Agro-Industrial Residues
Utilization. Springer, The Netherlands, pp. 13 33.
Oladosu, G., Msangi, S., 2013. Biofuel-food market interactions: a review of modeling
approaches and findings. Agriculture 3, 53 71.
Onuki, S., Koziel, J.A., van Leeuwen, J., Jenks, W.S., Grewell, D.A., Cai, L., 2008. Ethanol
production, purification, and analysis techniques: a review. In: Agricultural and
Biosystems Engineering Conference Proceedings and Presentations, vol. 68. Available
from: https://lib.dr.iastate.edu/abe_eng_conf/68.
Ponnamperuma, F.N., 1984. Straw as a source of nutrients for wet-land rice. In: Banta,
S., Mendoza, C.V. (Eds.), Organic Matter and Rice. IRRI, Los Banos, Philippines,
pp. 117 136.
Raison, R.J., 1979. Modification of the soil environment by vegetation fires, with particular
reference to nitrogen transformation: a review. Plant Soil 51, 73 108.
Renewable Energy Network 21 (REN21), 2015. Renewables 2015 Global Status Report.
REN21 Secretariat, Paris, France.
Roberto, I.C., Mussatto, S.I., Rodrigues, R.C.L.B., 2003. Dilute-acid hydrolysis for optimiza-
tion ofxylose recovery from rice straw in a semi-pilotreactor. Ind. Crops Prod. 7,
171 176. Available from: https://doi.org/10.1016/S0926-6690(02)00095-X.
Roy, P., Kaur, M., 2016. Economic analysis of selected paddy straw management techniques
in Punjab and West Bengal. Indian J. Econ. Dev. 2016 (12), 467 471.
Sarkar, A., Yadav, R.L., Gangwar, B., Bhatia, P.C., 1999. Crop Residues in India Technical
Bulletin. Project Directorate for Cropping System Research, Modipuram.
Schultz, T.P., Biermann, C.J., McGinnis, G.D., 1983. Steam explosion of mixed hardwood
chips as a biomass pretreatment. Ind. Eng. Chem. Prod. Res. Dev. 22 (2), 344 348.
Available from: https://doi.org/10.1021/i300010a034.
Searchinger, T., Heimlich, R., Houghton, R.A., Dong, F., Elobeid, A., Fabiosa, J., et al.,
2008. Use of U.S. croplands for biofuels increases greenhouse gases through emissions
from land-use change. Science 319, 1238 1240.
Shafie, S.M., 2016. A review on paddy residue based power generation: energy, environment
and economic perspective. Renew. Sustain. Energy Rev. 59, 1089 1100.
Shinoj, P., Raju, S.S., Joshi, P.K., 2011. India’s biofuel production programme: need for pri-
oritizing alternative options. Indian J. Agric. Sci. 81, 391 397.
Shiun, L.J., 2012. A review on utilization of biomass from rice industry as a source of renew-
able energy. Renew. Sustain. Energy Rev. 16, 3084 3094.
Sidhu, R., Bansal, M., Bath, G.S., Garg, R., 2015. Impact of stubble burning on the ambient
air quality. In: Proceedings IRES Sixth International Conference, Melbourne, Australia.
ISBN: 978-93-85465-75-8.
Silitonga, A.S., et al., 2011. A review on prospect of Jatropha curcas for biodiesel in
Indonesia. Renew. Sustain. Energy Rev. 15, 3733 3756.
Singh, A., Mishra, P., 1993. Microbial production of ethanol in: microbial pentose utilization:
current application in biotechnology. Prog. Ind. Microbiol. 33, 147 196.