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Energy balances, greenhouse gas emissions and economics of biochar production from palm oil empty fruit bunches

机译:棕榈油空果串的能量平衡,温室气体排放和生物炭生产的经济性

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This paper presents results from a gate-to-gate analysis of the energy balance, greenhouse gas (GHG) emissions and economic efficiency of biochar production from palm oil empty fruit bunches (EFB). The analysis is based on data obtained from EFB combustion in a slow pyrolysis plant in Selangor, Malaysia. The outputs of the slow pyrolysis plant are biochar, syngas, bio-oil and water vapor. The net energy yield of the biochar produced in the Selangor plant is 11.47 MJ kg~(-1) EFB. The energy content of the biochar produced is higher than the energy required for producing the biochar, i.e. the energy balance of biochar production is positive. The combustion of EFB using diesel fuel has the largest energy demand of 2.31 MJ kg~(-1) EFB in the pyrolysis process. Comparatively smaller amounts of energy are required as electricity (0.39 MJ kg-1 EFB) and for transportation of biochar to the warehouse and the field (0.13 MJ kg~(-1) EFB). The net greenhouse gas emissions of the studied biochar production account for 0.046 kg CO 2-equiv. kg~(-1) EFB yr~(-1) without considering fertilizer substitution effects and carbon accumulation from biochar in the soil. The studied biochar production is profitable where biochar can be sold for at least 533 US-$ t~(-1). Potential measures for improvement are discussed, including higher productivity of biochar production, reduced energy consumption and efficient use of the byproducts from the slow pyrolysis.
机译:本文介绍了对棕榈油空果串(EFB)的能量平衡,温室气体(GHG)排放和生产生物炭的经济效率进行门到门分析的结果。该分析基于从马来西亚雪兰莪州的慢速热解工厂的EFB燃烧获得的数据。慢速热解装置的输出为生物碳,合成气,生物油和水蒸气。雪兰莪工厂生产的生物炭的净能量产量为11.47 MJ kg〜(-1)EFB。产生的生物炭的能量含量高于产生生物炭所需的能量,即,生物炭生产的能量平衡为正。在热解过程中,使用柴油燃烧EFB的最大能量需求为2.31 MJ kg〜(-1)EFB。电力(0.39 MJ kg-1 EFB)以及将生物炭运输到仓库和田地所需的能量相对较少(0.13 MJ kg〜(-1)EFB)。研究的生物炭生产的净温室气体排放量占0.046 kg CO 2当量。 kg〜(-1)EFB yr〜(-1),不考虑肥料替代效应和土壤中生物碳的碳积累。研究的生物炭生产是有利可图的,其中生物炭的售价至少为533美元-t〜(-1)。讨论了可能的改进措施,包括提高生物炭生产的生产率,降低能耗和有效利用缓慢热解产生的副产物。

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