Liquid Guanidine Hydrochloride
Aromatic sulfonic acid and its salts Sulfamic Acid Guanidine

Liquid Guanidine Hydrochloride

Lingxian Chemical

Specifications

HS Code

164483

Chemical Formula CH5ClN3.HCl
Molar Mass 118.56 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent odor
Solubility Highly soluble in water
Ph Acidic in aqueous solution
Density Approx. 1.39 g/cm³
Boiling Point Decomposes before boiling
Stability Stable under normal conditions, but reacts with strong oxidizing agents
Hazard Corrosive to skin, eyes, and respiratory system
Chemical Formula CH5ClN2O
Molecular Weight 95.52 g/mol
Appearance Colorless to pale yellow liquid
Odor Pungent odor
Solubility Soluble in water, ethanol, and many polar organic solvents
Density Approximately 1.16 g/cm³
Ph Acidic in solution
Boiling Point Around 180 - 185 °C
Stability Stable under normal conditions, but can react with strong oxidizing agents
Chemical Formula CH5ClN2O
Molar Mass 95.52 g/mol
Appearance Colorless to light yellow liquid
Odor Pungent odor
Solubility Highly soluble in water
Ph Acidic (pH around 4 - 5 in solution)
Density Approx. 1.16 g/cm³
Boiling Point Approx. 118 - 120 °C
Melting Point Approx. -45 °C
Stability Stable under normal conditions but can react with strong oxidizing agents
Chemical Formula CH5N3·HCl
Molar Mass 95.53 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent
Solubility In Water Highly soluble
Ph Acidic
Boiling Point Decomposes
Melting Point N/A (liquid form)
Density Approx. 1.2 - 1.3 g/cm³
Viscosity Low - medium
Stability Stable under normal conditions
Hazardous Nature Corrosive, harmful if swallowed or inhaled
Chemical Formula CH5N3·HCl
Molar Mass 95.53 g/mol
Appearance Colorless to slightly yellow liquid
Solubility Highly soluble in water
Ph 1 M Solution ~4.5 - 5.5
Density ~1.14 g/cm³
Boiling Point Decomposes before boiling
Melting Point ~118 - 121 °C (anhydrous solid)
Odor Pungent
Stability Stable under normal conditions but may react with strong oxidants
Chemical Formula CH5N3·HCl
Molar Mass 95.53 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent odor
Solubility In Water Highly soluble
Density Approx. 1.16 g/cm³
Ph Approximate For Dilute Solutions Acidic
Boiling Point Decomposes before boiling
Melting Point N/A (liquid form)
Stability Stable under normal conditions, but can react with strong oxidants
Vapor Pressure Low
Chemical Formula CH5ClN2O
Molecular Weight 95.52 g/mol
Appearance Colorless to pale yellow liquid
Odor Pungent odor
Solubility Soluble in water
Density Approx. 1.18 g/cm³
Ph Acidic (around pH 3)
Boiling Point 180 - 185 °C
Stability Stable under normal conditions
Corrosivity Corrosive to metals and tissue
Chemical Formula CH5N3·HCl
Molar Mass 95.53 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent odor
Solubility Highly soluble in water
Density Around 1.18 g/cm³
Ph Acidic in solution
Boiling Point Decomposes before boiling
Stability Stable under normal conditions but reactive with strong oxidizing agents
Hazard Class Corrosive, harmful if swallowed or inhaled
Chemical Formula CH5ClN2O
Molar Mass 95.52 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent odor
Density ~1.16 g/cm³
Solubility Highly soluble in water
Ph Acidic in solution
Boiling Point 180 - 182 °C
Melting Point ~ - 45 °C
Stability Stable under normal conditions, but can react with strong oxidizing agents
Chemical Formula CH5N3·HCl
Molar Mass 95.53 g/mol
Appearance Colorless to pale yellow liquid
Solubility In Water Highly soluble
Ph In Solution Acidic
Density Approx. 1.15 g/cm³
Boiling Point Decomposes before boiling
Melting Point Liquid at room temperature
Odor Pungent
Hazard Class Corrosive
Chemical Formula CH5ClN3.HCl
Molecular Weight 118.54 g/mol
Appearance Colorless to pale yellow liquid
Odor Pungent
Solubility Highly soluble in water
Density 1.19 - 1.21 g/cm³
Ph Approximate 1 - 3
Boiling Point Approx. 180 - 185 °C
Melting Point Below 0 °C
Flash Point Non - flammable
Stability Stable under normal conditions
Corrosivity Corrosive to metals and tissues
Chemical Formula CH5ClN2O.HCl
Molar Mass 118.53 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent
Density 1.15 - 1.20 g/cm³ (approximate)
Solubility In Water Highly soluble
Ph Approximate 1m Solution 1 - 2 (acidic)
Boiling Point Decomposes before boiling
Melting Point N/A (as liquid)
Stability Stable under normal conditions, but can react with strong oxidizing agents
Chemical Formula CH5ClN2O
Molecular Weight 95.52 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent odor
Solubility Highly soluble in water
Density 1.15 g/cm³ (approximate)
Ph Acidic in solution
Boiling Point 110 °C (decomposes)
Stability Stable under normal conditions, but can react with strong oxidizing agents
