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Gas Fermentation Enhancement for Chemolithotrophic Growth of Cupriavidus necator on Carbon Dioxide

机译:气体发酵增强二氧化碳催化铜绿硝化菌的化学营养型生长

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Cupriavidus necator , a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrogen, and oxygen for value-added products. High cell density and productivity were the goal of gas fermentation, but limited by gas substrates because of their low solubility in the aqueous medium solution. Enhancement of gas fermentation was investigated by (i) adding n-hexadecane as a gas vector to increase the volumetric mass transfer coefficient ( k L a ) and gas solubility, (ii) growing C. necator under a raised gas pressure, and (iii) using cell mass hydrolysates as the nutrients of chemolithotrophic growth. In contrast to previous studies, little positive but negative effects of the gas vector were observed on gas mass transfer and cell growth. The gas fermentation could be significantly enhanced under a raised pressure, resulting in a higher growth rate (0.12 h ?1 ), cell density (18 g L ?1 ), and gas uptake rate (200 mmole L ?1 h ?1 ) than a fermentation under atmospheric pressure. The gain, however, was not proportional to the pressure increase as predicted by Henry’s law. The hydrolysates of cell mass were found a good source of nutrients and the organic nitrogen was equivalent to or better than ammonium nitrogen for chemolithotrophic growth of C. necator on carbon dioxide.
机译:Cupriavidus necator是一种兼性的氢氧化细菌,其生长在二氧化碳,氢气和氧气上,以提供增值产品。高细胞密度和高生产率是气体发酵的目标,但由于它们在水性介质溶液中的溶解度低而受到气体底物的限制。通过(i)添加正十六烷作为气体载体以增加体积传质系数(k L a)和气体溶解度,(ii)在升高的气压下使C.necator生长,以及(iii)研究气体发酵的增强)使用细胞团水解产物作为化营养生长的营养物质。与以前的研究相比,气体载体对气体传质和细胞生长几乎没有正面但负面的影响。在升高的压力下,气体发酵可以显着增强,从而导致生长速率(0.12 h?1),细胞密度(18 g L?1)和气体吸收速率(200 mmole L?1 h?1)更高。在大气压下发酵。但是,增益与亨利定律所预测的压力增加不成比例。发现细胞团的水解产物是良好的养分来源,并且有机氮等于或优于铵氮,以便使硝化梭状芽孢杆菌在二氧化碳上进行化学营养生长。

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