diethylene glycol butyl ether acetate msds boiling point bp cas number
Diethylene Glycol Butyl Ether Acetate: MSDS, Boiling Point, BP, and CAS NumberDiethylene Glycol Butyl Ether:
MSDS, Boiling point, BP and CAS Number
Diethylene Glycol Butyl Ether Acetate is a chemical compound that has various applications in different
industries.Diethylene Glycol Butyl Ether Acetate has many applications in various industries. Understanding
its properties such as the Material Safety Data Sheet (MSDS), boiling point (BP), and its CAS number is
crucial for handling, storing, and using it safely and effectively.Understanding its properties, such as its
Material Safety Data Sheet (MSDS), its boiling point (BP), or its CAS number, is essential for safely
handling, storing and using the chemical compound.
The CAS number of Diethylene Glycol Butyl Ether Acetate is 124 - 17 - 4.The CAS number for Diethylene Glycol
butyl ether acetate is 124-17-4. The CAS (Chemical Abstracts Service) number is a unique identifier for
chemical substances.The CAS number (Chemical Abstracts Service), is a unique identifier of chemical
substances. It allows for easy and accurate identification of the compound in scientific literature,
regulatory documents, and chemical databases.It allows for accurate and easy identification of the compound
within scientific literature, regulatory documents and chemical databases. This number is essential for
tracking the chemical throughout its lifecycle, from manufacturing to disposal.This number is crucial for
tracking the chemical through its entire lifecycle, from manufacture to disposal. It helps in ensuring
compliance with various regulations as different regions and industries often refer to chemicals by their
CAS numbers when setting safety, environmental, and usage standards.It is important to ensure compliance
with different regulations, as different regions and industries refer to chemicals using their CAS numbers
in setting safety, environmental and usage standards.
When it comes to the boiling point of Diethylene Glycol Butyl Ether Acetate, the boiling point (BP) is
approximately 246 - 250 degC.The boiling point (BP), when it comes to Diethylene Glycol butyl ether acetate,
is approximately 246 – 250 degC. The boiling point is a fundamental physical property of a substance.The
boiling point of a substance is a fundamental property. It is the temperature at which the liquid phase of
the compound changes to the gaseous phase at a given pressure, usually standard atmospheric pressure.The
boiling point is the temperature where the liquid phase of a compound changes into the gaseous state at a
certain pressure, which is usually standard atmospheric pressure. For Diethylene Glycol Butyl Ether Acetate,
this relatively high boiling point indicates that it is a fairly stable liquid under normal ambient
conditions.This relatively high boiling point for Diethylene Glycol Butyl Ether Acetate indicates that it is
an essentially stable liquid in normal ambient conditions. This property makes it suitable for applications
where a liquid with a relatively high heat resistance is required.This property makes it ideal for
applications that require a liquid with high heat resistance. For example, in some coating and printing ink
formulations, the high boiling point allows the solvent to remain in the system for an extended period
during the drying process, enabling better film formation and adhesion.In some formulations of printing inks
and coatings, for example, the high boiling points allows the solvents to remain in the system during the
drying process. This results in better film formation and adhesion.
The Material Safety Data Sheet (MSDS) for Diethylene Glycol Butyl Ether Acetate is a comprehensive document
that provides detailed information about the chemical's properties, hazards, and safety precautions.The
Material Safety Data Sheet for Diethylene Glycol Butyl Ether Acetate (MSDS) is a comprehensive document
which provides detailed information on the chemical's hazards and safety precautions. It begins with
identification information, including the chemical name, synonyms, and the CAS number.The MSDS begins with
identification details, such as the chemical name, synonyms and CAS number. The physical and chemical
properties section of the MSDS lists details such as appearance, odor, density, and of course, the boiling
point.The MSDS's section on physical and chemical properties includes information such as appearance, odor
and density. This helps users to understand the basic characteristics of the chemical.This helps users
understand the basic properties of the chemical.