Corrosivity Corrosive to metals and tissues
Chemical Formula CH5ClN2O.HCl
Molar Mass 118.53 g/mol
Appearance Colorless to pale yellow liquid
Odor Pungent odor
Solubility Highly soluble in water
Density Approx. 1.17 - 1.2 g/cm³
Ph In Solution Acidic
Boiling Point Decomposes before boiling
Corrosivity Corrosive to metals and tissues
Chemical Formula CH5ClN2O.HCl
Appearance Colorless to light yellow liquid
Molecular Weight 118.53 g/mol
Solubility Highly soluble in water
Ph Approximate 1 - 3 (acidic)
Boiling Point 180 - 182 °C
Density Around 1.35 - 1.4 g/cm³
Odor Pungent, unpleasant odor
Corrosivity Corrosive to metals and some materials
Stability Stable under normal conditions but may react with strong oxidizing agents
Chemical Formula CH5N3·HCl
Molar Mass 95.53 g/mol
Appearance Colorless to pale yellow liquid
Solubility In Water Highly soluble
Ph Aqueous Solution Acidic
Boiling Point Decomposes
Melting Point −4.5 °C
Density ~1.16 g/cm³
Odor Pungent
Hygroscopicity Hygroscopic
Function In Biochemistry Denaturing agent for proteins
Chemical Formula CH5ClN2O.HCl
Molecular Weight 118.53 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent
Solubility Highly soluble in water
Ph Acidic
Density Approx. 1.15 - 1.25 g/cm³
Boiling Point Around 110 - 120 °C under certain conditions
Stability Stable under normal conditions but can react with strong oxidizing agents
Corrosivity Corrosive to metals and human tissues
Chemical Formula CH5ClN2O
Molar Mass 95.52 g/mol
Appearance Colorless to slightly yellow liquid
Odor Pungent
Solubility In Water Highly soluble
Ph Approximate 2 - 3 (in solution)
Density 1.15 - 1.20 g/cm³
Boiling Point 180 - 182 °C
Melting Point 12 - 15 °C
Vapor Pressure Low
Corrosivity Corrosive to metals and tissues
Packing & Storage
Packing 500 - gram bottle of Liquid Guanidine Hydrochloride, well - sealed for chemical storage.
Storage Liquid Guanidine Hydrochloride should be stored in a cool, dry, well - ventilated area away from heat sources and open flames. Keep it in a tightly - sealed container to prevent evaporation and contamination. Store it separately from oxidizing agents and incompatible substances. Avoid storing in areas prone to flooding or high humidity.
Shipping Liquid Guanidine Hydrochloride is shipped in specialized, leak - proof containers. It must adhere to strict chemical transportation regulations. Shipment is carefully monitored to prevent spills and ensure safe transit due to its chemical nature.
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Liquid Guanidine Hydrochloride Liquid Guanidine Hydrochloride Liquid Guanidine Hydrochloride
General Information
Frequently Asked Questions
What are the main uses of Liquid Guanidine Hydrochloride?
The use of guanidine in liquid solution is very important. It is of paramount importance in biological research. Guanidine acid can make the protein malleable, disassemble the high quality of the protein, and make it return to the polypeptide. This property can be used to study the folding of proteins, and to explore how proteins can form three kinds of polypeptides with specific functions.
In the process of protein purification, guanidine acid is also useful. If you want to divide a specific protein, it can be used to make the protein malleable, while the protein retains its solubility, and can be used for the purpose of preliminary separation. Furthermore, in the field of nucleic acid research, guanidine acid can be used for nucleic acid extraction. Because it can effectively break the nuclear membrane of the cell membrane, release nucleic acid, and inhibit the activity of nuclease, prevent nucleic acid degradation, and maintain the integrity of the extracted nucleic acid.
In the process of research, guanidine also has a place. Some research studies need to use it to modify the properties of protein, in order to estimate the interaction between protein and protein, and help the new technology. In the process of production, such as the production of some enzymes, guanidine can be used in the process of raw materials, to promote the release of enzymes and improve the efficiency of production. In addition, the liquid acid guanidine has important functions in biological, biological, and industrial domains, and promotes the development of the phase.
How safe is Liquid Guanidine Hydrochloride?
In the case of liquid guanidine acid, the nature is strong. It is often used for protein resistance in the chamber, which can break the high quality of protein and stretch the polypeptide.
Its safety, guanidine acid is corrosive, and the skin is damaged. It can be burned, causing pain, pain, and even pain. If it enters the eyes, it is particularly harmful, and it can damage the eyes. In severe cases, it may cause blindness. Inhaling it can stab the respiratory tract, causing coughing, respiratory distress, and exposure during the period, harming lung function.
