利用藻浆提取淀粉生产生物乙醇。在生活污水中培养的BUM11007

F. LewisOscar, R. Praveenkum, N. Thajuddin
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引用次数: 7

摘要

微藻被认为是一种可行的原料,具有替代农产品生产生物乙醇的潜力。微藻的培养成本仍然是利用它们生产生物乙醇的主要障碍。本文研究了淡水分枝微藻Stigeoclonium sp., k的培养。从生活废水中提取BUM11007,并利用生物质通过酿酒酵母生产生物乙醇。最初测试了微藻对不同废水中营养物质的去除效率。当微生物在废水中生长时,它们在14天内几乎使用了培养基中的所有可用营养物质。在所建立的各种培养设置中,由废水(WW1)和50% Chu10培养基组成的培养设置观察到最大的生长(2.38±0.34 g LG1干细胞重)。细胞的碳水化合物和淀粉含量在不同的培养设置中几乎相似。藻类生物量被收获并测试了它们在生物乙醇生产中的用途。对藻类生物量进行酸处理以溶解复合糖。以糖提取物为发酵培养基,用酿酒酵母生产生物乙醇。厌氧发酵24 h后,量化产量为0.195 g乙醇/g微藻生物量。研究结果证明了利用废水培养的微藻生物质开发生物乙醇一体化生产工艺的可能性。
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 Using Starch Extracted from Microalga Stigeoclonium sp., Kutz. BUM11007 Cultivated in Domestic Wastewater
Microalgae are considered one of the viable feedstocks having potential to replace agricultural products for bioethanol production. The culture costs of microalgae remain the major hurdle in using them to produce bioethanol. This study focuses upon cultivation of a freshwater branched microalga Stigeoclonium sp., Kütz. BUM11007 in domestic wastewater and use the biomass for bioethanol production by Saccharomyces cerevisiae. Initially the microalga Stigeoclonium sp., was tested for their efficiency to remove the nutrients from different wastewater. When the organism was allowed to grow in wastewater they almost use all the available nutrients from the medium within 14 day. Among the various culture setups established, maximum growth (2.38±0.34 g LG1 dry cell weight) was observed from the setup composed of a wastewater (WW1) with 50% strength of Chu10 medium. The carbohydrates and starch contents of the cell were almost similar among the different culture setups. The algal biomass was harvested and tested for their usefulness in bioethanol production. The algal biomass was acid treated to dissolve the complex sugars. The sugar extract was used as the fermentation medium for bioethanol production with Saccharomyces cerevisiae. After 24 h of anaerobic fermentation, the yield was quantified as 0.195 g ethanol/g of microalgal biomass. The result proves the possibility of developing integrated process for bioethanol production with microalgal biomass cultivated from wastewater.
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