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Whey Fermentation by Anaerobiospirillum succiniciproducens for Production of a Succinate-Based Animal Feed Additive

机译:厌氧螺菌产琥珀酸乳清发酵生产基于琥珀酸酯的动物饲料添加剂

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摘要

Anaerobic fermentation processes for the production of a succinate-rich animal feed supplement from raw whey were investigated with batch, continuous, and variable-volume fed-batch cultures with Anaerobiospirillum succiniciproducens. The highest succinate yield, 90%, was obtained in a variable-volume fed-batch process in comparison to 80% yield in a batch cultivation mode. In continuous culture, succinate productivity was 3 g/liter/h, and the yield was 60%. Under conditions of excess CO2, more than 90% of the whey-lactose was consumed, with an end product ratio of 4 succinate to 1 acetate. Under conditions of limited CO2, lactose was only partially consumed and lactate was the major end product, with lower levels of ethanol, succinate, and acetate. When the succinic acid in this fermentation product was added to rumen fluid, it was completely consumed by a mixed rumen population and was 90% decarboxylated to propionate on a molar basis. The whey fermentation product formed under excess CO2, which contained mainly organic acids and cells, could potentially be used as an animal feed supplement.
机译:用生厌乳螺旋菌的分批,连续和定量补料分批培养法研究了用生乳清从厌氧发酵工艺生产富含琥珀酸盐的动物饲料的方法。与分批培养模式下的80%产率相比,可变体积补料分批工艺获得的琥珀酸产率最高,为90%。在连续培养中,琥珀酸盐生产率为3g /升/ h,产率为60%。在过量CO2的条件下,消耗了超过90%的乳清-乳糖,最终产物比率为4琥珀酸酯与1乙酸酯。在二氧化碳含量有限的条件下,乳糖仅被部分消耗,而乳酸是主要的最终产品,乙醇,琥珀酸盐和乙酸盐的含量较低。当将这种发酵产物中的琥珀酸添加到瘤胃液中时,混合瘤胃群体将其完全消耗掉,并且以摩尔为基准将其90%脱羧为丙酸酯。在过量二氧化碳下形成的乳清发酵产物,主要包含有机酸和细胞,可以用作动物饲料补充剂。

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