12
Japan Institute of Energy (2002) Asian biomass handbook: a guide for biomass production and
utilization. http://www.build-a-biogas-plant.com/PDF/AsianBiomassHandbook2008.pdf
Jeng SL, Zainuddin AM, Sharifah RWA, Haslenda H (2012) A review on utilisation of biomass
from rice industry as a source of renewable energy. Renew Sust Energ Rev 16:3084–3094
Jenkins BM (1998) Physical properties of biomass. In: Kitani O, Hall CW (eds) Biomass handbook. Gordon and Breach, New York
Jenkins BM, Bakker RR, Wei JB (1996) On the properties of washed straw. Biomass Bioenergy
10(4):177–200
Kargbo F, Xing J, Zhang Y (2010) Property analysis and pretreatment of rice straw for energy use
in grain drying: a review. Agric Biol J N Am 1(3):195–200
Liu Z, Xu A, Long B (2011) Energy from combustion of rice straw: status and challenges to China.
Energy Power Eng 3:325–331
Mandal KG, Misra AK, Hati KM, Bandyopadhyay KK, Ghosh PK, Mohanty M (2004) Rice
residue management options and effects on soil properties and crop productivity. Food Agric
Environ 2:224–231
Mando M (2013) Direct combustion of biomass. Book chapter. In: Biomass combustion science,
technology and engineering. Erscheinungsort nicht ermittelbar: Woodhead Publishing
Mansarav KG, Ghaly AE (1997) Physical and thermochemical properties of rice husk. Energy
Sources J 19(9). https://doi.org/10.1080/00908319708908904
Migo MVP (2019) Optimization and life cycle assessment of the direct combustion of rice straw
using a small scale, stationary grate furnace for heat generation. Unpublished Masters thesis.
University of the Philippines Los Baños
Munder S (2013) Improving thermal conversion properties of rice straw by briquetting. Masters
thesis. University of Hohenheim
Ngi J, Ayoade JA, Oluremi OIA (2006) Evaluation of dried cassava leaf meal and maize offal as
supplement for goats fed rice straw in dry season. Livest Res Rural Dev 18(9). https://www.
feedipedia.org/node/3008
Ngo-T-T-Truc, Zenaida MS, Maria VOE, Enrique PP, Corazon LR, Florencia GP (2012) Farmers’
awareness and factors affecting adoption of rapid composting in Mekong Delta, Vietnam and
Central Luzon, Philippines. J Environ Sci Manag 15(2):59–73
Nguyen-V-Hieu, Nguyen-T-Nghi, Le-Q-Vinh, Le-M-Anh, Nguyen-V-Hung, Gummert M (2018)
Developing densified products to reduce transportation costs and improve the quality of rice
straw feedstocks for cattle feeding. J Viet Environ 10(1). https://oa.slub-dresden.de/ejournals/
jve/article/view/2919
Nguyen-V-Hung, Topno S, Balingbing C, Nguyen-V-C-Ngan, Roder M, Quilty J, Jamieson C,
Thornley P, Gummert M (2016a) Generating a positive energy balance from using rice straw
for anaerobic digestion. Energy Rep 2:117–122
Nguyen-V-Hung, Nguyen-D-Canh, Tran-V-Tuan, Hau-D-Hoa, Gummert M (2016b) 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-V-Hung, Carlito B, Quilty J, Bojern S, Demont M, Gummert M (2017) Processing rice
straw and rice husk as co-products. In: Sasaki T (ed) Achieving sustainable cultivation of rice,
vol 2. Burleigh Dodds Science Publishing, Cambridge, pp 121–148
Peripolli V, Barcellos JO, Prates ÊR, Mcmanus C, Silva LP, Stella LA, Lopes RB (2016) Nutritional
value of baled rice straw for ruminant feed. Rev Bras Zootec 45(7):392–399
Rozainee M, Ngo SP, Salema AA, Tan KG, Aiffin M et al (2008) Effect of fluidising velocity on
the combustion of rice husk in a bench-scale fluidised bed combustor for the production of
amorphous rice husk ash. Bioresour Technol 99:703–713
Sander BO, Samson M, Buresh RJ (2014) Methane and nitrous oxide emissions from flooded
rice fields as affected by water and straw management between rice crops. Geoderma
235–236:355–362
Sarnklong C, Cone JW, Pellikaan W, Hendriks WH (2010) Utilization of rice straw and different treatments to improve its feed value for ruminants: a review. Asian-Aust J Anim Sci
