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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microalgae harvest influences the energy recovery: A case study on chemical flocculation of Scenedesmus obliquus for biodiesel and crude bio-oil production
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Microalgae harvest influences the energy recovery: A case study on chemical flocculation of Scenedesmus obliquus for biodiesel and crude bio-oil production

机译:微藻收获影响能源回收:生物柴油和粗生物产量的铜矿斜肌化学絮凝的案例研究

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摘要

In the present study, centrifugation was used as a standard harvest method, while chemical flocculation was comparatively used as a cost-effective harvest method for microalgae. Lipid recovery from the centrifuged cells was 17.4%, which significantly increased by flocculation to 20.7%. Although both harvest methods showed similar thermal decomposition patterns, flocculated biomass showed 15.7% higher bio-char formation than the centrifuged cells, which resulted in significant reduction in the bio-oil yield by 18.5%. The estimated energy output of bio-oil using centrifugation and flocculation were 0.87 and 0.68 GJ per ton, respectively. For biodiesel production, the energy output using centrifugation and flocculation were 0.177 and 0.211 GJ per ton, respectively. Due to the higher biodiesel yield, better bio-oil quality and lower energy consumption, flocculation was suggested by the present study as a superior method over centrifugation for microalgae harvest from the economic point of view.
机译:在本研究中,离心用作标准收获方法,而化学絮凝相对较称用作微藻的成本有效的收获方法。从离心细胞中脂质回收率为17.4%,通过絮凝显着增加至20.7%。尽管Harvest方法均显示出类似的热分解图案,但絮凝的生物质显示出比离心电池更高的生物炭形成形成15.7%,这导致生物油收益率显着降低18.5%。使用离心和絮凝的生物油的估计能量输出分别为每吨0.87和0.68 gj。对于生物柴油生产,使用离心和絮凝的能量输出分别为0.177和0.211gj /吨。由于生物柴油产量较高,更好的生物油质量和较低的能量消耗,本研究提出了絮凝作为从经济角度的微藻收获离心的优异方法。

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