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Sugars as Energy Storage Molecules01:10

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Sugar (a simple carbohydrate) metabolism (chemical reactions) is a classic example of the many cellular processes that use and produce energy. Living things consume sugar as a major energy source because sugar molecules have considerable energy stored within their bonds. Consumed carbohydrates have their origins in photosynthesizing organisms like plants. During photosynthesis, plants use the energy of sunlight to convert carbon dioxide gas into sugar molecules, like glucose. Because this...
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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...
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Fruit Development, Structure, and Function01:58

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Fruits form from a mature flower ovary. As seeds develop from the ovules contained within, the ovary wall undergoes a series of complex changes to form fruit. In some fruits, such as soybeans, the ovary wall dries; in other fruits, such as grapes, it remains fleshy. In some cases, organs other than the ovary contribute to fruit formation; such fruits are called accessory fruits.
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Carbohydrates are an essential part of the diet in humans and animals. Grains, fruits, and vegetables are natural sources of carbohydrates that provide energy to the body, particularly through glucose, a simple sugar that is a component of starch and an ingredient in many staple foods. The stoichiometric formula (CH2O)n, where n is the number of carbons in the molecule represents carbohydrates. In other words, the ratio of carbon to hydrogen to oxygen is 1:2:1 in carbohydrate molecules. This...
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热带水果种子粉的结构-功能洞察力,用于高价值应用.

M A Morales-Ovando1, M E Domínguez-Espinosa2, R M Sánchez-Albores2

  • 1Facultad de Ciencias de la Nutrición y Alimentos, Universidad de Ciencias y Artes de Chiapas (UNICACH), Tuxtla Gutiérrez, 29039, Chiapas, Mexico.

International journal of biological macromolecules
|January 11, 2026
PubMed
概括

热带水果种子提供可持续的粉来源. 来自瓜马,华,果和兰布坦种子的粉具有多样性的特性,使其成为食品和工业应用的可行的替代品.

关键词:
结晶性是指结晶性是指结晶性.功能应用程序 功能应用程序凝化是一种凝化过程.物理化学特性 物理化学特性类风病行为 类风病行为热带种子粉 热带种子粉

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科学领域:

  • 食品科学 食品科学 食品科学
  • 材料科学 是一种材料科学.
  • 可持续化学 可持续化学

背景情况:

  • 热带水果种子是丰富的农业副产品,经常被丢弃.
  • 这些种子含有大量的粉,具有独特的特性.
  • 提升果粉的价值与循环经济原则保持一致.

研究的目的:

  • 为了描述来自瓜玛,胡亚,果和兰布坦种子的粉.
  • 评估它们的物理化学,形态学,热学,功能和学特性.
  • 探索它们作为传统粉的可持续替代品的潜力.

主要方法:

  • 从热带水果种子中提取粉的水性提取.
  • 使用X射线衍射,SEM,DSC和风湿学分析进行表征.
  • 功能性测试包括膨胀力,溶解性和凝度.

主要成果:

  • 粉的特性有显著的变化:粉含量 (12.6-34.8%),颗粒大小 (3.2-18.7微米).
  • 瓜马粉显示出高结晶度和膨胀能力;果粉具有低的凝化参数和良好的糊状清晰度.
  • 兰布坦粉形成了坚固的凝,而胡亚粉提供了初始清晰度和剪切稳定性.

结论:

  • 热带水果种子粉具有多样化,有价值的特性.
  • 这些粉可以作为食品,制药和工业部门的可持续替代品.
  • 水果种子的废弃物利用支持环境可持续性和生物经济.