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Techno-economic analysis of producing liquid fuels from biomass via anaerobic digestion and thermochemical conversion

机译:通过厌氧消化和热化学转化从生物质生产液体燃料的技术经济分析

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This paper discusses a preliminary design and a techno-economic analysis of a process that produces liquid hydrocarbon fuels from biomass through a combined biochemical and thermochemical process. The biochemical component involves anaerobic digestion (AD) of the biomass's biodegradable portion to produce biogas. Biogas is purified by removing contaminants and upgraded to liquid hydrocarbon fuel in a biogas to liquid facility (BGTL) via thermochemical conversion route. The BGTL process involves two major steps: tri-reforming to produce syngas (a mixture of CO and H-2), and, Fischer-Tropsch Synthesis (FTS) to convert the syngas to a spectrum of hydrocarbons (synthetic crude). Separation and upgrading of the produced hydrocarbon mixture allows production of transportation fuels such as gasoline, jet fuel, and diesel.In order to evaluate the economics of the combined process a detailed process modelling was carried out using Aspen Plus (R) software. Bench-scale experimental results served as the basis of modelling the BGTL section of the plant, while the AD portion of the plant is based on empirical models selected from the literature validated by comparison with experimental results. Recent bench scale tests in our lab were used to determine processing parameters (yield, temperature, and pressure) for the reforming and FTS conversion.A plant capable of processing 90,000 tonne year(-1) of wet biomass feed was designed and analyzed using the model. Results of the economic analysis estimate that a breakeven cost of diesel of $1.30 L-1 is achievable without the consideration of charging tipping fees to accept the biomass feedstock. Sensitivity study shows that the economics are significantly affected by the fixed capital investment (FCI) and less so by the operating expenses and interest rate. In addition, tipping fees and biomass feedstock cost have a substantial effect on the breakeven price of diesel.
机译:本文讨论了通过生物化学和热化学合成工艺从生物质生产液态烃燃料的工艺的初步设计和技术经济分析。生化成分涉及生物质可生物降解部分的厌氧消化(AD),以产生沼气。通过去除污染物来净化沼气,并通过热化学转化途径将沼气转化为液态设施(BGTL)中的液态烃燃料。 BGTL工艺涉及两个主要步骤:三重整以生产合成气(CO和H-2的混合物),以及费-托合成(FTS)将合成气转化为多种碳氢化合物(合成原油)。分离出的碳氢化合物混合物并进行提质可以生产运输燃料,例如汽油,喷气燃料和柴油。为了评估联合工艺的经济性,使用AspenPlus®软件进行了详细的工艺建模。基准规模的实验结果是对工厂的BGTL部分进行建模的基础,而工厂的AD部分则基于从与实验结果进行比较而验证的文献中选择的经验模型。我们实验室最近进行的实验室规模试验用于确定重整和FTS转化的工艺参数(产量,温度和压力)。设计了一个能够处理90,000吨年(-1)湿生物质饲料的工厂,并使用模型。经济分析的结果估计,不考虑收取用于接受生物质原料的小费的情况下,柴油的收支平衡成本为1.30 L-1。敏感性研究表明,经济受到固定资本投资(FCI)的显着影响,而不受运营费用和利率的影响较小。此外,倾卸费和生物质原料成本对柴油的收支平衡价格有重大影响。

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