International Journal of Environmental Science and Technology, 6
(2), 219–224.
Frąc, M., & Ziemiñski, K. (2012). Methane fermentation process for
utilization of organic waste. International agrophysics, 26(3).
Ghadge, S. V., & Raheman, H. (2005). Biodiesel production from
mahua (Madhuca indica) oil having high free fatty acids. Biomass
and Bioenergy, 28(6), 601–605.
Gui, M. M., Lee, K. T., & Bhatia, S. (2008). Feasibility of edible oil vs.
non-edible oil vs. waste edible oil as biodiesel feedstock. Energy, 33
(11), 1646–1653.
Hauser, V. L., Weand, B. L., & Gill, M. D. (2001). Natural covers for
landfills and buried waste. Journal of Environmental Engineering,
127(9), 768–775.
Hill, J., Nelson, E., Tilman, D., Polasky, S., & Tiffany, D. (2006).
Environmental, economic, and energetic costs and benefits of
biodiesel and ethanol biofuels. Proceedings of the National
Academy of Sciences, 103(30), 11206–11210.
Huang, G., Chen, F., Wei, D., Zhang, X., & Chen, G. (2010). Biodiesel
production by microalgal biotechnology. Applied Energy, 87(1),
38–46.
Karimi, K., Emtiazi, G., & Taherzadeh, M. J. (2006). Ethanol
production from dilute-acid pretreated rice straw by simultaneous
saccharification and fermentation with Mucor indicus, Rhizopus
oryzae, and Saccharomyces cerevisiae. Enzyme and Microbial
Technology, 40(1), 138–144.
Karthika, K., Arun, A. B., & Rekha, P. D. (2012). Enzymatic
hydrolysis and characterization of lignocellulosic biomass exposed
to electron beam irradiation. Carbohydrate Polymers, 90(2), 1038–
1045.
Kemppainen, K., Inkinen, J., Uusitalo, J., Nakari-Setälä, T., &
Siika-aho, M. (2012). Hot water extraction and steam explosion
as pretreatments for ethanol production from spruce bark. Bioresource Technology, 117, 131–139.
Kim, S. B., Kim, J. S., Lee, J. H., Kang, S. W., Park, C., & Kim, S. W.
(2011). Pretreatment of rice straw by proton beam irradiation for
efficient enzyme digestibility. Applied Biochemistry and Biotechnology, 164(7), 1183–1191.
Kim, J. H., Lee, J. C., & Pak, J. C. (2011). Feasibility of producing
ethanol from food waste. Waste Management, 31(9–10), 2121–
2125.
Kim, S. B., Lee, S. J., Jang, E. J., Han, S. O., Park, C., & Kim, S. W.
(2012). Sugar recovery from rice straw by dilute acid pretreatment.
Journal of Industrial and Engineering Chemistry, 18(1), 183–187.
Kim, S. B., Cui, C., Lee, J. H., Lee, S. J., Ahn, D. J., Park, C., Kim,
J. S., & Kim, S. W. (2013a). Rapid analysis of barley straw before
and after dilute sulfuric acid pretreatment by photoluminescence.
Bioresource technology, 146, 789–793.
Kim, S. B., Kim, E., Yoo, H. Y., Kang, M., Kang, S. W., Park, C., Kim,
J. S., & Kim, S. W. (2013b). Reutilization of carbon sources
through sugar recovery from waste rice straw. Renewable Energy,
53, 43–48.
Kim, S. B., Lee, S. J., Lee, J. H., Jung, Y. R., Thapa, L. P., Kim, J. S.,
Um, Y., Park, C., & Kim, S. W. (2013c). Pretreatment of rice straw
with combined process using dilute sulfuric acid and aqueous
ammonia. Biotechnology for Biofuels, 6(1), 109.
Koonin, S. E. (2006). Getting serious about biofuels, 435–435.
Krawczyk, T. (1996). Biodiesel-alternative fuel makes inroads but
hurdles remain. Inform, 7, 801–815.
Lang, X., Dalai, A. K., Bakhshi, N. N., Reaney, M. J., & Hertz, P. B.
(2001). Preparation and characterization of bio-diesels from various
bio-oils. Bioresource Technology, 80(1), 53–62.
Leong, S. Y., Mohamed Kutty, S. R., Malakahmad, A., & Tan, C. K.
(2016). Feasibility study of biodiesel production using lipids of
Hermetia illucens larva fed with organic waste. Waste Management,
47, 84–90.
