AI Article Synopsis

  • Downstream processing of chemicals from fermentation is a crucial and cost-sensitive step, with 2,3-Butanediol (BDO) being an important product for multiple industries.
  • The study explores the recovery and purification of BDO from detoxified sugarcane bagasse using a mutant strain of Enterobacter ludwigii, achieving a production of 68.2 g/L.
  • Optimized aqueous-two phase system (ATPS) techniques showed high extraction efficiency, recovering 97% of BDO even from unfiltered broth, demonstrating the effectiveness of the method for large-scale applications.

Article Abstract

Downstream processing of chemicals obtained from fermentative route is challenging and cost-determining factor of any bioprocess. 2,3-Butanediol (BDO) is a promising chemical building block with myriad applications in the polymer, food, pharmaceuticals, and fuel sector. The current study focuses on the recovery and purification of BDO produced (68.2 g/L) from detoxified xylose-rich sugarcane bagasse hydrolysate by a mutant strain of Enterobacter ludwigii. Studies involving screening and optimization of aqueous-two phase system (ATPS) revealed that 30% w/v (NH)SO addition to clarified fermented broth facilitated BDO extraction in isopropanol (0.5 v/v), with maximum recovery and partition coefficient being 97.9 ± 4.6% and 45.5 ± 3.5, respectively. The optimized protocol was repeated with unfiltered broth containing 68.2 g/L BDO, cell biomass, and unspent protein, which led to the partitioning of 66.7 g/L BDO, 2.0 g/L xylose and 9.0 g/L acetic acid into organic phase with similar BDO recovery (97%) and partition coefficient (45).

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Source
http://dx.doi.org/10.1016/j.biortech.2021.125463DOI Listing

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