2016 High quality Propolis block Factory in Chile


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2016 High quality Propolis block Factory in Chile Detail:

[Products Name]  Propolis block, pure propolis, raw propolis

[Specification]  Propolis content 90%,95%

[Gerneral feature]

1. Low antibiotics

2. Low PAHs, can approve to 76/769/EEC/German:LMBG;

3.Organic certified by ECOCERT, according to EOS & NOP organic standard;

4.Pure natural propolis;

5.High content of flavones;

6.Low temperature extracted, retain high activity of all nutritions;

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[Packaging]
1. 1kg/aluminum foil bag, 20kgs/carton.

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[How to get it]

First, we collect raw propolis from beehives, then extract by low temperature with ethanol. Filter and concentrate, we get the pure propolis block at 90% to 95%.

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[Introduction]

Propolis comes from the substance like natural resin, which is collected by the bees from exudates of plants branches and bud the chemical substances of Propolis are found to be various, such as beeswax, resin, incense lipids, aromatic oil, fat-soluble oils, pollen and other organic matter. Studies have shown that the source of propolis resin in material has three types: bees collected plants secreted fluid, secretion in vivo metabolism of bee, and involvement in the process of forming the material.

We can supply Propolis Extract with food-grade and medicine-grade .The raw materiall is came from non-polluting food grade propolis .Propolis extract was made of high-grade propolis. It maintains the propolis effective ingredients during the procedure of extraction under constant low temperature , taking off the useless substances and sterilization.

[Function]

Propolis is a natural product processed by bees mixed with glutinous and its secretion.

Propolis contains more than 20 kinds of useful flavonoids, rich vitamins, enzymes, amino acids and other microelements, etc. Propolis is called “purple gold” owing to its valued nutrients.

Propolis can remove free radical, lower blood sugar and blood fat, soften blood vessels, improve micro-circulation, enhance immunity, anti-bacteria and anti-cancer.


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Bear "Customer first, High quality first" in mind, we perform closely with our consumers and provide them with efficient and experienced services for 2016 High quality Propolis block Factory in Chile , The product will supply to all over the world, such as: Ghana, Hamburg, Seychelles, Ought to any of these products be of curiosity to you, remember to allow us to know. We are going to be satisfied to give you a quotation on receipt of one's in depth specs. We've our private experienced R&D enginners to meet any of one's requriements, We appear forward to receiving your enquires soon'and hope to have the opportunity to work together with you in the future. Welcome to check out our company.


  • In this video I discuss what are complex carbohydrates, and some foods that contain them. I also discuss what is starch food, and I cover some starchy foods. I also look at what are polysaccharides, and what are oligosaccharides, and how some oligosaccharides are prebiotic foods.

    Transcript (partial with notes).

    What are complex carbohydrates?

    Complex carbohydrates are made up of monosaccharides, or simple sugar molecules, not the table sugar that might come to mind, and these molecules are joined together to form long chains. There are mainly two classifications of complex carbohydrates, oligosaccharides, and polysaccharides.

    Oligosaccharides consist of 3 to 10 simple sugars joined together such as fructo-oligosaccharides which consist of a short chain of fructose molecules. Most oligosaccharides are not digested in the body because we lack an enzyme to break them down, meaning that some of them are a form of fiber.

    Some forms of oligosaccharides act as a prebiotic, which means they promote the growth of good gut bacteria. Foods that contain oligosaccharides include chicory root, artichokes, onions, garlic and asparagus.

    Polysaccharides consist of more than 10 simple sugars joined together. Starch and cellulose are 2 of the main polysaccharides. Starch consists of many glucose molecules joined together, and the body can break them down and use the glucose for energy. Starchy foods include potatoes, rice, wheat, and corn.

    Cellulose also consists of many bonded glucose units, however their bond are different that starches, and the body cannot break them down. So, cellulose is a form of fiber.

    Cellulose fiber helps remove waste from the body and it can also bind to excess cholesterol and sugar in the intestines and remove them in solid waste. Foods high in cellulose include fruits, veggies, grains and nuts.

    Complex carbohydrates are digested more slowly than simple carbs, as it takes the body longer to break them down, and their fiber content naturally slows digestion, making you feel fuller.



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    This preface is very short, not least because an introductory chapter incorporating much of the material of a conventional preface has been included and covers most of the important points in somewhat greater detail than we have scope for here. The reader should consult this as a guide to the structure of this volume, and the purpose it serves. Nevertheless, some general comments are pertinent. At a practical level, some understanding of the properties of food biopolymers is presumably historical, perhaps dating back to the invention of fire, when stone age man first discovered that heating animal carcasses increased their palatability. Indeed, one is reminded of the essay of Charles Lamb in which he claims that roast pork was first discovered by accident, when the pig-sty of an ancient Chinese village was accidentally burnt to the ground, consuming its unfortunate occupants. In the last 20 years, however, substantial scientific advances have been made in this area, by the application of ideas perhaps more common in other areas of macromolecular science to food biopolymer constituents, and this knowledge is now being applied in a non empirical manner to the development of new products. One very successful example of this approach is the work on low-fat ‘healthy option’ products in which understanding of the thermodynamics, interactions, structure and rheology of mixed protein-polysaccharide gelling systems is being employed. The present volume describes the application of modern macro molecular techniques to the characterisation of food biopolymers.

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