Li, Q., Zheng, L., Qiu, N., Cai, H., Tomberlin, J. K., & Ziniu, Yu.
(2011). Bioconversion of dairy manure by black soldier fly
(Diptera: Stratiomyidae) for biodiesel and sugar production. Waste
Management, 31(6), 1316–1320.
Limayem, A., & Ricke, S. C. (2012). Lignocellulosic biomass for
bioethanol production: Current perspectives, potential issues and
future prospects. Progress in Energy and Combustion Science, 38
(4), 449–467.
Lu, H., Liu, Y., Zhou, H., Yang, Y., Chen, M., & Liang, B. (2009).
Production of biodiesel from Jatropha curcas L. oil. Computers &
Chemical Engineering, 33(5), 1091–1096.
Michaels, Ted. (2007). The 2007 IWSA directory of waste-to-energy
plants. Integrated Waste Services Association, 12, 32–45.
Monavari, S., Galbe, M., & Zacchi, G. (2009). Impact of impregnation
time and chip size on sugar yield in pretreatment of softwood for
ethanol production. Bioresource Technology, 100(24), 6312–6316.
Nakayama, R.-i., & Imai, M. (2013). Promising ultrasonic irradiation
pretreatment for enzymatic hydrolysis of Kenaf. Journal of
Environmental Chemical Engineering, 1(4), 1131–1136.
Oliveira, L. S., & Franca, A. S. (2009). From solid biowastes to liquid
biofuels. Agriculture Issues and Policies Series, 265.
Ozkurt, I. (2009). Qualifying of safflower and algae for energy. Energy
Education Science and Technology Part A-Energy Science and
Research, 23(1–2), 145–151.
Cho, H. Uk., & Park, J. M. (2018). Biodiesel production by various
oleaginous microorganisms from organic wastes. Bioresource
Technology, 256, 502–508.
Phalan, B. (2009). The social and environmental impacts of biofuels in
Asia: an overview. Applied Energy, 86, S21–S29.
Qiul, J., Fan, X., & Zou, H. (2011). Development of biodiesel from
inedible feedstock through various production processes. Review
Chemistry and Technology of Fuels and Oils, 47(2), 102.
Ragauskas, A. J., Williams, C. K., Davison, B. H., Britovsek, G.,
Cairney, J., Eckert, C. A., & Frederick, W. J. et al. (2006). The path
forward for biofuels and biomaterials. Science, 311(5760), 484–
489.
Saxena, R. C., Adhikari, D. K., & Goyal, H. B. (2009). Biomass-based
energy fuel through biochemical routes: A review. Renewable and
Sustainable Energy Reviews, 13(1), 167–178.
Selim, M. Y. E. (2009). Reducing the viscosity of Jojoba Methyl Ester
diesel fuel and effects on diesel engine performance and roughness.
Energy Conversion and Management, 50(7), 1781–1788.
Sheppard, D. C., Larry Newton, G., Thompson, S. A., & Savage, S.
(1994). A value added manure management system using the black
soldier fly. Bioresource Technology, 50(3), 275–279.
Sinha, S., Agarwal, A. K., & Garg, S. (2008). Biodiesel development
from rice bran oil: Transesterification process optimization and fuel
characterization. Energy Conversion and Management, 49(5),
1248–1257.
Tilman, D., Socolow, R., Foley, J. A., Hill, J., Larson, E., Lynd, L., &
Pacala S. et al. (2009). Beneficial biofuels—the food, energy, and
environment trilemma. Science, 325(5938), 270–271.
Ulusoy, Y., Arslan, R., & Kaplan, C. (2009). Emission characteristics of
sunflower oil methyl ester. Energy Sources, Part A433A: Recovery,
Utilization, and Environmental Effects+A465, 31(11), 906–910.
Veljković, V. B., Lakićević, S. H., Stamenković, O. S., Todorović, Z.
B., & Lazić, M. L. (2006). Biodiesel production from tobacco
(Nicotiana tabacum L.) seed oil with a high content of free fatty
acids. Fuel, 85(17–18), 2671–2675.
Viikari, L., Vehmaanperä, J., & Koivula, A. (2012). Lignocellulosic
ethanol: from science to industry. Biomass and Bioenergy, 46, 13–24.
Wang, Y., Shiyi, O., Liu, P., Xue, F., & Tang, S. (2006). Comparison of
two different processes to synthesize biodiesel by waste cooking oil.
Journal of Molecular Catalysis A: Chemical, 252(1–2), 107–112.
