Huijia Group was established in 2007, driven by synthetic biotechnology, focusing on the core needs of users, with high quality, low price, and convenience, to build a product system and operation system. Based on a profound understanding and research of the physiological process of living organisms, Huijia integrates the concept of green technology into new biotechnology and innovative formulation processes. Care more, as a subsidiary of Huijia Group, helps to enhance products through fermentation processes. As a national high-tech enterprise, Vegamax has established 6 production bases and has many years of experience in the production of food ingredients and animal health products. As a leader in the microbial fermentation industry, we have 20 years of fermentation experience and effectively improve bioavailability.
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Huijia Group was established in 2007, driven by synthetic biotechnology, focusing on the core needs of users, with high quality, low price, and convenience, to build a product system and operation system.
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Care More has a rich product catagory, and its products and services provide veterinarians, farmers and pet owners, food & cosmetic industry with a comprehensive series of products and knowledge services to help them deal with the various problems that may arise during the process, making health problems easier to deal with. The products mainly include animal, pet, food, cosmetics, plant.
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The Green Technology Research Institute is headed by Dr. Yang Caimei, a professor/doctoral supervisor at Zhejiang Agriculture and Forestry University and a provincial expert in Zhejiang Province. Currently, the research and development team has more than 50 master's and doctoral level R&D talents from Zhejiang University, Tsinghua University, and Max Planck Institute in Germany, including 8 PhDs, 32 graduate students, 5 national level experts, and 2 international consultants.
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α-monolaurin 90% is well-known fat-like, heat-stable molecule produced by the esterification of lauric acid (a 12-carbon MCFA) and glycerol.It is not only an excellent emulsifier, but also a safe and efficient broad-spectrum antibacterial agent. It can act on the gap of membrane lipid bilayer structure of envelope viruses, by disrupting the lipid envelope, alpha monolaurin causes the envelop viruses to lose its ability to survive and replicate.
Glyceryl tributyrate is made from butyric acid and glycerol according to a certain ratio, under acidic catalyst by esterification reaction, butyric acid can be used for mucosal cell energy supply, so that the intestinal mucosal cells rapid proliferation and differentiation, repair of broken and aging mucosal cells, and inhibit the harmful intestinal bacteria, and promote the absorption and utilization of nutrients.
SmartEO is a unique essential oil which is water-soluble with advanced cross-link technology.
Tert-Butyl alcohol is the simplest tertiary alcohol, with a formula of (CH3)3COH (sometimes represented as t-BuOH). Its isomers are 1-butanol, isobutanol, and butan-2-ol. tert-Butyl alcohol is a colorless solid, which melts near room temperature and has a camphor-like odor. It is miscible with water, ethanol and diethyl ether.
Advantages of T-Buty
The high-content liquid raw material T-buty95 offers a 30% reduction in the required amount compared to powdered formulations available on the market, resulting in significant cost savings for feed mills. Additionally, this raw material provides a price advantage, making it an ideal choice for feed mills aiming to improve cost-effectiveness and operational efficiency.
Tributyrin undergoes a similar digestive process in animals to that of lipids, so it is only slightly broken down in the stomach. In the intestines, tributyrin is hydrolyzed into glycerol monoester and two butyric acids by pancreatic lipase. The butyric acids are rapidly absorbed by the small intestine and enter the bloodstream. Compared to sodium butyrate, tributyrin can reduce the consumption of stomach acid and improve the utilization of butyric acid.
The liquid raw material T-buty95 can be directly mixed with fats or formic acid in feed, and then sprayed onto the feed surface through the system, making it easier to operate and ensuring more even distribution.
Glycerol tributyrate is an animal feed additive that is used to control the levels of histamine in food. Glycerol tributyrate inhibits the production of histamine by competing with histidine for binding to the enzyme histidine decarboxylase, which is involved in histamine synthesis. It also prevents the formation of butyric acid, a toxic metabolite of amino acids and fatty acids. The particle size (particle size) of glycerol tributyrate is less than 1 micron, which makes it suitable for oral administration. This product has not been tested on humans or animals for safety or efficacy and should be used only as directed by a veterinarian.
Glycerol tributyrate, 98%, C15H26O6, CAS Number-60-01-5, tri-n-butyrin, glyceryl tributyrate, propane-1,2,3-triyl tributyrate, glycerol tributyrate, glycerol tributanoate, glyceroltributyrin, tributyrin, butyrin, butyryl triglyceride, tributin, 1000g, 1714746, 307 deg.C to 308 deg.C, CHEBI:35020
Glycerol tributyrate is a triglyceride that may inhibit cell growth and induce cell differentiation. It is used to to induce differentiation of malignant cells followed by arrest of cell growth and apoptosis.
