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采用生淀粉水解与发酵相结合的方法从木薯原淀粉一步法生产乙醇,从5升实验室规模和200升中试规模扩大至3000升工业发酵罐规模。

Single-step ethanol production from raw cassava starch using a combination of raw starch hydrolysis and fermentation, scale-up from 5-L laboratory and 200-L pilot plant to 3000-L industrial fermenters.

作者信息

Krajang Morakot, Malairuang Kwanruthai, Sukna Jatuporn, Rattanapradit Krongchan, Chamsart Saethawat

机构信息

Biological Science Program, Faculty of Science, Burapha University, Chon Buri, 20131, Thailand.

Department of Biology, Faculty of Science, Burapha University, Chon Buri, 20131, Thailand.

出版信息

Biotechnol Biofuels. 2021 Mar 16;14(1):68. doi: 10.1186/s13068-021-01903-3.

Abstract

BACKGROUND

A single-step ethanol production is the combination of raw cassava starch hydrolysis and fermentation. For the development of raw starch consolidated bioprocessing technologies, this research was to investigate the optimum conditions and technical procedures for the production of ethanol from raw cassava starch in a single step. It successfully resulted in high yields and productivities of all the experiments from the laboratory, the pilot, through the industrial scales. Yields of ethanol concentration are comparable with those in the commercial industries that use molasses and hydrolyzed starch as the raw materials.

RESULTS

Before single-step ethanol production, studies of raw cassava starch hydrolysis by a granular starch hydrolyzing enzyme, StargenTM002, were carefully conducted. It successfully converted 80.19% (w/v) of raw cassava starch to glucose at a concentration of 176.41 g/L with a productivity at 2.45 g/L/h when it was pretreated at 60 °C for 1 h with 0.10% (v/w dry starch basis) of Distillase ASP before hydrolysis. The single-step ethanol production at 34 °C in a 5-L fermenter showed that Saccharomyces cerevisiae (Fali, active dry yeast) produced the maximum ethanol concentration, p at 81.86 g/L (10.37% v/v) with a yield coefficient, Y of 0.43 g/g, a productivity or production rate, r at 1.14 g/L/h and an efficiency, Ef of 75.29%. Scale-up experiments of the single-step ethanol production using this method, from the 5-L fermenter to the 200-L fermenter and further to the 3000-L industrial fermenter were successfully achieved with essentially good results. The values of p Y, r, and Ef of the 200-L scale were at 80.85 g/L (10.25% v/v), 0.42 g/g, 1.12 g/L/h and 74.40%, respectively, and those of the 3000-L scale were at 70.74 g/L (8.97% v/v), 0.38 g/g, 0.98 g/L/h and 67.56%, respectively. Because of using raw starch, major by-products, i.e., glycerol, lactic acid, and acetic acid of all three scales were very low, in ranges of 0.940-1.140, 0.046-0.052, 0.000-0.059 (% w/v), respectively, where are less than those values in the industries.

CONCLUSION

The single-step ethanol production using the combination of raw cassava starch hydrolysis and fermentation of three fermentation scales in this study is practicable and feasible for the scale-up of industrial production of ethanol from raw starch.

摘要

背景

一步法乙醇生产是生木薯淀粉水解与发酵的结合。为了开发生淀粉同步糖化发酵技术,本研究旨在探究一步法从生木薯淀粉生产乙醇的最佳条件和工艺流程。该研究在实验室、中试直至工业规模的所有实验中均成功实现了高产率和高生产率。乙醇浓度产量与使用糖蜜和水解淀粉作为原料的商业行业相当。

结果

在进行一步法乙醇生产之前,对颗粒淀粉水解酶StargenTM002水解生木薯淀粉进行了仔细研究。当在水解前于60℃用0.10%(基于干淀粉重量体积比)的Distillase ASP预处理1小时时,它成功地将80.19%(w/v)的生木薯淀粉转化为浓度为176.41 g/L的葡萄糖,生产率为2.45 g/L/h。在5-L发酵罐中于34℃进行的一步法乙醇生产表明,酿酒酵母(Fali,活性干酵母)产生的最大乙醇浓度p为81.86 g/L(10.37% v/v),产率系数Y为0.43 g/g,生产率或生产速率r为1.14 g/L/h,效率Ef为75.29%。使用该方法进行一步法乙醇生产的放大实验,从5-L发酵罐成功扩大到200-L发酵罐,再进一步扩大到3000-L工业发酵罐,效果基本良好。200-L规模的p、Y、r和Ef值分别为80.85 g/L(10.25% v/v)、0.42 g/g、1.12 g/L/h和74.40%,3000-L规模的分别为70.74 g/L(8.97% v/v)、0.38 g/g、0.98 g/L/h和67.56%。由于使用生淀粉,所有三个规模的主要副产物,即甘油、乳酸和乙酸含量都非常低,分别在0.940 - 1.140、0.046 - 0.052、0.000 - 0.059(% w/v)范围内,低于行业中的这些值。

结论

本研究中使用生木薯淀粉水解与发酵相结合的一步法乙醇生产在从生淀粉扩大规模工业生产乙醇方面是可行且切实可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d278/7962325/e1e8c34d3eb2/13068_2021_1903_Fig1_HTML.jpg

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