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利用腐烂椰枣中的提取糖作为新型酵母分离株生产乙醇的可持续原料。

Using Extracted Sugars from Spoiled Date Fruits as a Sustainable Feedstock for Ethanol Production by New Yeast Isolates.

机构信息

Department of Sustainable Agriculture, University of Patras, 2 Georgiou Seferi St., GR-30100 Agrinio, Greece.

Institute of Chemical Engineering Sciences (FORTH/ICE-HT), Stadiou, GR-26504 Patra, Greece.

出版信息

Molecules. 2024 Aug 11;29(16):3816. doi: 10.3390/molecules29163816.

Abstract

This study focuses on investigating sugar recovery from spoiled date fruits (SDF) for sustainable ethanol production using newly isolated yeasts. Upon their isolation from different food products, yeast strains were identified through PCR amplification of the D1/D2 region and subsequent comparison with the GenBank database, confirming isolates KKU30, KKU32, and KKU33 as ; KKU21 as ; and KKU35m as . Optimization of sugar extraction from SDF pulp employed response surface methodology (RSM), varying solid loading (20-40%), temperature (20-40 °C), and extraction time (10-30 min). Linear models for sugar concentration (R1) and extraction efficiency (R2) showed relatively high R values, indicating a good model fit. Statistical analysis revealed significant effects of temperature and extraction time on extraction efficiency. The results of batch ethanol production from SDF extracts using mono-cultures indicated varying consumption rates of sugars, biomass production, and ethanol yields among strains. Notably, strains exhibited rapid sugar consumption and high ethanol productivity, outperforming and , and they were selected for scaling up the process at fed-batch mode in a co-culture. Co-cultivation resulted in complete sugar consumption and higher ethanol yields compared to mono-cultures, whereas the ethanol titer reached 46.8 ± 0.2 g/L.

摘要

本研究旨在利用新分离的酵母从变质的枣果(SDF)中回收糖,以实现可持续的乙醇生产。从不同的食品中分离出酵母后,通过 D1/D2 区域的 PCR 扩增和与 GenBank 数据库的后续比较来鉴定酵母菌株,证实 KKU30、KKU32 和 KKU33 为 ; KKU21 为 ; KKU35m 为 。采用响应面法(RSM)优化从 SDF 浆中提取糖,固体负荷(20-40%)、温度(20-40°C)和提取时间(10-30 分钟)。糖浓度(R1)和提取效率(R2)的线性模型显示出较高的 R 值,表明模型拟合良好。统计分析表明,温度和提取时间对提取效率有显著影响。利用单培养物从 SDF 提取物中分批生产乙醇的结果表明,不同菌株的糖消耗率、生物量生产和乙醇产率存在差异。值得注意的是, 菌株表现出快速的糖消耗和高的乙醇生产力,优于 和 ,并被选择用于在共培养物中以分批补料模式扩大生产过程。与单培养物相比,共培养物导致完全消耗糖和更高的乙醇产量,而乙醇浓度达到 46.8±0.2 g/L。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c01/11357582/b98a324e46d2/molecules-29-03816-g001.jpg

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