生物燃料
普通小球藻
响应面法
生物量(生态学)
发酵
制浆造纸工业
乙醇燃料
化学
藻类生质燃料
酶水解
生物能源
还原糖
糖
水解
食品科学
生物技术
植物
生物柴油
农学
生物化学
色谱法
生物
工程类
催化作用
藻类
作者
V. Shenbagamuthuraman,K. Nanthagopal
标识
DOI:10.1016/j.biortech.2023.129867
摘要
Bioethanol is a promising biofuel for replacing gasoline due to its sustainability. This work uses microwave irradiation and acid hydrolysis to produce bioethanol from Chlorella vulgaris. The hydrolysis procedure used 1%-3% sulfuric acid (H2SO4). The maximum output of reducing sugar was 6.773 g/L after 5 min of irradiation. This study used RSM and ANN to optimize bioethanol production. The study predicted bioethanol yield using three factors: fermentation duration (12-36 h), temperature (28-32 °C), and inoculum concentration (0.5-1.5 g/L). The highest bioethanol yield was achieved using fermentation conditions of 36 h, 30 °C temperature, and 1.5 g/L inoculum concentration. The ANN model predicted the best ethanol output compared to the RSM model. The leftover biomass from biofuel synthesis was characterized for its potential for other energy production. The current study examined the feasibility of employing biomass in an environmentally sustainable manner to enhance the production of biofuels.
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