Applications:Glycerol tributyrate is a triglyceride that may inhibit cell growth and induce cell differentiation. It is used to to induce differentiation of malignant cells followed by arrest of cell growth and apoptosis.
Solubility:Not miscible in water.
Notes:Incompatible with strong oxidizing agents, Strong acids, Strong bases. Use with adequate ventilation.
The structure of tert butyl can help us understand why the substance is so useful for certain things. It's a cyclic chemical that can have one, two or three carbon rings. The tert means that there are three carbon rings, but only one of them actually shares a side with another ring. In other words, the oxygen is in the middle of the three rings and it doesn't share any space with them. Another term for tert butyl is t-butyl and they all refer to the same thing.This claerly shows what is tert butyl
When you burn tert butyl it doesn't produce anything very toxic. However, it does produce things like t-butyl alcohol, which is itself flammable. Tert butyl can easily be released into the air and it's classified as a toxic substance by the European Union. This is why it's very important to wear gloves when working with tert butyl and any other chemical that's flammable.
It's important to note that there aren't any serious risks associated with tert butyl in the amounts that are usually used. However, it is toxic and flammable so taking proper precautions should be taken by anyone who needs to work with this chemical. It's an excellent substance that can do a lot of great things as long as it's handled safely.
|
Formula |
C4H10O |
|
Formula mass |
74.12 |
|
Melting point, °C |
25.3 |
|
Boiling point, °C |
82.2 |
|
Vapor pressure, mmHg |
46 (25 C) |
|
Vapor density (air=1) |
2.55 |
|
Saturation Concentration |
3.96% at 20 C |
|
Evaporization number |
1.05 (butyl acetate = 1) |
|
Critical temperature |
233 |
|
Critical pressure |
39.2 |
|
Density |
0.7887 g/cm3 (20 C) |
|
Solubility in water |
Soluble |
|
Viscosity |
3.38 cp (30 C) |
|
Surface tension |
20.7 g/s2 |
|
Refractive index |
1.38468 (20 C) |
|
Dipole moment |
1.7 D (20 C) |
|
Dielectric constant |
10.9 (30 C) |
|
Partition coefficient, pKow |
0.35 |
|
Heat of fusion |
6.8 kJ/mol |
|
Heat of vaporization |
37.9 kJ/mol |
|
Heat of combustion |
-2411 kJ/mol |
It's used in the industrial production of other chemicals.
In this regard, it might be more accurate to say that tert butyl is a chemical precursor for certain other chemicals rather than being an actual product in its own right. It's also used in the production of substances like dioctyl phthalate and methyl t-butyl ether.
It's used in the production of better paint.
This was the first use that was discovered for the substance and it's the main reason why it's so commonly used in some countries. The manufacturers of paints use tert butyl to make paint more stable and durable. It's also one of the components necessary to produce glazes that are designed to last longer.
It can be used as a solvent for different materials (solvents).
Various solvents include many different substances, like glycol ether, acetone and hexane. Often, tert butyl is used to extract a specific component of another substance. The reason why tert butyl is sometimes preferred is that it doesn't dissolve the component that it's trying to get at.
Tert butyl can be used in the production of rubber types like neoprene and nitrile rubber.
This type of rubber is particularly resistant to chemicals, heat and cold making it ideal for many different tasks. Neoprene and nitrile are two examples where this material is used frequently.
It's used in medicine for things like anti-fungal and anti-bacterial products as well as medical devices (like IV bottles).
It's important to keep in mind that there are other uses for tert butyl as well, for instance it can be found in products like topical disinfectants or antiseptics. This substance is used in the production of different products. However, it's mainly used as a precursor for other substances. It's also an important chemical for medical devices. In fact, quite a lot of medical devices, like IV fluids, require this chemical to produce what they need.
Preparation Method for Glyceryl Tributyrate
Butyric acid direactive glyceride (glyceryl tributyrate) is that chemical formula is C 15h 26o 6short-chain aliphatic ester, be the product after butyric acid and glycerine esterification, be polyvalent alcohol type nonionic surface active agent.From its molecular structure, can serve as w/o type emulsifying agent, can make again O/W type emulsifying agent.
Taking glycerine and butyric acid as raw material, tetracol phenixin is band aqua, and phosphoric acid is catalyzer, mix, make butyric acid direactive glyceride after reflux, purification, wherein the content of butyric acid direactive glyceride is 60.2%.
After having reacted, need the saturated common salt water washing that contains in a large number alkali to remove phosphoric acid, cause butyric acid list double glyceride productive rate low, and produce a large amount of waste water; Use the catalyzer of mineral acid as esterification, the inferior side reaction of butyrin can occur; In addition,, because the band aqua tetracol phenixin using is toxic substance, large usage quantity need to be carried out purifying just can obtain final product.
