热带海洋微藻Ambon Bay Navicula sp.内Ambon Bay菌株生产生物乙醇

Ivonne Telussa, E. Fransina, Joisana Singerin, Muhammad Ikhsan Taipabu
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引用次数: 1

摘要

微藻是一种光合微生物,其含有的碳水化合物可以通过水解过程转化为葡萄糖,从而可以用作生产生物乙醇的原料。Navicula sp.菌株TAD是一种分布在安汶湾(TAD)内海水中的海洋微藻,用于生产生物乙醇。本研究旨在测定热带海洋微藻Ambon bay Navicula sp.菌株TAD生产的碳水化合物和生物乙醇的含量。本研究通过培养Navicula sp.菌株TAD获取生物质、测定生物质中碳水化合物含量、利用酿酒酵母(Saccharomyces cerevisiae)水解生物质并生产生物乙醇等几个阶段进行。结果表明,培养7 d时,纳维藻菌株TAD的细胞密度最高,为72.167 × 105±0.946个细胞mL-1,干生物量为0.933±0.062 g,生产力为0.166±0.011 gL-1 hour-1。硫酸水解过程中糖含量为146.5695±0.758 mg。水解后的发酵过程产生生物乙醇。所得生物乙醇含量为6.357%。这表明Navicula sp.菌株TAD具有生产生物乙醇的潜力
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioethanol Production From Tropical Marine Microalgae Ambon Bay Navicula sp. of The Inner Ambon Bay Strain
Microalgae are photosynthetic microorganisms that contain carbohydrates can be converted into glucose through a hydrolysis process so that they can be used as raw materials for bioethanol production. Navicula sp. strain TAD is a type of marine microalgae that is spread in the inner Ambon Bay (TAD) sea waters and is used to manufacture bioethanol. This study aims to determine the content of carbohydrates and bioethanol produced from tropical marine microalgae Ambon bay Navicula sp. strain TAD. The research was conducted through several stages, namely the cultivation of Navicula sp. strain TAD to obtain biomass, determine carbohydrate content in biomass, hydrolyze biomass and manufacture bioethanol through a fermentation process using Saccharomyces cerevisiae. The results showed that Navicula sp. strain TAD cultivation for seven days had the highest cell density of 72.167 × 105 ± 0.946 cells  mL-1 with dry biomass of 0.933 ± 0.062 g and productivity of 0.166 ± 0.011 gL-1 hour-1. The sulfuric acid hydrolysis process was analyzed for a sugar content of 146.5695 ± 0.758 mg. A fermentation process follows the results of the hydrolysis to produce bioethanol. The bioethanol content obtained was 6.357%. These indicated that Navicula sp. strain TAD has the potential to produce bioethanol
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