4.7 Article

Simultaneous synthesis of lactic acid and hydrogen from sugars via capnophilic lactic fermentation by Thermotoga neapolitana cf capnolactica

期刊

BIOMASS & BIOENERGY
卷 125, 期 -, 页码 17-22

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.biombioe.2019.04.007

关键词

Thermophilic bacteria; Hydrogen; Lactic acid; Fermentation; Salinity level; Buffering agent

资金

  1. Italian Ministry of Education, University and Research (MIUR) through the projects: Sfruttamento Integrato di Biomasse Algali in Filiera Energetica di Qualita (SIBAFEQ) [PON01_ 02740]
  2. European Union's Horizon 2020 Research and Innovation Programme Project BioRECO2VER [760431]
  3. Erasmus Mundus Joint Doctorate program ETeCoS3 (Environmental Technologies for Contaminated Solids, Soils and Sediments) under EU grant agreement FPA [2010-0009]

向作者/读者索取更多资源

This study investigated the effect of the salinity level, buffering agent and carbon source on the hydrogen (H-2) and lactic acid synthesis under capnophilic (CO2-assisted) lactic fermentation (CLF) by Thermotoga neapolitana cf capnolactica (DSM 33003). Several series of batch fermentation experiments were performed either in 0.12 L serum bottles for selection of the best performing conditions or in a 3 L fermenter for the best possible combination of conditions. The serum bottle study revealed that change in the salinity level of the culture medium from 0 to 35 g NaCl increased lactic acid synthesis by 7.5 times without affecting the H-2 yield. Use of different buffers (MOPS, TRIS or HEPES) did not affect the average H-2 yield of 3.0 +/- 0.24 mol H-2 mol(-1) of glucose and lactic acid synthesis of 13.7 +/- 1.03 mM when the cultures were sparged by CO2. Among the carbon sources investigated, glucose was found to be the best performing carbon source for the CLF fermentation with 35 g L-1 of NaCl and 0.01 M of phosphate buffer. Hence, an up-scale experiment using a 3 L fermenter and the combination of the best performing conditions showed a 2.2 times more lactic acid synthesis compared to the 0.12 L serum bottle experiments. The study reveals the robustness and flexibility of the CLF-based technology using T. neapolitana cf capnolactica fermentation under various operating environmental conditions.

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