173
Goedkoop M, Spriensma R (2001) The eco-indicator 99, a damage oriented method for life
cycle impact assessment. Pre-Consultant. https://www.pre-sustainability.com/download/
EI99_annexe_v3.pdf
Grassini P, Cassman KG (2011) High-yield maize with large net energy yield and small global
warming intensity. Proc Natl Acad Sci U S A 109(4):1074–1079
Guinée JB (ed) (2004) Handbook on life cycle assessment operational guide to the ISO standards.
Kluwer Academic Publishers, New York
Guinée JB, Gorrée M, Heijungs R, Huppes G, Kleijn R, Koning A, Oers, L, Sleeswijk AW, Suh S,
Udo de Haes HA, Bruijn H, Duin R, Huijbregts MAJ (2001) LCA – An operational guide to
the ISO standards, Final report
IPCC (2006) IPCC Guidelines for national greenhouse gas emission inventory,. Retrieved April 9,
2019 from: https://www.ipcc-nggip.iges.or.jp/support/Primer_2006GLs.pdf
IPCC (2013) Emissions Factor Database. Retrieved January 25, 2019 from: http://www.ghgprotocol.org/Third-Party-Databases/IPCC-Emissions-Factor-Database
Jeroen BG, Gjalt H, Reinout H (2001) Developing an LCA guide for decision support. Retrieved
April 9, 2019 from: https://www.emeraldinsight.com/doi/abs/10.1108/09566160110392416
Kami DM, Barz M, Gheewala SH, Sajjakulnukit B (2012) Environmental and socioeconomic feasibility assessment of rice straw conversion to power and ethanol in Thailand. J Clean Prod
37:29–41
Kool A, Marinussen M, Blonk H (2012) GHG Emissions of N, P, and K fertilizer production, in
LCI data for the calculation tool Feedprint for greenhouse gas emissions of feed production
and utilization. Retrieved January 25, 2019 from: http://www.blonkconsultants.nl/wp-content/
uploads/2016/06/fertilizer_production-D03.pdf
Linquist BA, Anders MM, Adviento-Borbe MA, Chaney RL, Nalley LL, da Rosa EF, van Kessel C
(2015) Reducing greenhouse gas emissions, water use, and grain arsenic levels in rice systems.
Glob Change Biol 21:407–417
Mudahar MS, Hignett TP (1987) Energy requirements, technology, and resources in the fertilizer
sector. In: Helsel ZR (ed.), Energy in World Agriculture 2:26–61
Nguyen VH, Topno S, Balingbing C, Nguyen VCN, Roder M, Quilty J, Jamieson C, Thornley P,
Gummert M (2016) Generating a positive energy balance from using rice straw for anaerobic
digestion. Energy Rep 2016(2):117–122
Nguyen VH, Nguyen DC, Tran VT, Hau DH, Gummert M (2017) Energy efficiency, greenhouse
gas emissions, and cost of rice straw collection in the Mekong River Delta of Vietnam. Field
Crops Res 198:16–22
Nguyen VH, Sander BO, Quilty J, Balingbing C, Castalone AG, Romasanta R, Alberto MCR,
Sandro J, Jamieson C, Gummert M (2019) An assessment of irrigated rice production energy
efficiency and environmental footprint with in-field and off-field rice straw management practices. Energy Efficiency Journal, Springer (under review)
Pimentel D, Pimentel M (2008) Food, energy and society, 3rd edn. CRC Press, Boca Raton, FL
Quilty RJ, McKinley J, Pede VO, Buresh RJ, Correa JTQ, Sandro J (2014) Energy efficiency of
rice production in farmers’ fields and intensively cropped research fields in the Philippines.
Field Crops Res. 168:8–18
Richard CF (1992) Chapter 5, energy analysis for agricultural systems. Energ World Agric 6:45–52
Shafie SM, Masjuki HH, Mahlia TMI (2014) Life cycle assessment of rice straw-based power
generation in Malaysia. Energy 70:401–410
Shie JL, Chang CY, Chen CS, Shaw DG, Chen YH, Kuan WH, Ma HK (2011) Energy life cycle
assessment of rice straw bio-energy derived from potential gasification technologies. Bioresour
Technol 102:6735–6741
Silalertruksa T, Gheewala SH (2013) A comparative LCA of rice straw utilization for fuels and
fertilizer in Thailand. Bioresour Technol 150:412–419
SIMAPRO (2017) SIMAPRO – LCA software. https://www.pre-sustainability.com/
sustainability-consulting/sustainable-practices/custom-sustainability-software
10 Life Cycle Assessment Applied in Rice Production and Residue Management
Goedkoop M, Spriensma R (2001) The eco-indicator 99, a damage oriented method for life
cycle impact assessment. Pre-Consultant. https://www.pre-sustainability.com/download/
EI99_annexe_v3.pdf
Grassini P, Cassman KG (2011) High-yield maize with large net energy yield and small global
warming intensity. Proc Natl Acad Sci U S A 109(4):1074–1079
Guinée JB (ed) (2004) Handbook on life cycle assessment operational guide to the ISO standards.
