Acknowledgements
Authors would like to thank Biofuel Research Team (BRTeam) for
supporting this work.
References
1. Quinn JC, Davis R (2015) The potentials and
challenges of algae based biofuels: a review of
the techno-economic, life cycle, and resource
assessment modeling. Bioresour Technol
184:444–452
2. Hosseinzadeh-Bandbafha H, Tabatabaei M,
Aghbashlo M et al (2018) A comprehensive
review on the environmental impacts of diesel/biodiesel additives. Energ Conver Manage
174:579–614
3. United States (2007) Energy independence
and security act of 2007. US Government
Printing Office
4. Pragya N, Pandey KK (2016) Life cycle assessment of green diesel production from microalgae. Renew Energy 86:623–632
5. Yang J, Li X, Hu H et al (2011) Growth and
lipid accumulation properties of a freshwater
microalga, Chlorella ellipsoidea YJ1, in domestic secondary effluents. Appl Energy
88:3295–3299
6. Jorquera O, Kiperstok A, Sales EA et al (2010)
Comparative energy life-cycle analyses of
microalgal biomass production in open ponds
and photobioreactors. Bioresour Technol
101:1406–1413
7. Talebi AF, Tabatabaei M, Aghbashlo M (2018)
Recent patents on biofuels from microalgae.
In: Energy from microalgae. Springer,
New York, pp 291–306
8. Hu Q, Sommerfeld M, Jarvis E et al (2008)
Microalgal triacylglycerols as feedstocks for
biofuel production: perspectives and advances.
Plant J 54:621–639
9. Talebi AF, Mohtashami SK, Tabatabaei M et al
(2013) Fatty acids profiling: a selective criterion for screening microalgae strains for biodiesel production. Algal Res 2:258–267
10. Heilmann SM, Jader LR, Harned LA et al
(2011) Hydrothermal carbonization of microalgae II. Fatty acid, char, and algal nutrient
products. Appl Energy 88:3286–3290
11. Collet P, He ´lias A, Lardon L et al (2015)
Recommendations for life cycle assessment of
algal fuels. Appl Energy 154:1089–1102
12. Fortier MOP, Roberts GW, Stagg-Williams
SM, Sturm BSM (2017) Determination of the
life cycle climate change impacts of land use
and albedo change in algal biofuel production.
Algal Res 28:270–281
13. Dutta S, Neto F, Coelho MC (2016) Microalgae biofuels: a comparative study on technoeconomic analysis & life-cycle assessment.
Algal Res 20:44–52
14. Roostaei J, Zhang Y (2017) Spatially explicit
life cycle assessment: opportunities and challenges of wastewater-based algal biofuels in
the United States. Algal Res 24:395–402
15. Cherubini F, Bird ND, Cowie A et al (2009)
Energy-and greenhouse gas-based LCA of biofuel and bioenergy systems: key issues, ranges
and recommendations. Resour Conserv Recycl
53:434–447
16. Clarens AF, Resurreccion EP, White MA,
Colosi LM (2010) Environmental life cycle
comparison of algae to other bioenergy feedstocks. Environ Sci Technol 44:1813–1819
17. Resurreccion EP, Colosi LM, White MA, Clarens AF (2012) Comparison of algae cultivation methods for bioenergy production using a
combined life cycle assessment and life cycle
costing
approach.
Bioresour
Technol
126:298–306
18. Bauer SK, Grotz LS, Connelly EB, Colosi LM
(2016) Reevaluation of the global warming
impacts of algae-derived biofuels to account
for possible contributions of nitrous oxide.
Bioresour Technol 218:196–201
19. Tabatabaei M, Tohidfar M, Jouzani GS et al
(2011) Biodiesel production from genetically
engineered microalgae: future of bioenergy in
Iran.
Renew
Sustain
Energy
Rev
15:1918–1927
20. Martı ´nez-Rocamora A, Solı ´s-Guzma ´n J, Marrero M (2016) LCA databases focused on construction materials: a review. Renew Sustain
Energy Rev 58:565–573
21. Collet P, Lardon L, He ´lias A et al (2014) Biodiesel from microalgae—life cycle assessment
and recommendations for potential improvements. Renew Energy 71:525–533
22. ISO (2006) 14044 International standard.
Environmental management–life cycle assessment–principles and framework. International
Organisation for Standardization, Geneva
Life Cycle Analysis
149
Authors would like to thank Biofuel Research Team (BRTeam) for
supporting this work.
