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Biorefinery for the Production of Biodiesel, Hydrogen and Synthesis Gas Integrated with CHP from Oil Palm in Malaysia

机译:马来西亚油棕生产生物柴油,氢气和合成气与热电联产的生物精炼厂

摘要

Malaysia is presently the world’s largest exporter of palm oil with total production of 19.22 million tonnes of crude palm oil (CPO) in 2013. Aside CPO, by-products such as empty fruit bunch (EFB), palm kernel shell (PKS), palm kernel oil (PKO), palm kernel cake (PKC) and pressed palm fibres (PPF) are produced from the palm oil mills. These biomasses can be used as potential feedstock for the production of biofuels, biogas and bioelectricity. One of the ways to fully harness the potentials of these biomasses is by employing the biorefinery concepts where all the products and by-products from oil palma reutilized for production of valuable bio-products. In this study, technological feasibility of biorefinery for the production of biodiesel, hydrogen, Fischer-Tropsch liquids (FTLs) integrated with combined heat and power (CHP) generation was investigated. Flowsheet was designed for each of the processes using Aspen HYSYS® v 8.0. Material balance was performed on a palm oil mill processing 250 tonnes per year of fresh fruit palm (FFP). Results from the material balance shows that 45.1 tonnes of refined bleached deodorized palm oil (RDBPO) and 52.4 tonnes of EFB were available for the production of biodiesel, hydrogen, FTLs and the CHP generation. The annual plant capacity of the biodiesel production is estimated to be 26,331.912 tonnes.The overall energy consumption of the whole process was estimated to be 36.0GJ/h. This energy demand was met with power generated from the CHP which is 792GJ/h leaving a surplus of 756GJ/h that can be sold to the grid.The process modelling and simulation of the biorefinery process shows technological feasibility of producing valuable products from oil palm.
机译:马来西亚目前是世界上最大的棕榈油出口国,2013年棕榈油总产量为1922万吨。除棕榈油外,副产品还包括空果束(EFB),棕榈仁壳(PKS),棕榈仁油(PKO),棕榈仁饼(PKC)和压榨棕榈纤维(PPF)由棕榈油厂生产。这些生物质可用作生产生物燃料,沼气和生物电的潜在原料。充分利用这些生物质潜力的方法之一是采用生物炼制概念,其中油棕的所有产品和副产品都可再利用来生产有价值的生物产品。在这项研究中,研究了生物精炼厂生产生物柴油,氢气,费托合成液(FTL)和热电联产(CHP)的技术可行性。使用Aspen HYSYS v 8.0为每个过程设计了流程图。物料平衡是在棕榈油厂上进行的,该厂每年加工250吨新鲜水果棕榈(FFP)。物料平衡的结果表明,有45.1吨精制漂白脱臭棕榈油(RDBPO)和52.4吨EFB可用于生产生物柴油,氢气,FTL和CHP。该生物柴油生产的年工厂产能估计为26,331.912吨,整个过程的总能耗估计为36.0GJ / h。通过热电联产产生的能量792GJ / h满足了这一能源需求,剩余的756GJ / h可以出售给电网。生物精炼过程的过程建模和仿真显示了从油棕生产有价值的产品的技术可行性。 。

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