Recovery of short-chain organic acids (SCOAs) obtained from anaerobic fermentation process

IF 1.7 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS
M. Ghalibaf, N. Pap, M. Vainio, N. Honkala, S. Rasi
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引用次数: 0

Abstract

Short-chain organic acids (SCOAs) are the intermediates in the anaerobic fermentation process, and can be used in food, textile, and pharmaceutical industries to produce different end use products. SCOAs can be separated, purified, and concentrated by different processes, such as distillation, extraction or membrane-based systems. SCOAs production adds more profitable possibilities to an acidic fermentation process by integration these marketable acids as highly concentrated mixtures with other refinery processes. The present study investigated two approaches for recovering of SCOAs: i) the production of clarified SCOAs liquid by microfiltration (MF) and then performing their concentration by reverse osmosis (RO) and ii) the recovery and concentration by the so-called integrated neutralization and acidified reaction method. The results of MF showed that some SCOAs were retained in the retentate together with the solids. However, in the following RO treatment, SCOAs could be successfully concentrated with a yield retention of over 90 % from the SCOAs liquid. In the latter method, a color-free SCOAs liquid was obtained with an increase in the total SCOAs concentration from 23 g/L to 146 g/L.

回收厌氧发酵过程中获得的短链有机酸 (SCOAs)。
短链有机酸(SCOAs)是厌氧发酵过程中的中间产物,可用于食品、纺织和制药行业,生产不同的最终产品。短链有机酸可通过蒸馏、萃取或基于膜的系统等不同工艺进行分离、纯化和浓缩。通过将这些适销对路的酸作为高浓度混合物与其他精炼工艺相结合,SCOAs 的生产为酸性发酵工艺增加了更多盈利的可能性。本研究调查了两种回收 SCOAs 的方法:i) 通过微过滤 (MF) 生产澄清的 SCOAs 液体,然后通过反渗透 (RO) 进行浓缩;ii) 通过所谓的综合中和与酸化反应方法进行回收和浓缩。微滤的结果表明,一些 SCOAs 与固体物质一起保留在回流液中。不过,在随后的反渗透处理中,SCOAs 可以成功浓缩,从 SCOAs 液体中保留的产量超过 90%。在后一种方法中,获得了无色的 SCOAs 液,SCOAs 总浓度从 23 克/升增加到 146 克/升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of microbiological methods
Journal of microbiological methods 生物-生化研究方法
CiteScore
4.30
自引率
4.50%
发文量
151
审稿时长
29 days
期刊介绍: The Journal of Microbiological Methods publishes scholarly and original articles, notes and review articles. These articles must include novel and/or state-of-the-art methods, or significant improvements to existing methods. Novel and innovative applications of current methods that are validated and useful will also be published. JMM strives for scholarship, innovation and excellence. This demands scientific rigour, the best available methods and technologies, correctly replicated experiments/tests, the inclusion of proper controls, calibrations, and the correct statistical analysis. The presentation of the data must support the interpretation of the method/approach. All aspects of microbiology are covered, except virology. These include agricultural microbiology, applied and environmental microbiology, bioassays, bioinformatics, biotechnology, biochemical microbiology, clinical microbiology, diagnostics, food monitoring and quality control microbiology, microbial genetics and genomics, geomicrobiology, microbiome methods regardless of habitat, high through-put sequencing methods and analysis, microbial pathogenesis and host responses, metabolomics, metagenomics, metaproteomics, microbial ecology and diversity, microbial physiology, microbial ultra-structure, microscopic and imaging methods, molecular microbiology, mycology, novel mathematical microbiology and modelling, parasitology, plant-microbe interactions, protein markers/profiles, proteomics, pyrosequencing, public health microbiology, radioisotopes applied to microbiology, robotics applied to microbiological methods,rumen microbiology, microbiological methods for space missions and extreme environments, sampling methods and samplers, soil and sediment microbiology, transcriptomics, veterinary microbiology, sero-diagnostics and typing/identification.
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