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首页> 外文期刊>International journal of sustainable engineering >Energy analysis of algae-to-biofuel production chains integrated with a combined heat and power plant
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Energy analysis of algae-to-biofuel production chains integrated with a combined heat and power plant

机译:藻类与生物燃料生产链的能量分析与综合热电厂集成

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摘要

This study examines the energy and mass balances of algae cultivation and different post-processing pathways. Flue gases and excess heat from a combined heat and power (CHP) plant are used in algae cultivation, with nutrients from municipal wastewater. In the studied pathways, algae are cultivated in open ponds and photobioreactors with or without artificial lighting. Algal mass is used for methane, biodiesel or ethanol production, or it is combusted in a boiler. Results show that in most process pathways energy output exceeds the energy consumption in processing, and the energy returns are approximately twice as large as the electricity input. A large fraction of input energy is low-temperature heat, while the products have a higher value. Energy outputs from different pathways are similar, but heat and electricity consumption in processing vary significantly. Supercritical water gasification pathway is identified as a possible future option, whereas lipid extraction pathways are suggested to be the most likely candidates for industrial scale operations.
机译:本研究探讨了藻类栽培和不同后处理途径的能量和质量平衡。烟气和来自组合热量和功率(CHP)植物的过热用于藻类培养,来自市政废水的营养。在研究的途径中,藻类在开放的池塘和光生物反应器中培养,有或没有人造照明。藻类质量用于甲烷,生物柴油或乙醇生产,或者在锅炉中燃烧。结果表明,在大多数过程路径中,能量输出超过加工能耗,能量返回大约是电输入的两倍。大部分的输入能量是低温热量,而产品具有更高的值。来自不同途径的能量输出是相似的,但加工过程中的热量和电力消耗显着变化。超临界水气化途径被确定为可能的未来选择,而脂质提取途径建议是工业规模运营的最可能候选人。

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