Wang Tao, Zhu Li, Kusumi Kaito, Yamamoto Tetsuya, Yonezawa Akiho, Homma Ryosuke, Shiota Kenji, Takaoka Masaki, Oshita Kazuyuki, Kanda Hideki
Department of Chemical Systems Engineering, Nagoya University, Chikusa, Nagoya 464-8603, Japan.
Department of Materials Process Engineering, Nagoya University, Chikusa, Nagoya 464-8603, Japan.
ACS Omega. 2025 Aug 22;10(35):39482-39493. doi: 10.1021/acsomega.4c11491. eCollection 2025 Sep 9.
The energy intensive nature of harvesting microalgae by centrifugation and drying results in a low energy profit ratio for biofuel production from wet microalgae. To address this, microalgal cultures can be flocculated by polymers to reduce energy consumption and avoid centrifugation. Additionally, lipids can be directly extracted from wet microalgae harvested by centrifugation using liquefied dimethyl ether (DME) to reduce energy consumption. In this study, we investigated the lipid extraction from the green alga, (), flocculated with amphoteric and cationic polymers using liquefied DME, without centrifugation and drying pretreatment. Although the addition of amphoteric polymer did not interfere with lipid extraction by liquefied DME, the amount of lipids extracted by ethanol from flocculated decreased. The addition of cationic polymers also interferes with lipid extraction using liquefied DME, chloroform-methanol mixtures, and ethanol. Surface functional group measurements revealed that the amphoteric and cationic polymer flocculants were insoluble in these solvents, remained in the residue, and did not contaminate the extracted lipids. Thus, the amphoteric flocculant KA305BH was found to be effective for lipid extraction with liquefied DME from . The proposed approach can facilitate the energy efficient production of biofuel from wet microalgae.
通过离心和干燥收获微藻的过程能源密集,导致从湿微藻生产生物燃料的能量利润比很低。为了解决这个问题,可以用聚合物使微藻培养物絮凝,以降低能源消耗并避免离心。此外,可以使用液化二甲醚(DME)从通过离心收获的湿微藻中直接提取脂质,以降低能源消耗。在本研究中,我们研究了使用液化DME从用两性和阳离子聚合物絮凝的绿藻()中提取脂质,无需离心和干燥预处理。虽然添加两性聚合物不会干扰用液化DME提取脂质,但用乙醇从絮凝的中提取的脂质量减少。添加阳离子聚合物也会干扰使用液化DME、氯仿 - 甲醇混合物和乙醇提取脂质。表面官能团测量表明,两性和阳离子聚合物絮凝剂不溶于这些溶剂,留在残渣中,不会污染提取的脂质。因此,发现两性絮凝剂KA305BH对于用液化DME从提取脂质是有效的。所提出的方法可以促进从湿微藻高效生产生物燃料。