Page 26 - Materials Chemistry, Second Edition
P. 26
Importance of Life Cycle Assessment 11
Nigam PS, Singh A (2011) Production of liquid biofuels from renewable resources. Prog Energy
Combust Sci 37:52–68
Pant D, Singh A, Bogaert GV, Diels L, Vanbroekhoven K (2011) An introduction to the life cycle
assessment (LCA) of bioelectrochemical systems (BES) for sustainable energy and product
generation: relevance and key aspects. Renew Sustain Energ Rev 15:1305–1313
Pant D, Singh A, Bogaert GV, Olsen SI, Nigam PS, Diels L, Vanbroekhoven K (2012)
Bioelectrochemical systems (BES) for sustainable energy production and product recovery
from organic wastes and industrial wastewaters. RSC Adv 2:1248–1263
Phalan B (2009) The social and environmental impacts of biofuels in Asia: an overview. Appl
Energy 86:S21–S29
Prasad S, Singh A, Joshi HC (2007a) Ethanol as an alternative fuel from agricultural, industrial
and urban residues. Resour Conserv Recycl 50:1–39
Prasad S, Singh A, Jain N, Joshi HC (2007b) Ethanol production from sweet sorghum syrup for
utilization as automotive fuel in India. Energ Fuels 21(4):2415–2420
Reinhard J, Zah R (2011) Consequential life cycle assessment of the environmental impacts of an
increased rapemethylester (RME) production in Switzerland. Biomass Bioenerg
35:2361–2373
Ribeiro FM, Silva GA (2010) Life-cycle inventory for hydroelectric generation: a Brazilian case
study. J Cleaner Prod 18(1):44–54
Sheehan JJ (2009) Biofuels and the conundrum of sustainability. Curr Opinion Biotech
20:318–324
Silva Lora EE, Escobar Palacio JC, Rocha MH, Grillo Renó ML, Venturini OJ, del Olmo OA
(2011) Issues to consider, existing tools and constraints in biofuels sustainability assessments.
Energ 36:2097–2110
Singh A, Olsen SI (2011) Critical analysis of biochemical conversion, sustainability and life cycle
assessment of algal biofuels. Applied Energ 88:3548–3555
Singh A, Olsen SI (2012) Key issues in life cycle assessment of biofuels. In: Gopalakrishnan K
et al (eds) Sustainable bioenergy and bioproducts. Green energy and technology. Springer-
Verlag London Limited, London, pp 213–228
Singh A, Pant D, Korres NE, Nizami AS, Prasad S, Murphy JD (2010) Key issues in life cycle
assessment of ethanol production from lignocellulosic biomass: challenges and perspectives.
Bioresourc Technol 101(13):5003–5012
Singh A, Olsen SI, Nigam PS (2011) A viable technology to generate third generation biofuel.
J Chem Tech Biotech 86:1349–1353
Singh A, Pant D, Olsen SI, Nigam PS (2012) Key issues to consider in microalgae based
biodiesel. Energ Edu Sci Technol Part A: Energ Sci Res 29(1):687–700
Steubing B, Zah R, Waeger P, Ludwig C (2010) Bioenergy in Switzerland: assessing the
domestic sustainable biomass potential. Renew Sustain Energy Rev 14:2256–2265
Suri M, Huld TA, Dunlop ED, Ossenbrink HA (2007) Potential of solar electricity generation in
the European union member states and candidate countries. Solar Energ 81(10):1295–1305
Udo de Haes HA, Heijungs R (2007) Life-cycle assessment for energy analysis and management.
Appl Energy 84:817–827
UNCED (1992) Report of the united nation conference on environment and development, vol 1,
Chap. 7
Wang M, Huo H, Arora S (2011) Methods of dealing with co-products of biofuels in life-cycle
analysis and consequent results within the U.S. context. Energy Policy 39(10):5726–5736
Yan J, Lin T (2009) Bio-fuels in Asia. Appl Energy 86:S1–S10
Zah R, Hischier R, Gauch M, Lehmann M, Boni H, Wager P (2007) Life cycle assessment of
energy products: environmental impact assessment of biofuels. Bern: Bundesamt fur Energie,
Bundesamt fur Umwelt, Bundesamt fur Landwirtschaft, p 20