References
1. Quinn JC, Davis R (2015) The potentials and
challenges of algae based biofuels: a review of
the techno-economic, life cycle, and resource
assessment modeling. Bioresour Technol
184:444–452
2. Hosseinzadeh-Bandbafha H, Tabatabaei M,
Aghbashlo M et al (2018) A comprehensive
review on the environmental impacts of diesel/biodiesel additives. Energ Conver Manage
174:579–614
3. United States (2007) Energy independence
and security act of 2007. US Government
Printing Office
4. Pragya N, Pandey KK (2016) Life cycle assessment of green diesel production from microalgae. Renew Energy 86:623–632
5. Yang J, Li X, Hu H et al (2011) Growth and
lipid accumulation properties of a freshwater
microalga, Chlorella ellipsoidea YJ1, in domestic secondary effluents. Appl Energy
88:3295–3299
6. Jorquera O, Kiperstok A, Sales EA et al (2010)
Comparative energy life-cycle analyses of
microalgal biomass production in open ponds
and photobioreactors. Bioresour Technol
101:1406–1413
7. Talebi AF, Tabatabaei M, Aghbashlo M (2018)
Recent patents on biofuels from microalgae.
In: Energy from microalgae. Springer,
New York, pp 291–306
8. Hu Q, Sommerfeld M, Jarvis E et al (2008)
Microalgal triacylglycerols as feedstocks for
biofuel production: perspectives and advances.
Plant J 54:621–639
9. Talebi AF, Mohtashami SK, Tabatabaei M et al
(2013) Fatty acids profiling: a selective criterion for screening microalgae strains for biodiesel production. Algal Res 2:258–267
10. Heilmann SM, Jader LR, Harned LA et al
(2011) Hydrothermal carbonization of microalgae II. Fatty acid, char, and algal nutrient
products. Appl Energy 88:3286–3290
11. Collet P, He ´lias A, Lardon L et al (2015)
Recommendations for life cycle assessment of
algal fuels. Appl Energy 154:1089–1102
12. Fortier MOP, Roberts GW, Stagg-Williams
SM, Sturm BSM (2017) Determination of the
life cycle climate change impacts of land use
and albedo change in algal biofuel production.
Algal Res 28:270–281
13. Dutta S, Neto F, Coelho MC (2016) Microalgae biofuels: a comparative study on technoeconomic analysis & life-cycle assessment.
Algal Res 20:44–52
14. Roostaei J, Zhang Y (2017) Spatially explicit
life cycle assessment: opportunities and challenges of wastewater-based algal biofuels in
the United States. Algal Res 24:395–402
15. Cherubini F, Bird ND, Cowie A et al (2009)
Energy-and greenhouse gas-based LCA of biofuel and bioenergy systems: key issues, ranges
and recommendations. Resour Conserv Recycl
53:434–447
16. Clarens AF, Resurreccion EP, White MA,
Colosi LM (2010) Environmental life cycle
comparison of algae to other bioenergy feedstocks. Environ Sci Technol 44:1813–1819
17. Resurreccion EP, Colosi LM, White MA, Clarens AF (2012) Comparison of algae cultivation methods for bioenergy production using a
combined life cycle assessment and life cycle
costing
approach.
Bioresour
Technol
126:298–306
18. Bauer SK, Grotz LS, Connelly EB, Colosi LM
(2016) Reevaluation of the global warming
impacts of algae-derived biofuels to account
for possible contributions of nitrous oxide.
Bioresour Technol 218:196–201
19. Tabatabaei M, Tohidfar M, Jouzani GS et al
(2011) Biodiesel production from genetically
engineered microalgae: future of bioenergy in
Iran.
Renew
Sustain
Energy
Rev
15:1918–1927
20. Martı ´nez-Rocamora A, Solı ´s-Guzma ´n J, Marrero M (2016) LCA databases focused on construction materials: a review. Renew Sustain
Energy Rev 58:565–573
21. Collet P, Lardon L, He ´lias A et al (2014) Biodiesel from microalgae—life cycle assessment
and recommendations for potential improvements. Renew Energy 71:525–533
22. ISO (2006) 14044 International standard.
Environmental management–life cycle assessment–principles and framework. International
Organisation for Standardization, Geneva
Life Cycle Analysis
149