23(5):680–692
N. V. Hung et al.
Japan Institute of Energy (2002) Asian biomass handbook: a guide for biomass production and
utilization. http://www.build-a-biogas-plant.com/PDF/AsianBiomassHandbook2008.pdf
Jeng SL, Zainuddin AM, Sharifah RWA, Haslenda H (2012) A review on utilisation of biomass
from rice industry as a source of renewable energy. Renew Sust Energ Rev 16:3084–3094
Jenkins BM (1998) Physical properties of biomass. In: Kitani O, Hall CW (eds) Biomass handbook. Gordon and Breach, New York
Jenkins BM, Bakker RR, Wei JB (1996) On the properties of washed straw. Biomass Bioenergy
10(4):177–200
Kargbo F, Xing J, Zhang Y (2010) Property analysis and pretreatment of rice straw for energy use
in grain drying: a review. Agric Biol J N Am 1(3):195–200
Liu Z, Xu A, Long B (2011) Energy from combustion of rice straw: status and challenges to China.
Energy Power Eng 3:325–331
Mandal KG, Misra AK, Hati KM, Bandyopadhyay KK, Ghosh PK, Mohanty M (2004) Rice
residue management options and effects on soil properties and crop productivity. Food Agric
Environ 2:224–231
Mando M (2013) Direct combustion of biomass. Book chapter. In: Biomass combustion science,
technology and engineering. Erscheinungsort nicht ermittelbar: Woodhead Publishing
Mansarav KG, Ghaly AE (1997) Physical and thermochemical properties of rice husk. Energy
Sources J 19(9). https://doi.org/10.1080/00908319708908904
Migo MVP (2019) Optimization and life cycle assessment of the direct combustion of rice straw
using a small scale, stationary grate furnace for heat generation. Unpublished Masters thesis.
University of the Philippines Los Baños
Munder S (2013) Improving thermal conversion properties of rice straw by briquetting. Masters
thesis. University of Hohenheim
Ngi J, Ayoade JA, Oluremi OIA (2006) Evaluation of dried cassava leaf meal and maize offal as
supplement for goats fed rice straw in dry season. Livest Res Rural Dev 18(9). https://www.
feedipedia.org/node/3008
Ngo-T-T-Truc, Zenaida MS, Maria VOE, Enrique PP, Corazon LR, Florencia GP (2012) Farmers’
awareness and factors affecting adoption of rapid composting in Mekong Delta, Vietnam and
Central Luzon, Philippines. J Environ Sci Manag 15(2):59–73
Nguyen-V-Hieu, Nguyen-T-Nghi, Le-Q-Vinh, Le-M-Anh, Nguyen-V-Hung, Gummert M (2018)
Developing densified products to reduce transportation costs and improve the quality of rice
straw feedstocks for cattle feeding. J Viet Environ 10(1). https://oa.slub-dresden.de/ejournals/
jve/article/view/2919
Nguyen-V-Hung, Topno S, Balingbing C, Nguyen-V-C-Ngan, Roder M, Quilty J, Jamieson C,
Thornley P, Gummert M (2016a) Generating a positive energy balance from using rice straw
for anaerobic digestion. Energy Rep 2:117–122
Nguyen-V-Hung, Nguyen-D-Canh, Tran-V-Tuan, Hau-D-Hoa, Gummert M (2016b) 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-V-Hung, Carlito B, Quilty J, Bojern S, Demont M, Gummert M (2017) Processing rice
straw and rice husk as co-products. In: Sasaki T (ed) Achieving sustainable cultivation of rice,
vol 2. Burleigh Dodds Science Publishing, Cambridge, pp 121–148
Peripolli V, Barcellos JO, Prates ÊR, Mcmanus C, Silva LP, Stella LA, Lopes RB (2016) Nutritional
value of baled rice straw for ruminant feed. Rev Bras Zootec 45(7):392–399
Rozainee M, Ngo SP, Salema AA, Tan KG, Aiffin M et al (2008) Effect of fluidising velocity on
the combustion of rice husk in a bench-scale fluidised bed combustor for the production of
amorphous rice husk ash. Bioresour Technol 99:703–713
Sander BO, Samson M, Buresh RJ (2014) Methane and nitrous oxide emissions from flooded
rice fields as affected by water and straw management between rice crops. Geoderma
235–236:355–362
Sarnklong C, Cone JW, Pellikaan W, Hendriks WH (2010) Utilization of rice straw and different treatments to improve its feed value for ruminants: a review. Asian-Aust J Anim Sci
23(5):680–692
N. V. Hung et al.
