首页> 外文期刊>Fermentation >Production of Fungal Biomass for Feed, Fatty Acids, and Glycerol by Aspergillus oryzae from Fat-Rich Dairy Substrates
【24h】

Production of Fungal Biomass for Feed, Fatty Acids, and Glycerol by Aspergillus oryzae from Fat-Rich Dairy Substrates

机译:富含脂肪的乳制品基质的米曲霉生产饲料,脂肪酸和甘油的真菌生物质

获取原文
           

摘要

Dairy waste is a complex mixture of nutrients requiring an integrated strategy for valorization into various products. The present work adds insights into the conversion of fat-rich dairy products into biomass, glycerol, and fatty acids via submerged cultivation with edible filamentous fungi. The pH influenced fat degradation, where Aspergillus oryzae lipase was more active at neutral than acidic pH (17 g/L vs. 0.5 g/L of released glycerol); the same trend was found during cultivation in crème fraiche (12 g/L vs. 1.7 g/L of released glycerol). In addition to glycerol, as a result of fat degradation, up to 3.6 and 4.5 g/L of myristic and palmitic acid, respectively, were released during A. oryzae growth in cream. The fungus was also able to grow in media containing 16 g/L of lactic acid, a common contaminant of dairy waste, being beneficial to naturally increase the initial acidic pH and trigger fat degradation. Considering that lactose consumption is suppressed in fat-rich media, a two-stage cultivation for conversion of dairy waste is also proposed in this work. Such an approach would provide biomass for possibly feed or human consumption, fatty acids, and an effluent of low organic matter tackling environmental and social problems associated with the dairy sector.
机译:乳制品废料是营养物质的复杂混合物,因此需要采用综合策略将其评估为各种产品。目前的工作为通过食用丝状真菌的深层培养将富含脂肪的乳制品转化为生物质,甘油和脂肪酸提供了更多见识。 pH影响脂肪降解,米曲霉脂肪酶在中性比酸性pH更具活性(17 g / L对0.5 g / L的甘油释放量);在鲜奶油的耕种过程中也发现了相同的趋势(12 g / L与1.7 g / L的释放甘油)。除甘油外,由于脂肪的降解,米糊中米曲霉生长期间分别释放了高达3.6和4.5 g / L的肉豆蔻酸和棕榈酸。这种真菌还能够在含有16 g / L乳酸(乳制品废物的常见污染物)的培养基中生长,有利于自然增加初始酸性pH值并触发脂肪降解。考虑到在富含脂肪的培养基中乳糖的消耗受到抑制,因此在这项工作中还提出了一种用于乳制品废物转化的两阶段培养方法。这种方法将为可能的饲料或人类消费提供生物质,脂肪酸以及低有机质废水,以解决与乳业相关的环境和社会问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号