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The Conceptual of Energy Demand for Polyculture Microalgae Biomass Production in Large-scale Open Raceway Pond using Excess Energy and Effluent from Palm Oil Mills

机译:使用多余的能源和棕榈油厂的废水在大型开放水道池塘中进行混养微藻生物质生产的能源需求概念

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As biofuel feedstock, microalgae biomass is potential for biofuel production. Microalgae biomass can produce various biofuel such as jet fuel, biodiesel, bioethanol, and biogas. This research is proposing the conceptual of energy demand of polyculture microalgae biomass production on large-scale Open Raceway Pond using excess energy from Palm Oil Mill. The basic analysis of energy requirement in microalgae biomass production based on existing microalgae cultivation pilot plant of Fukushima Algae Project, Japan using native polyculture microalgae in semi-continuous ORP, whereas the proposed microalgae plant is near to Palm Oil Mill in Indonesia. The analysis of energy demand based on direct energy (electricity) and indirect energy (CO2 and nutrient). Some scenarios were offered to present total energy demand in microalgae biomass production and total energy that can be provided from excess energy of Palm Oil Mill. The selection of harvesting-dewatering technology along with ORP depth is crucial to reduce energy demand in microalgae biomass production. The result shows that the excess energy from Palm Oil Mill can fulfill direct energy demand of microalgae biomass production on large-scale Open Raceway Pond whereas gas effluent and POME effluent can supply enough CO2, total N, and total P.
机译:作为生物燃料的原料,微藻生物质具有生产生物燃料的潜力。微藻生物质可以产生各种生物燃料,例如喷气燃料,生物柴油,生物乙醇和沼气。这项研究提出了使用棕榈油厂的多余能量在大型开放水道池塘进行混养微藻生物质生产的能源需求的概念。基于日本福岛藻类项目的现有微藻栽培试验工厂,使用半连续ORP中的本地混养微藻,对微藻生物质生产中的能源需求进行基本分析,而拟议的微藻工厂靠近印度尼西亚的棕榈油厂。基于直接能量(电)和间接能量(CO)的能源需求分析 2 和营养)。提供了一些方案来显示微藻生物质生产中的总能量需求以及可以从棕榈油厂的多余能量中提供的总能量。选择收获脱水技术以及ORP深度对于减少微藻生物质生产中的能源需求至关重要。结果表明,棕榈油厂的多余能量可以满足大型露天水道池塘微藻类生物质生产的直接能源需求,而废气和POME污水可以提供足够的一氧化碳。 2 ,总N和总P。

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