Kluwer Academic Publishers, New York
Guinée JB, Gorrée M, Heijungs R, Huppes G, Kleijn R, Koning A, Oers, L, Sleeswijk AW, Suh S,
Udo de Haes HA, Bruijn H, Duin R, Huijbregts MAJ (2001) LCA – An operational guide to
the ISO standards, Final report
IPCC (2006) IPCC Guidelines for national greenhouse gas emission inventory,. Retrieved April 9,
2019 from: https://www.ipcc-nggip.iges.or.jp/support/Primer_2006GLs.pdf
IPCC (2013) Emissions Factor Database. Retrieved January 25, 2019 from: http://www.ghgprotocol.org/Third-Party-Databases/IPCC-Emissions-Factor-Database
Jeroen BG, Gjalt H, Reinout H (2001) Developing an LCA guide for decision support. Retrieved
April 9, 2019 from: https://www.emeraldinsight.com/doi/abs/10.1108/09566160110392416
Kami DM, Barz M, Gheewala SH, Sajjakulnukit B (2012) Environmental and socioeconomic feasibility assessment of rice straw conversion to power and ethanol in Thailand. J Clean Prod
37:29–41
Kool A, Marinussen M, Blonk H (2012) GHG Emissions of N, P, and K fertilizer production, in
LCI data for the calculation tool Feedprint for greenhouse gas emissions of feed production
and utilization. Retrieved January 25, 2019 from: http://www.blonkconsultants.nl/wp-content/
uploads/2016/06/fertilizer_production-D03.pdf
Linquist BA, Anders MM, Adviento-Borbe MA, Chaney RL, Nalley LL, da Rosa EF, van Kessel C
(2015) Reducing greenhouse gas emissions, water use, and grain arsenic levels in rice systems.
Glob Change Biol 21:407–417
Mudahar MS, Hignett TP (1987) Energy requirements, technology, and resources in the fertilizer
sector. In: Helsel ZR (ed.), Energy in World Agriculture 2:26–61
Nguyen VH, Topno S, Balingbing C, Nguyen VCN, Roder M, Quilty J, Jamieson C, Thornley P,
Gummert M (2016) Generating a positive energy balance from using rice straw for anaerobic
digestion. Energy Rep 2016(2):117–122
Nguyen VH, Nguyen DC, Tran VT, Hau DH, Gummert M (2017) Energy efficiency, greenhouse
gas emissions, and cost of rice straw collection in the Mekong River Delta of Vietnam. Field
Crops Res 198:16–22
Nguyen VH, Sander BO, Quilty J, Balingbing C, Castalone AG, Romasanta R, Alberto MCR,
Sandro J, Jamieson C, Gummert M (2019) An assessment of irrigated rice production energy
efficiency and environmental footprint with in-field and off-field rice straw management practices. Energy Efficiency Journal, Springer (under review)
Pimentel D, Pimentel M (2008) Food, energy and society, 3rd edn. CRC Press, Boca Raton, FL
Quilty RJ, McKinley J, Pede VO, Buresh RJ, Correa JTQ, Sandro J (2014) Energy efficiency of
rice production in farmers’ fields and intensively cropped research fields in the Philippines.
Field Crops Res. 168:8–18
Richard CF (1992) Chapter 5, energy analysis for agricultural systems. Energ World Agric 6:45–52
Shafie SM, Masjuki HH, Mahlia TMI (2014) Life cycle assessment of rice straw-based power
generation in Malaysia. Energy 70:401–410
Shie JL, Chang CY, Chen CS, Shaw DG, Chen YH, Kuan WH, Ma HK (2011) Energy life cycle
assessment of rice straw bio-energy derived from potential gasification technologies. Bioresour
Technol 102:6735–6741
Silalertruksa T, Gheewala SH (2013) A comparative LCA of rice straw utilization for fuels and
fertilizer in Thailand. Bioresour Technol 150:412–419
SIMAPRO (2017) SIMAPRO – LCA software. https://www.pre-sustainability.com/
sustainability-consulting/sustainable-practices/custom-sustainability-software
10 Life Cycle Assessment Applied in Rice Production and Residue Management
