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优化同时糖化发酵法从柑橘废弃物和香蕉皮中生产乙醇的发酵参数。

Optimization of fermentation parameters for production of ethanol from kinnow waste and banana peels by simultaneous saccharification and fermentation.

机构信息

Department of Microbiology, College of Basic Sciences and Humanities, Punjab Agricultural University, Ludhiana, 141 004 India.

出版信息

Indian J Microbiol. 2007 Dec;47(4):310-6. doi: 10.1007/s12088-007-0057-z. Epub 2008 Jan 11.

Abstract

A study was taken up to evaluate the role of some fermentation parameters like inoculum concentration, temperature, incubation period and agitation time on ethanol production from kinnow waste and banana peels by simultaneous saccharification and fermentation using cellulase and co-culture of Saccharomyces cerevisiae G and Pachysolen tannophilus MTCC 1077. Steam pretreated kinnow waste and banana peels were used as substrate for ethanol production in the ratio 4:6 (kinnow waste: banana peels). Temperature of 30°C, inoculum size of S. cerevisiae G 6% and (v/v) Pachysolen tannophilus MTCC 1077 4% (v/v), incubation period of 48 h and agitation for the first 24 h were found to be best for ethanol production using the combination of two wastes. The pretreated steam exploded biomass after enzymatic saccharification containing 63 gL(-1) reducing sugars was fermented with both hexose and pentose fermenting yeast strains under optimized conditions resulting in ethanol production, yield and fermentation efficiency of 26.84 gL(-1), 0.426 gg (-1) and 83.52 % respectively. This study could establish the effective utilization of kinnow waste and banana peels for bioethanol production using optimized fermentation parameters.

摘要

一项研究旨在评估一些发酵参数的作用,如接种物浓度、温度、培养时间和搅拌时间,以利用纤维素酶同时糖化和发酵从桔柚废物和香蕉皮中生产乙醇,并利用酿酒酵母 G 和 Pachysolen tannophilus MTCC 1077 的共培养物。蒸汽预处理的桔柚废物和香蕉皮被用作乙醇生产的底物,比例为 4:6(桔柚废物:香蕉皮)。发现 30°C 的温度、6%的酿酒酵母 G 接种物大小和 4%(v/v)的 Pachysolen tannophilus MTCC 1077(v/v)、48 小时的培养时间和前 24 小时的搅拌最适合使用两种废物的组合生产乙醇。在优化条件下,用两种己糖和戊糖发酵酵母菌株发酵经酶法糖化后的预处理蒸汽爆炸生物质,其中含有 63gL(-1)还原糖,可分别产生 26.84gL(-1)、0.426gg(-1)和 83.52%的乙醇产量、产率和发酵效率。这项研究可以确定利用优化发酵参数从桔柚废物和香蕉皮中有效利用生产生物乙醇。

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