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Anionic Extraction for Efficient Recovery of Biobased 2,3-Butanediol-A Platform for Bulk and Fine Chemicals

机译:阴离子萃取法有效回收大块和精细化学品生物基2,3-丁二醇-a平台

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摘要

2,3-Butanediol (BDO) presents a promising platform molecule for the synthesis of basic and fine chemicals. Biotechnological production of BDO from renewable resources with living microbes enables high concentrations in the fermentation broth. The recovery of high-boiling BDO from an aqueous fermentation broth presents a subsequent challenge. A method is proposed for BDO isolation based on reversible complexation with phenylboronate in an anionic complex. BDO can be recovered by back-extraction into an acidic solution. The composition of the extracted species was determined by NMR spectroscopy, MS, and GC-MS methods. The conditions of extraction and back-extraction were optimized by using commercial BDO and finally applied to different fermentation broths. Up to 72-93 % BDO can be extracted and up to 80-90 % can be back-extracted under the optimized conditions. Purified bio-BDO was used in the presence of sulfuric acid for the synthesis of methyl ethyl ketone, an established organic solvent and discussed tailor-made biofuel.
机译:2,3-丁二醇(BDO)为合成碱性和精细化学品提供了一种有前途的平台分子。利用可再生资源和生物微生物对BDO进行生物技术生产,可在发酵液中实现高浓度。从含水发酵液中回收高沸点BDO提出了后续挑战。提出了一种基于与阴离子复合物中苯硼酸酯可逆络合的BDO分离方法。 BDO可以通过反萃取到酸性溶液中来回收。通过NMR光谱法,MS和GC-MS方法确定提取物质的组成。利用市售BDO对提取条件和反提取条件进行了优化,最终应用于不同的发酵液中。在优化的条件下,最多可提取72-93%的BDO,最多可反提取80-90%。纯化的生物BDO在硫酸存在下用于合成甲乙酮(已建立的有机溶剂),并讨论了量身定制的生物燃料。

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