392
T. Sahoo et al.
(2), 219–224.
Frąc, M., & Ziemiñski, K. (2012). Methane fermentation process for
utilization of organic waste. International agrophysics, 26(3).
Ghadge, S. V., & Raheman, H. (2005). Biodiesel production from
mahua (Madhuca indica) oil having high free fatty acids. Biomass
and Bioenergy, 28(6), 601–605.
Gui, M. M., Lee, K. T., & Bhatia, S. (2008). Feasibility of edible oil vs.
non-edible oil vs. waste edible oil as biodiesel feedstock. Energy, 33
(11), 1646–1653.
Hauser, V. L., Weand, B. L., & Gill, M. D. (2001). Natural covers for
landfills and buried waste. Journal of Environmental Engineering,
127(9), 768–775.
Hill, J., Nelson, E., Tilman, D., Polasky, S., & Tiffany, D. (2006).
Environmental, economic, and energetic costs and benefits of
biodiesel and ethanol biofuels. Proceedings of the National
Academy of Sciences, 103(30), 11206–11210.
Huang, G., Chen, F., Wei, D., Zhang, X., & Chen, G. (2010). Biodiesel
production by microalgal biotechnology. Applied Energy, 87(1),
38–46.
Karimi, K., Emtiazi, G., & Taherzadeh, M. J. (2006). Ethanol
production from dilute-acid pretreated rice straw by simultaneous
saccharification and fermentation with Mucor indicus, Rhizopus
oryzae, and Saccharomyces cerevisiae. Enzyme and Microbial
Technology, 40(1), 138–144.
Karthika, K., Arun, A. B., & Rekha, P. D. (2012). Enzymatic
hydrolysis and characterization of lignocellulosic biomass exposed
to electron beam irradiation. Carbohydrate Polymers, 90(2), 1038–
1045.
Kemppainen, K., Inkinen, J., Uusitalo, J., Nakari-Setälä, T., &
Siika-aho, M. (2012). Hot water extraction and steam explosion
as pretreatments for ethanol production from spruce bark. Bioresource Technology, 117, 131–139.
Kim, S. B., Kim, J. S., Lee, J. H., Kang, S. W., Park, C., & Kim, S. W.
(2011). Pretreatment of rice straw by proton beam irradiation for
efficient enzyme digestibility. Applied Biochemistry and Biotechnology, 164(7), 1183–1191.
Kim, J. H., Lee, J. C., & Pak, J. C. (2011). Feasibility of producing
ethanol from food waste. Waste Management, 31(9–10), 2121–
2125.
Kim, S. B., Lee, S. J., Jang, E. J., Han, S. O., Park, C., & Kim, S. W.
(2012). Sugar recovery from rice straw by dilute acid pretreatment.
Journal of Industrial and Engineering Chemistry, 18(1), 183–187.
Kim, S. B., Cui, C., Lee, J. H., Lee, S. J., Ahn, D. J., Park, C., Kim,
J. S., & Kim, S. W. (2013a). Rapid analysis of barley straw before
and after dilute sulfuric acid pretreatment by photoluminescence.
Bioresource technology, 146, 789–793.
Kim, S. B., Kim, E., Yoo, H. Y., Kang, M., Kang, S. W., Park, C., Kim,
J. S., & Kim, S. W. (2013b). Reutilization of carbon sources
through sugar recovery from waste rice straw. Renewable Energy,
53, 43–48.
Kim, S. B., Lee, S. J., Lee, J. H., Jung, Y. R., Thapa, L. P., Kim, J. S.,
Um, Y., Park, C., & Kim, S. W. (2013c). Pretreatment of rice straw
with combined process using dilute sulfuric acid and aqueous
ammonia. Biotechnology for Biofuels, 6(1), 109.
Koonin, S. E. (2006). Getting serious about biofuels, 435–435.
Krawczyk, T. (1996). Biodiesel-alternative fuel makes inroads but
hurdles remain. Inform, 7, 801–815.
Lang, X., Dalai, A. K., Bakhshi, N. N., Reaney, M. J., & Hertz, P. B.
(2001). Preparation and characterization of bio-diesels from various
bio-oils. Bioresource Technology, 80(1), 53–62.
Leong, S. Y., Mohamed Kutty, S. R., Malakahmad, A., & Tan, C. K.
(2016). Feasibility study of biodiesel production using lipids of
Hermetia illucens larva fed with organic waste. Waste Management,
47, 84–90.