Taking glycerine and butanic acid as raw material, add catalyzer post-heating to heat up and be stirred to 100~110 DEG C, reflux also drips butyryl oxide simultaneously, in the time dropping to reaction solution detection without water generates, stopped reaction, stirring cools to room temperature, filter to isolate catalyzer, obtain butyric acid direactive glyceride, described catalyzer is the mixture of sulfonic acid mesopore molecular sieve and ZSM-5 acid zeolite, the weight ratio of described sulfonic acid mesopore molecular sieve and ZSM-5 acid zeolite is 3:1, the consumption of described catalyzer is 5~10% of glycerine and butanic acid gross weight.
Under the condition of 35~40 DEG C, template P123 to be dissolved in hydrochloric acid soln, stirring mixes it, add again tetraethoxysilance, p-methyl benzenesulfonic acid, continue to stir 24~30h, crystallization 24~48h, filter, wash and be dried, finally remove template at 500 DEG C of calcining 5~8h, then filter, wash and be dried, obtain mesoporous molecular sieve SBA-15-SO 3h.
P123 adopts known triblock copolymer, and full name is polyoxyethylene-poly-oxypropylene polyoxyethylene, and its molecular formula is PEO-PPO-PEO, and its general formula is EO 20pO 70eO 20.
Unlike other isomers of butanol, tert-butyl alcohol, as a tertiary alcohol, has no hydrogen atom next to hydroxy-group, which makes it resistant to oxidation to carbonyl compounds.
Tert-Butyl alcohol is deprotonated with a strong base to give the alkoxide. Particularly common is potassium tert-butoxide, which is prepared by treating tert-butanol with potassium metal.
K + t-BuOH → t-BuO−K+ +½ H2
The tert-butoxide is a strong, non-nucleophilic base in organic chemistry. It readily abstracts acidic protons from substrates, but its steric bulk inhibits the group from participating in nucleophilic substitution, such as in a Williamson ether synthesis or an SN2 reaction.
tert-Butyl alcohol reacts with hydrogen chloride to form tert-butyl chloride.
O-Chlorination of tert-butyl alcohol with hypochlorous acid to give tert-butyl hypochlorite:
(CH3)3COH + HOCl → (CH3)3COCl + H2O
All staff must wear lab coats and safety glasses at all times when working with hazardous chemicals in the laboratory.
Never work alone when handling highly hazardous chemicals, especially organic lithium reagents. Always let others in the laboratory know when you are working with these solutions.
Never work with hazardous chemicals unless there is an eyewash and safety shower nearby. Be sure to know where they are and the procedures to follow in the event of an emergency.
Organic lithium compounds cannot be exposed to the atmosphere since they will react spontaneously with moisture in the air. Although purchased in bottles that self-seal, they will degrade after use and should be disposed of as hazardous waste within 1 month of opening.
Work inside the fume hood with the horizontal sash positioned in front of you to protect you from any splash that may occur. If your fume hood does not have a horizontal sash, use a splash guard positioned in front of the bottle when drawing the liquid into the syringe.
Go through your inventories and dispose of any opened containers of these reagents that you are not planning on using in the near future.
Keeping these rules in mind when working with volatile compounds such as t-Butyl Lithium can be a big help in preventing tragedies from occurring in your lab.
Keep away from heat, sparks, and flame. Keep away from sources of ignition. Store in a cool, dry, well-ventilated area away from incompatible substances. Flammables-area.
Wash thoroughly after handling. Remove contaminated clothing and wash before reuse. Use only in a well ventilated area. Ground and bond containers when transferring material. Use spark-proof tools and explosion proof equipment. Empty containers retain product residue, (liquid and/or vapor), and can be dangerous. Avoid contact with heat, sparks and flame. Do not get on skin or in eyes. Do not ingest or inhale. Do not pressurize, cut, weld, braze, solder, drill, grind, or expose empty containers to heat, sparks or open flames.
Eyes: Wear appropriate protective eyeglasses or chemical safety goggles as described
Skin: Wear appropriate protective gloves and appropriate protective clothing to prevent skin exposure.
A full facepiece respirator with organic vapor cartridge may be worn up to 50 times the exposure limit or the maximum use concentration specified by the appropriate regulatory agency or respirator supplier, whichever is lowest. For emergencies or instances where the exposure levels are not known, use a full-facepiece positive-pressure, air-supplied respirator.
Avoid runoff into storm sewers and ditches which lead to waterways. Clean up spills immediately, using the appropriate protective equipment. Remove all sources of ignition. Absorb spill using an absorbent, non-combustible material such as earth, sand, or vermiculite. Use a spark-proof tool. A vapor suppressing foam may be used to reduce vapors.
Stability Stable at room temperature in closed containers under normal storage and handling conditions.Strong oxidizing agents.
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