Use it, and follow the standard procedure. Operators need to wear protective clothing, eyes, and gloves to ensure good health and prevent gatherings. If you are not careful, take a lot of water quickly and treat it. In this case, it is advisable to set the vasculature and dryness, avoid the coexistence of oxidation, etc., and prevent the damage from being reversed. In addition, when using liquid guanidine acid, you must be very careful to ensure safety.
What are the storage conditions for Liquid Guanidine Hydrochloride?
The liquid guanidine acid is active and sensitive, and it can be stored in the water, and it is subject to the system. The first is to avoid moisture, because it is easy to absorb. If it is placed in the water, it is quick to dissolve and easy to dissolve, and the equipment must be dense to prevent water vapor from entering the air. The next time it should be dark, when guanidine acid encounters or is exposed to light, it can be changed or changed, and the effect should be high. It should be stored in a dark and low temperature to ensure its safety. In addition, fire and oxygen, this equipment is flammable, and it is dangerous near fire, and the oxidizing materials are mixed, and it is easy to cause strong reactions, so it must be separated. The storage device, glass or plastic, can be used, however, avoid gold, because it has the risk of chemical reaction, and the equipment is not safe. If it does not exist, it will also be communicated. If it does not work, it will be tiring or cause trouble. Therefore, it is necessary to comply with the above regulations to ensure that the properties of guanidine acid are not damaged, and it is necessary to use it.
Liquid Guanidine Hydrochloride Reacts with Other Substances
In the case of liquid guanidine acid, the sexual activity is very high, and the substances often react. When encountering protein, it can break its properties and make it strong. Because guanidine acid has the ability to remove scale, it can cause protein to lose its natural function.
If it meets nucleic acid, guanidine acid also plays a role. It can dissolve the helix of nucleic acid and make the nucleic acid divided. This is because it can dry the nucleic acid base, and break down the nucleic acid two and three.
It also encounters some gold seeds, or produces a synthetic reaction. The nitrogen atom in guanidine acid has solitary seeds, which can be coordinated with gold seeds and form a fixed complex. This in turn may change the solubility and chemical properties of gold molecules.
And in the context of synthesis, guanidine acid can be filled. For example, in the synthesis of nitrogen-containing compounds, there are specific anti-steps, and other substances are reversed. There are new ones.
Furthermore, when it encounters water, it is hydrolyzed. Raw seeds, causing the solution to be acidic. This acidic environment can affect the chemical properties of surrounding substances, or lead to other associated compounds, changing the chemical balance of the system.
What is the market price range of Liquid Guanidine Hydrochloride?
The price of Guanfu Liquid+Guanidine+Hydrochloride, that is, the solution of guanidine hydrochloride, in the market, is difficult to determine. The change in its price is influenced by various factors.
First, the quality is fine and coarse, which has a lot to do with it. If the quality is pure and excellent, it is suitable for high-end experiments and medical research and development, the price will be high; if the quality is inferior, it can only be used for ordinary industrial purposes, and the price will be cheap.
Second, the amount is also the key. Buyers want a lot, and merchants may give discounts, so the price is slightly reduced; if the quantity is small, buy zero and sell zero, the price may be slightly higher.
Third, the supply and demand of the market has a huge impact. If the situation requires more supply and less supply, the price will rise; on the contrary, if the supply exceeds the demand, the price will decline.
And its price varies from city to city. In prosperous cities, transportation is convenient, logistics is smooth, and the price may be stable; in remote places, transportation is difficult, costs increase, and prices also rise.
Roughly speaking, its price per kilogram can be as low as tens of yuan, and as high as hundreds of yuan. However, this is only an approximate number. To know the exact price, you need to consult merchants around the world and carefully observe the current market conditions before you can get it.