相关实验视频
Updated: Sep 9, 2025

05:17
Preparation of High-Quality Fermented Fish Product
Published on: August 23, 2019
10.5K
通过酸面粉发酵利用面包残留物:从面包废物到面包味道
Simonetta Fois1, Valentina Tolu1, Vanna Sanna1
1Porto Conte Ricerche, Loc. Tramariglio, 07041 Alghero, Italy.
Microorganisms
|August 28, 2025
概括
这项研究探讨了使用剩余的面包残留物作为carasau面包的酸面粉基质. 用小麦中间体补充残留物改善了微生物活动,产生了高品质的面包,促进了循环经济.
科学领域:
- 食品科学
- 微生物学
- 可持续的农业
背景情况:
- 食物浪费,特别是剩余的面包, 是一个重要的全球问题.
- 通过创新烤工艺对食物浪费的利用对于可持续性至关重要.
- 酸面粉发酵可以提高面包的质量和保质期.
研究的目的:
- 为了研究面包残留物作为酸面粉生产的基质.
- 评估这种酵母在新制过程中的重复使用.
- 在食品行业推广循环经济原则.
主要方法:
- 用精选的乳酸细菌和酵母菌株对基质 (面包残留物,小麦中间体残留物,粉) 进行注射.
- 在5天的时间里使用反向的酸面粉.
- 细菌学,物理化学和感官分析酸面粉和最终面包产品.
主要成果:
- 增加小麦中间体的面包残留提高了微生物性能,pH值从6.0降至4.5左右.
- 由残留物和中间体生产的卡拉萨乌面包的物理化学特性与商业面包师的酵母面包相似.
- 感官评估显示,使用新型酵母面包制成的面包的可接受性更高 (7.0对6.0).
结论:
- 添加小麦中间体的面包残留是一种可行的酸面基质.
- 再利用食品废弃物中的酸面粉可以生产出高品质的卡拉索面包.
- 这种方法通过减少食物浪费和创造增值产品来支持循环经济.
相关概念视频
Carbohydrate Digestion
117.3K
Carbohydrate digestion and metabolism break down simple and complex carbohydrates from food into saccharides (i.e., sugars) for the body to use as energy. Carbohydrate digestion starts in the mouth during mastication, or chewing. The masticated carbohydrates remain intact in the stomach. Digestion resumes in the duodenum of the small intestine, where pancreatic alpha-amylase and brush border enzymes of the microvilli convert complex carbohydrates to monosaccharides. Finally, the monosaccharides...
117.3K
Loss of Carboxy Group as CO2: Decarboxylation of β-Ketoacids
3.3K
Carboxylic acids, upon heating, undergo a decarboxylation reaction by releasing carbon dioxide gas. Monocarboxylic acids do not undergo decarboxylation easily. However, a silver salt of carboxylic acid reacts with bromine or iodine under high temperature to release carbon dioxide gas and forms halide with one less carbon. This reaction is called the Hunsdiecker reaction.
3.3K
Microbial Fermentation
292
Fermentation is a crucial anaerobic metabolic process that enables microbes to derive energy from sugar without relying on oxygen or an electron transport chain. This process is fundamental to various biological and industrial applications and is classified based on the metabolic products generated.Role of Pyruvate in FermentationPyruvate and its derivatives serve as key electron acceptors in fermentative pathways. The oxidation of NADH to regenerate NAD+ is essential for the continuation of...
292
Loss of Carboxy Group as CO2: Decarboxylation of Malonic Acid Derivatives
2.1K
Just like β-keto acids—which upon thermal decarboxylation form ketones—β-dicarboxylic acids undergo decarboxylation to generate monocarboxylic acids with the liberation of carbon dioxide.
2.1K
Carbohydrate Absorption
1.5K
Carbohydrates are essential macronutrients that serve as the body's primary energy source. Their digestion begins in the mouth, where salivary amylase partially breaks down complex carbohydrates such as starch into smaller oligosaccharides. This mechanical and enzymatic activity prepares carbohydrates for further processing in the gastrointestinal tract.
After being swallowed, the partially digested carbohydrates mix with gastric secretions in the stomach. However, the acidic environment...
After being swallowed, the partially digested carbohydrates mix with gastric secretions in the stomach. However, the acidic environment...
1.5K
Introduction to Carbohydrates
14.2K
Carbohydrates, proteins, and fats are the primary macronutrients in the human diet. However, carbohydrates are the most favored source of energy in the body. They can be found in a wide variety of foods, including whole grains, fruit, and vegetables, in various forms, such as sugars, starch, and dietary fiber. Based on their structure, carbohydrates are classified into three main classes— monosaccharides, disaccharides, and polysaccharides. The body's cells can only utilize simple...
14.2K

