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Process modeling and economic analysis of mlcroalgal systems for CO2 capture and production of chemicals

机译:二氧化碳捕获和化学品生产MLCroalgal系统的过程建模与经济分析

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The use of microalgae and cyanobacteria for the production of biofuels and other substances of commercial interest has been widely advertised as an extremely promising sustainable technology, due to the high areal productivity, potential for fixation of CO2, possibility of using non-arable land and alternative sources of nutrients such as brackish water and agricultural and industrial effluents. The commercial production of cyanobacteria in open raceway ponds was studied through the combination of a mathematical model for the algal growth with technical, economical and sustainability evaluations. A macromodel was developed to simulate the ponds, and it was used to assess the impact of environmental variables, such as light and temperature, and to optimize the process conditions for operation and harvesting. A detailed economic analysis demonstrated the impact of capital, operation costs and energy consumption, also highlighting the importance of revenue from high value products to process viability, considering the current technology. The sensitivity analysis and evaluation of both technology improvements and alternative business models enabled the prioritization of future research areas, based on economic and environmental impact.
机译:用于生产生物燃料的微藻和蓝藻和商业兴趣的其他物质的使用被广泛宣传为极其有前途的可持续技术,由于高强度生产力,固定二氧化碳的可能性,使用不可耕地和替代方案的可能性营养素来源,如咸水和农业和工业污水。通过与技术,经济和可持续性评估的藻类生长的数学模型相结合,研究了开放滚道池塘中的蓝藻的商业生产。开发了一种Macromodel以模拟池塘,用于评估环境变量的影响,例如轻型和温度,并优化操作条件进行操作和收获。详细的经济分析表明,考虑到当前技术,突出了资本,运营成本和能源消耗的影响,突出了高价值产品收入的重要性,考虑到目前的技术。技术改进和替代商业模式的敏感性分析和评价使得基于经济和环境影响,使未来研究领域的优先级排列。

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