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Improvement of acetate production from lactose by growing Clostridium thermolacticum in mixed batch culture

机译:通过在混合分批培养中培养乳酸梭菌提高乳糖生产乙酸盐的能力

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摘要

Aims: The objective of this study was to increase the acetate production by Clostridium thermolacticum growing on lactose, available as a renewable resource in the milk and whey permeate from the cheese industry. Methods and Results: Experiments for increased acetate productivity by thermophilic anaerobes grown on lactose were carried out in batch cultures. Lactose at concentration of 30 mmol l(-1) (10 g l(-1)) was completely degraded by Cl. thermolacticum and growth rate was maximal. High concentrations of by-products, ethanol, lactate, hydrogen and carbon dioxide were generated. By using an efficient hydrogenotroph, Methanothermobacter thermoautotrophicus, in a defined thermophilic anaerobic consortium (58degreesC) with Cl. thermolacticum and the acetogenic Moorella thermoautotrophica, the hydrogen partial pressure was dramatically lowered. As a consequence, by-products concentrations were significantly reduced and acetate production was increased. Conclusion: Through efficient in situ hydrogen scavenging in the consortium, the metabolic pattern was modified in favour of acetate production, at the expense of reduced by-products like ethanol. Significance and Impact of the Study: The use of this thermophilic anaerobic consortium opens new opportunities for the efficient valorization of lactose, the main waste from the cheese industry, and production of calcium-magnesium acetate, an environmentally friendly road de-icer.
机译:目的:这项研究的目的是提高乳酸梭状芽孢杆菌在乳糖上生长的醋酸盐产量,乳糖可作为奶酪行业的牛奶和乳清渗透物中的可再生资源获得。方法和结果:分批培养进行了通过在乳糖上生长的嗜热厌氧菌提高乙酸盐产率的实验。浓度为30 mmol l(-1)的乳糖(10 g l(-1))被Cl完全降解。乳酸和生长速率最大。产生了高浓度的副产物,乙醇,乳酸盐,氢气和二氧化碳。通过在定义为Cl的嗜热厌氧财团(58°C)中使用有效的氢营养菌,甲烷甲烷热自养菌。在热乳酸菌和产热莫尔氏菌产热自养菌的作用下,氢分压显着降低。结果,副产物的浓度显着降低,乙酸盐的产生增加。结论:通过在联盟中有效的原位氢清除,改变了代谢方式,有利于乙酸盐的生产,但以减少副产物如乙醇为代价。该研究的意义和影响:使用这种嗜热厌氧性财团为乳糖(奶酪行业的主要废物)的有效增值和生产环保型道路除冰剂醋酸钙镁提供了新的机会。

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