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Detailed design and optimization of a sustainable micro-algal biofuel process plant

机译:可持续微藻生物燃料加工厂的详细设计和优化

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A sustainable micro-algal biofuel process plant was hypothetically and detailed-designed for the production of value products from algae. The process plant cultures algae through controlled growth and processes: production of biomass, extraction of lipids and biofuels and refinement into finished products. The start-off feedstock was Nannochloropsis spp. and the four end products produced were bio-kerosene, methane, biomass slurry and CO_2. The algae were grown to maturity within the least allowable possible time under controlled conditions. From an in-depth analysis of the customer specifications, concept development and selection, the study defines an overall depiction of the end products from the concepts evaluated by using the Pugh matrix and Six sigma methodologies. DMADV approach was implemented. The process finally generated an economically viable algae biomass for conversion to biofuels and other viable products. This paper focuses on the process planning, criteria/concept selection, design optimization with necessary characterizations which were filtered into measurable characteristics for the design of an operable, sustainable functioning plant.
机译:假设并详细设计了可持续的微藻生物燃料加工厂,用于从藻类生产有价产品。加工厂通过受控的生长和过程来培养藻类:生物量的生产,脂质和生物燃料的提取以及提炼成成品。起始原料是拟南芥属。生产的四个最终产品是生物煤油,甲烷,生物质浆料和CO_2。藻类在受控条件下在最短的允许时间内生长至成熟。通过对客户规格,概念开发和选择的深入分析,该研究通过使用Pugh矩阵和6 sigma方法论评估的概念定义了最终产品的整体描述。实施了DMADV方法。该过程最终产生了经济上可行的藻类生物质,可转化为生物燃料和其他可行产品。本文着重于过程计划,标准/概念选择,具有必要特征的设计优化,这些特征被过滤成可测量的特征,以设计可运行,可持续运转的工厂。

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