Energy balances and greenhouse gas emissions of palm oil biodiesel in Indonesia

Global Change Biology Bioenergy, Volume 4, Issue 2, March 2012

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Bibliographic Details
Main Authors: Harsono, Soni Sisbudi (Author), PROCHNOW, ANNETTE (Author), GRUNDMANN, PHILIPP (Author), HANSEN, ANJA (Author), HALLMANN, CLAUDIA (Author)
Format: Academic Paper
Published: 2017-03-20T02:10:53Z.
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100 1 0 |a Harsono, Soni Sisbudi  |e author 
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700 1 0 |a PROCHNOW, ANNETTE  |e author 
700 1 0 |a GRUNDMANN, PHILIPP  |e author 
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700 1 0 |a HALLMANN, CLAUDIA  |e author 
245 0 0 |a Energy balances and greenhouse gas emissions of palm oil biodiesel in Indonesia 
260 |c 2017-03-20T02:10:53Z. 
520 |a Global Change Biology Bioenergy, Volume 4, Issue 2, March 2012 
520 |a This study presents a cradle-to-gate assessment of the energy balances and greenhouse gas (GHG) emissions of Indonesian palm oil biodiesel production, including the stages of land-use change (LUC), agricultural phase, transportation, milling, biodiesel processing, and comparing the results from different farming systems, including company plantations and smallholder plantations (either out growers or independent growers) in different locations in Kalimantan and Sumatra of Indonesia. The findings demonstrate that there are considerable differ- ences between the farming systems and the locations in net energy yields (43.6-49.2 GJ t )as well as GHG emissions (1969.6-5626.4 kg CO 2eq t 1 biodiesel yr 1 ). The output to input ratios are positive in all cases. The largest GHG emissions result from LUC effects, followed by the transesterification, fertilizer production, agricultural production processes, milling, and transportation. Ecosystem carbon payback times range from 11 to 42 years. 
546 |a en 
690 |a ecosystem carbon payback time 
690 |a energy balances 
690 |a farming systems 
690 |a greenhouse gas emissions 
690 |a land-use change 
690 |a net energy yield 
690 |a palm oil biodiesel 
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