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Role of Biogas and Biochar Palm Oil Residues for Reduction of Greenhouse Gas Emissions in the Biodiesel Production

机译:生物糖和生物炭棕榈油残余物的作用降低了生物柴油生产中温室气体排放量

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Greenhouse gas (GHG) emissions which related to palm oil production are tend to increase due to the increasing of palm oil demand and the expansion process of oil palm production worldwide. The specific objective of the study was to assess the contribution of innovative biomass processes as effort to improve the energy balance and reduce the greenhouse gas emissions (GHG) associated with biodiesel made from palm oil. The GHG was calculated that GHG emission savings up to 63.14 % in total. GHG emissions from biochar using empty fruit bunches (EFB) resulted to 2.95 % from total GHG emissions, and biogas from palm oil mill effluent (POME) produced 74.22 % of the total GHG emissions from palm oil based biodiesel production. Innovative technologies and processes for the treatment of by-products can contribute significantly for meeting the emission targets. Build upon the research, resulted to the recommendation to use biochar and capturing methane from POME. The research result was also concerned that emission savings are annulled in the case of land use change (LUC) and oil palm production on peatland. Based on this research resulted to recommended that the utilization of waste from oil palm cultivation on peatland which was disuse and the capturing of methane from POME
机译:由于棕榈油需求的增加以及全球油棕生产的扩建过程,与棕榈油产量相关的温室气体(GHG)排放趋于增加。该研究的具体目标是评估创新生物量工艺的贡献,以改善与由棕榈油制成的生物柴油相关的温室气体排放(GHG)。计算温室气​​体总计总计为GHG排放量高达63.14%。使用空果束(EFB)的生物炭(EFB)的温室气体排放导致总温室气体排放量为2.95%,棕榈油厂流出物(Pome)的沼气从基于棕榈油的生物柴油生产产生的74.22%的温室气体排放量。用于治疗副产品的创新技术和工艺可以显着促进满足排放目标。在研究中建立,导致建议使用生物炭和捕获来自POME的甲烷。研究结果也担心排放储蓄在土地利用变化(LUC)和泥炭地油棕榈生产方面取消了储蓄。基于这项研究,建议利用油棕种植废弃物,泥炭地是废弃的,甲烷捕获来自沼泽

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