Li, Q., Zheng, L., Qiu, N., Cai, H., Tomberlin, J. K., & Ziniu, Yu.
(2011). Bioconversion of dairy manure by black soldier fly
(Diptera: Stratiomyidae) for biodiesel and sugar production. Waste
Management, 31(6), 1316–1320.
Limayem, A., & Ricke, S. C. (2012). Lignocellulosic biomass for
bioethanol production: Current perspectives, potential issues and
future prospects. Progress in Energy and Combustion Science, 38
(4), 449–467.
Lu, H., Liu, Y., Zhou, H., Yang, Y., Chen, M., & Liang, B. (2009).
Production of biodiesel from Jatropha curcas L. oil. Computers &
Chemical Engineering, 33(5), 1091–1096.
Michaels, Ted. (2007). The 2007 IWSA directory of waste-to-energy
plants. Integrated Waste Services Association, 12, 32–45.
Monavari, S., Galbe, M., & Zacchi, G. (2009). Impact of impregnation
time and chip size on sugar yield in pretreatment of softwood for
ethanol production. Bioresource Technology, 100(24), 6312–6316.
Nakayama, R.-i., & Imai, M. (2013). Promising ultrasonic irradiation
pretreatment for enzymatic hydrolysis of Kenaf. Journal of
Environmental Chemical Engineering, 1(4), 1131–1136.
Oliveira, L. S., & Franca, A. S. (2009). From solid biowastes to liquid
biofuels. Agriculture Issues and Policies Series, 265.
Ozkurt, I. (2009). Qualifying of safflower and algae for energy. Energy
Education Science and Technology Part A-Energy Science and
Research, 23(1–2), 145–151.
Cho, H. Uk., & Park, J. M. (2018). Biodiesel production by various
oleaginous microorganisms from organic wastes. Bioresource
Technology, 256, 502–508.
Phalan, B. (2009). The social and environmental impacts of biofuels in
Asia: an overview. Applied Energy, 86, S21–S29.
Qiul, J., Fan, X., & Zou, H. (2011). Development of biodiesel from
inedible feedstock through various production processes. Review
Chemistry and Technology of Fuels and Oils, 47(2), 102.
Ragauskas, A. J., Williams, C. K., Davison, B. H., Britovsek, G.,
Cairney, J., Eckert, C. A., & Frederick, W. J. et al. (2006). The path
forward for biofuels and biomaterials. Science, 311(5760), 484–
489.
Saxena, R. C., Adhikari, D. K., & Goyal, H. B. (2009). Biomass-based
energy fuel through biochemical routes: A review. Renewable and
Sustainable Energy Reviews, 13(1), 167–178.
Selim, M. Y. E. (2009). Reducing the viscosity of Jojoba Methyl Ester
diesel fuel and effects on diesel engine performance and roughness.
Energy Conversion and Management, 50(7), 1781–1788.
Sheppard, D. C., Larry Newton, G., Thompson, S. A., & Savage, S.
(1994). A value added manure management system using the black
soldier fly. Bioresource Technology, 50(3), 275–279.
Sinha, S., Agarwal, A. K., & Garg, S. (2008). Biodiesel development
from rice bran oil: Transesterification process optimization and fuel
characterization. Energy Conversion and Management, 49(5),
1248–1257.
Tilman, D., Socolow, R., Foley, J. A., Hill, J., Larson, E., Lynd, L., &
Pacala S. et al. (2009). Beneficial biofuels—the food, energy, and
environment trilemma. Science, 325(5938), 270–271.
Ulusoy, Y., Arslan, R., & Kaplan, C. (2009). Emission characteristics of
sunflower oil methyl ester. Energy Sources, Part A433A: Recovery,
Utilization, and Environmental Effects+A465, 31(11), 906–910.
Veljković, V. B., Lakićević, S. H., Stamenković, O. S., Todorović, Z.
B., & Lazić, M. L. (2006). Biodiesel production from tobacco
(Nicotiana tabacum L.) seed oil with a high content of free fatty
acids. Fuel, 85(17–18), 2671–2675.
Viikari, L., Vehmaanperä, J., & Koivula, A. (2012). Lignocellulosic
ethanol: from science to industry. Biomass and Bioenergy, 46, 13–24.
Wang, Y., Shiyi, O., Liu, P., Xue, F., & Tang, S. (2006). Comparison of
two different processes to synthesize biodiesel by waste cooking oil.
Journal of Molecular Catalysis A: Chemical, 252(1–2), 107–112.
392
T. Sahoo et al.
