State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangzhou 310027, China.
Bioresour Technol. 2013 Mar;131:531-5. doi: 10.1016/j.biortech.2013.01.045. Epub 2013 Jan 22.
To address the large energy consumption of microalgae dewatering and to simplify the conventional two-step method (cellular lipid extraction and lipid transesterification) for biodiesel production, a novel process for the direct conversion of wet microalgae biomass into biodiesel by microwave irradiation is proposed. The influences of conventional thermal heating and microwave irradiation on biodiesel production from wet microalgae biomass were investigated. The effects of using the one-step (simultaneous lipid extraction and transesterification) and two-step methods were also studied. Approximately 77.5% of the wet microalgal cell walls were disrupted under microwave irradiation. The biodiesel production rate and yield from wet microalgae biomass obtained through the one-step process using microwave irradiation were 6-fold and 1.3-fold higher than those from wet microalgae obtained through the two-step process using conventional heating.
为了解决微藻脱水的高能耗问题,并简化传统的两步法(细胞脂质提取和脂质酯交换)生产生物柴油,提出了一种将湿微藻生物质直接转化为生物柴油的新方法,即微波辐射。研究了常规热加热和微波辐射对从湿微藻生物质生产生物柴油的影响。还研究了一步法(同时进行脂质提取和酯交换)和两步法的效果。在微波辐射下,大约 77.5%的湿微藻细胞壁被破坏。通过微波辐射的一步法从湿微藻生物质中获得的生物柴油产率和产率分别比通过传统加热的两步法从湿微藻中获得的生物柴油产率和产率高 6 倍和 1.3 倍。