The MSDS also delves into the hazards associated with Diethylene Glycol Butyl Ether Acetate.The MSDS also
explains the dangers associated with Diethyleneglycol Butyl Ether Acetate. It may be harmful if inhaled,
swallowed, or if it comes into contact with the skin or eyes.It can be harmful when inhaled, swallowed or
comes into contact with skin or eyes. Inhalation of its vapors can cause respiratory irritation, and long -
term exposure may have more serious health effects on the respiratory system.Inhalation can cause
respiratory irritation. Long-term exposure to its vapors may have more serious effects on the respiratory
system. Skin contact can lead to irritation, and in some cases, allergic reactions.Contact with the skin can
cause irritation and, in some cases allergic reactions. Eye contact can cause significant irritation and
potential damage to the eyes.Contact with the eyes can cause irritation and damage to the eye. Therefore,
appropriate personal protective equipment (PPE) such as safety glasses, gloves, and respiratory protection
should be worn when handling this chemical.When handling this chemical, it is important to wear appropriate
personal protective equipment, such as safety gloves, safety glasses, and respiratory protection.
In terms of fire and explosion hazards, the MSDS provides information on the flammability of Diethylene
Glycol Butyl Ether Acetate.The MSDS contains information about the flammability and explosion hazards of
Diethylene Glycol butyl ether acetate. Although it has a relatively high boiling point, it is still
combustible.It is combustible despite its relatively high boiling point. In case of a fire, appropriate
extinguishing agents should be used, and safety procedures for containing and extinguishing the fire need to
be followed.In the event of a fire, extinguishing agents and safety procedures to contain and extinguish the
fire should be followed. The MSDS also includes spill handling procedures.The MSDS includes spill handling
instructions. In the event of a spill, the area should be evacuated, and appropriate cleanup measures should
be taken to prevent environmental contamination and exposure to the chemical.In the event of spillage, the
area must be evacuated and the appropriate cleanup measures taken to prevent contamination of the
environment and exposure to chemicals.
Regarding storage, the MSDS recommends storing Diethylene Glycol Butyl Ether Acetate in a cool, well -
ventilated area, away from sources of ignition and incompatible materials.The MSDS recommends that
Diethylene Glycol butyl ether acetate be stored in a cool and well-ventilated area, away form sources of
ignition or incompatible materials. This is because of its combustible nature and potential reactivity with
certain substances.This is due to its combustible properties and potential reactivity. Compatibility
information in the MSDS helps users to ensure that the chemical is stored and handled correctly to avoid
dangerous reactions.The MSDS contains information on compatibility, which helps users ensure that the
chemical is handled and stored correctly to avoid dangerous reactions.
In the manufacturing and industrial sectors, Diethylene Glycol Butyl Ether Acetate is used in a variety of
applications.Diethylene Glycol butyl ether acetate is used for a wide range of applications in the
manufacturing and industrial sector. Its high boiling point makes it useful in the production of high -
performance coatings, where it helps to control the drying rate and improve the quality of the final
coating.Its high boiling temperature makes it useful for the production of high-performance coatings. It
helps control the drying rate of the coating and improves its quality. It is also used in the formulation of
inks, where it aids in dissolving resins and pigments, and in the cleaning of certain industrial equipment
due to its solvent properties.It is also used to formulate inks where it helps dissolve resins and pigments.
It can also be used to clean certain industrial equipment because of its solvent properties. However, with
all these applications, strict adherence to the information provided in the MSDS is essential to safeguard
the health of workers and the environment.To protect the health of workers as well as the environment, it is
important to strictly adhere to the MSDS.
In conclusion, the CAS number, boiling point, and MSDS of Diethylene Glycol Butyl Ether Acetate are key
pieces of information.The CAS number, the boiling point, and the MSDS of Diethylene Glycol butyl ether
acetate are all important pieces of information. The CAS number enables easy identification, the boiling
point influences its application suitability, and the MSDS ensures that the chemical is handled, stored, and
used safely.The CAS number allows for easy identification, while the boiling point determines its
suitability for certain applications. The MSDS ensures the chemical is stored, handled and used safely. By
understanding these aspects, industries can continue to utilize the benefits of Diethylene Glycol Butyl
Ether Acetate while minimizing potential risks.Understanding these aspects will allow industries to continue
to benefit from Diethylene Glycol Butyl ETher Acetate, while minimizing any potential risks. This knowledge
is not only important for the workers directly handling the chemical but also for those involved in the
regulatory and environmental management aspects related to its use.This knowledge is important not only for
those who will be handling the chemical, but also for those who are involved in the regulatory or
environmental management aspects of its use.