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Production of bioethanol as useful biofuel through the bioconversion of water hyacinth (Eichhornia crassipes)

机译:通过水葫芦的生物转化生产生物乙醇作为有用的生物燃料(凤眼鱼)

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摘要

Water hyacinth (Eichhornia crassipes) represents a promising candidate for fuel ethanol production in tropical countries because of their high availability and high biomass yield. Bioconversion of such biomass to bioethanol could be wisely managed through proper technological approach. In this work, pretreatment of water hyacinth (10 %, w/v) with dilute sulfuric acid (2 %, v/v) at high temperature and pressure was integrated in the simulation and economic assessment of the process for further enzymatic saccharification was studied. The maximum sugar yield (425.6 mg/g) through enzymatic saccharification was greatly influenced by the solid content (5 %), cellulase load (30 FPU), incubation time (24 h), temperature (50 °C), and pH (5.5) of the saccharifying medium. Central composite design optimized an ethanol production of 13.6 mg/ml though a mixed fermentation by Saccharomyces cerevisiae (MTCC 173) and Zymomonas mobilis (MTCC 2428). Thus the experiment imparts an economic value to water hyacinths that are cleared from choking waterways.
机译:水葫芦(凤眼兰)由于其高可用性和高生物量产量,是热带国家燃料乙醇生产的有前途的候选者。这种生物质向生物乙醇的生物转化可以通过适当的技术方法进行明智的管理。在这项工作中,研究了在高温高压下用稀硫酸(2%,v / v)预处理水葫芦(10%,w / v)的过程,并进行了酶促糖化过程的模拟和经济评估研究。酶促糖化的最大糖产量(425.6 mg / g)受到固体含量(5%),纤维素酶负载(30 FPU),孵育时间(24h),温度(50°C)和pH(5.5)的极大影响)糖化介质。中央复合设计通过酿酒酵母(MTCC 173)和运动发酵单胞菌(MTCC 2428)的混合发酵优化了13.6 mg / ml的乙醇产量。因此,该实验赋予了从cho水道清除的水葫芦经济价值。

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