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Best Price Food Grade Amino Acid Beta Alanine Powder
Product Overview:
β-Alanine powder is also known as β-amino-propionic acid, 3-amino-propionic acid. White diamond shaped crystal or powder. Molecular weight 89.09. Melting point 200℃ (decomposition). The relative density is 1.437. Soluble in water, slightly soluble in methanol and ethanol, insoluble in ether and acetone. Beta-alanine is a non-essential amino acid; it is the only naturally occurring beta-amino acid. In nature, it can exist in free state in the root nodules of legumes, in tea leaves, brain hydrolysates of mammals, and in tobacco leaves and smoke. Beta-alanine usually works with histidine to produce carnosine, which is stored in our skeletal muscles.
Best Price Food Grade Amino Acid Beta Alanine Powder Attributes
Best Price Food Grade Amino Acid Beta Alanine Powder
CAS:107-95-9
MF:C3H7NO2
MW:89.09
EINECS:203-536-5
Specification:99% min β-Alanine powder
Sample:β-Alanine powder Avaliable
Keywords:β-Alanine powder
Appearance:white powder
Storage: Cool Dry Place
Brand:Global ASAP Nutrition Factory
Shelf Life: 2 Years
Test Method: HPLC
Best Price Food Grade Amino Acid Beta Alanine Powder Details
Product Name | Sport Nutrition supplement Beta Alanine Powder 98% Beta-Alanine |
CAS No. | 107-95-9 |
Appearance | White powder |
MF | C3H7NO2 |
Purity | 99% min beta alanine powder |
Keywords | beta alanine powder, beta alanine,alanine |
Storage | Keep in a cool, dry, dark location in a tightly sealed container or cylinder. |
Shelf Life | 24 Months |
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Uses and synthesis of beta-alanine powder
β-Alanine powder is also known as β-amino-propionic acid, 3-amino-propionic acid. White diamond shaped crystal or powder. Molecular weight 89.09. Melting point 200℃ (decomposition). The relative density is 1.437. Soluble in water, slightly soluble in methanol and ethanol, insoluble in ether and acetone. Beta-alanine is a non-essential amino acid; it is the only naturally occurring beta-amino acid. In nature, it can exist in free state in the root nodules of legumes, in tea leaves, brain hydrolysates of mammals, and in tobacco leaves and smoke. Beta-alanine usually works with histidine to produce carnosine, which is stored in our skeletal muscles.
Functions of β-Alanine powder
β-Alanine powder is mainly used as a raw material for the synthesis of calcium pantothenate in medicine and feed additives, and can also be used as a corrosion inhibitor for electroplating, as a biological reagent and as an intermediate for organic synthesis. Used as food, health additives.β-Alanine is mainly used as a raw material for the synthesis of calcium pantothenate in medicine and feed additives, and can also be used as a corrosion inhibitor for electroplating, as a biochemical reagent and an intermediate for organic synthesis.
Improve muscle endurance: By buffering muscle acid, beta-alanine can help muscles resist fatigue for longer periods of time, thereby improving muscle endurance, especially in high-intensity exercises that last from 30 seconds to 10 minutes, such as sprinting, swimming, weightlifting, etc.
Increase exercise capacity: Exercise capacity refers to the total amount of exercise that can be completed before fatigue sets in. Supplementation with beta-alanine can help athletes train more, which may improve athletic performance.
Delay fatigue: By reducing muscle acid, beta-alanine can help delay the onset of fatigue during exercise, allowing athletes to maintain higher exercise intensity for longer periods of time.
May increase muscle strength and power: Some studies have shown that beta-alanine supplementation may also have a certain positive effect on muscle strength and power, but research results in this regard are not completely consistent.
Benefit of β-Alanine powder
1. Improved Muscular Endurance:
Mechanism of Action: β-Alanine is a key precursor for the synthesis of carnosine. Carnosine is present in muscle cells and can buffer the acidic substances (mainly hydrogen ions) produced during high-intensity exercise. When muscle acid accumulates too much, it will cause muscle fatigue and affect exercise performance. By increasing the content of carnosine in muscles, β-Alanine can help muscles maintain their contraction ability for longer, thereby improving muscle endurance.
Actual Effect: This means that when doing exercises that require sustained effort, such as medium-distance running, swimming, rowing, high-intensity interval training (HIIT), etc., you can persist longer or complete more reps or sets before fatigue sets in.
2. Increased Exercise Capacity:
Mechanism of Action: Exercise capacity refers to the total amount of exercise the body can complete before fatigue begins to limit exercise. By delaying the onset of fatigue, β-Alanine allows you to complete more work in a training or competition.
Actual effect: This is very beneficial for projects that require a lot of repetitive movements or long-term continuous exercise, such as multiple sets of exercises in strength training, or sports that require repeated sprints.
3. Delayed Muscle Fatigue:
Mechanism of action: As mentioned earlier, one of the main causes of muscle fatigue is the accumulation of acidic substances. As an effective intracellular buffer, carnosine can neutralize these hydrogen ions and maintain a stable pH value in muscle cells, thereby delaying the onset of fatigue.
Actual effect: You will feel less tired during exercise and be able to maintain a higher intensity for a longer time.
4. Enhanced High-Intensity Exercise Performance:
Scope of application: The benefits of beta-alanine are most significant in high-intensity exercises lasting from 30 seconds to 10 minutes. These types of sports include sprinting, middle-distance running, swimming, weightlifting, fighting, football, basketball and other sports that require explosive power and repetitive high-intensity output.
Actual Results: Athletes and fitness enthusiasts may find that they can run faster, lift heavier, jump higher, or perform longer in these activities.
Production methodprocess of β-Alanine powder
Acrylonitrile reacts with ammonia in diphenylamine and tert-butanol solution at 109℃ and 1176.798 kpa to form β-aminopropionitrile, then reacts with sodium hydroxide to form β-aminopropionate sodium, and finally acidized with hydrochloric acid to form β-Alanine powder.


